peroxidase streptavidin complex Search Results


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  • 99
    Vector Laboratories streptavidin peroxidase complex
    Streptavidin Peroxidase Complex, supplied by Vector Laboratories, used in various techniques. Bioz Stars score: 99/100, based on 1125 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Millipore streptavidin peroxidase complex
    Immunoprecipitation of transferrin receptor from human placental membrane proteins coisolated with the HFE protein. The biotinylated proteins eluted from the human IgG Affigel-10 (lane 1) and CT16 IgG Affigel-10 columns (lane 2) were immunoprecipitated using monoclonal anti-human transferrin receptor antibody and analyzed using a <t>streptavidin-peroxidase</t> complex. A polypeptide of 93 kDa was present only in the protein preparation isolated by the second column, the CT16 IgG Affigel-10 column (lane 2).
    Streptavidin Peroxidase Complex, supplied by Millipore, used in various techniques. Bioz Stars score: 99/100, based on 123 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Agilent technologies streptavidin peroxidase complex
    Intestinal localization of SR-BI Sections of small intestine from wild type and transgenic mice were incubated with anti-SR-BI antibodies followed by incubation with biotinylated secondary antibodies and with <t>streptavidin-peroxidase</t> complex. Peroxidase activity was revealed using 3′ diaminobenzidine tetrahydrochloride (DAB). A,D,G: control was obtained with an incubation of wild type sections in only the secondary antibodies; B,E,H: wild type mice; C,F,I: SR-BI transgenic mice. P, Proximal; M, Medium; D, Colon. V, Villosity; C, Crypt.
    Streptavidin Peroxidase Complex, supplied by Agilent technologies, used in various techniques. Bioz Stars score: 94/100, based on 777 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    88
    Agilent technologies streptavidin peroxidase complexes
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complexes, supplied by Agilent technologies, used in various techniques. Bioz Stars score: 88/100, based on 56 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    91
    GE Healthcare peroxidase streptavidin complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Peroxidase Streptavidin Complex, supplied by GE Healthcare, used in various techniques. Bioz Stars score: 91/100, based on 210 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Cedarlane peroxidase streptavidin complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
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    Bio-Rad streptavidin peroxidase complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complex, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 92/100, based on 9 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Abcam streptavidin peroxidase complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complex, supplied by Abcam, used in various techniques. Bioz Stars score: 95/100, based on 54 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Beyotime streptavidin peroxidase complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complex, supplied by Beyotime, used in various techniques. Bioz Stars score: 93/100, based on 26 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Maixin-Bio streptavidin peroxidase complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complex, supplied by Maixin-Bio, used in various techniques. Bioz Stars score: 92/100, based on 4 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Mab Technologies streptavidin peroxidase complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Streptavidin Peroxidase Complex, supplied by Mab Technologies, used in various techniques. Bioz Stars score: 92/100, based on 18 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Bethyl peroxidase streptavidin complex
    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas <t>(streptavidin-peroxidase</t> technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).
    Peroxidase Streptavidin Complex, supplied by Bethyl, used in various techniques. Bioz Stars score: 93/100, based on 4 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Thermo Fisher streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
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    NEN Life Science streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
    Streptavidin Peroxidase Complex, supplied by NEN Life Science, used in various techniques. Bioz Stars score: 92/100, based on 14 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Boehringer Mannheim streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
    Streptavidin Peroxidase Complex, supplied by Boehringer Mannheim, used in various techniques. Bioz Stars score: 92/100, based on 12 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Roche streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
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    The Jackson Laboratory streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
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    Zhongshan Golden Bridge Company streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
    Streptavidin Peroxidase Complex, supplied by Zhongshan Golden Bridge Company, used in various techniques. Bioz Stars score: 92/100, based on 16 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Genemed Biotechnologies streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
    Streptavidin Peroxidase Complex, supplied by Genemed Biotechnologies, used in various techniques. Bioz Stars score: 93/100, based on 21 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    PerkinElmer streptavidin peroxidase complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
    Streptavidin Peroxidase Complex, supplied by PerkinElmer, used in various techniques. Bioz Stars score: 92/100, based on 8 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    85
    Agilent technologies streptavidin peroxidase amplification complex
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
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    90
    Santa Cruz Biotechnology streptavidin peroxidase complex reagent
    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, <t>streptavidin-</t> biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.
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    Image Search Results


    Immunoprecipitation of transferrin receptor from human placental membrane proteins coisolated with the HFE protein. The biotinylated proteins eluted from the human IgG Affigel-10 (lane 1) and CT16 IgG Affigel-10 columns (lane 2) were immunoprecipitated using monoclonal anti-human transferrin receptor antibody and analyzed using a streptavidin-peroxidase complex. A polypeptide of 93 kDa was present only in the protein preparation isolated by the second column, the CT16 IgG Affigel-10 column (lane 2).

    Journal: Proceedings of the National Academy of Sciences of the United States of America

    Article Title: Association of the transferrin receptor in human placenta with HFE, the protein defective in hereditary hemochromatosis

    doi:

    Figure Lengend Snippet: Immunoprecipitation of transferrin receptor from human placental membrane proteins coisolated with the HFE protein. The biotinylated proteins eluted from the human IgG Affigel-10 (lane 1) and CT16 IgG Affigel-10 columns (lane 2) were immunoprecipitated using monoclonal anti-human transferrin receptor antibody and analyzed using a streptavidin-peroxidase complex. A polypeptide of 93 kDa was present only in the protein preparation isolated by the second column, the CT16 IgG Affigel-10 column (lane 2).

    Article Snippet: The immunocomplex was analyzed by SDS/PAGE followed by electrophoretic transfer of the polypeptides and visualization using a streptavidin-peroxidase complex (Sigma).

    Techniques: Immunoprecipitation, Isolation

    Intestinal localization of SR-BI Sections of small intestine from wild type and transgenic mice were incubated with anti-SR-BI antibodies followed by incubation with biotinylated secondary antibodies and with streptavidin-peroxidase complex. Peroxidase activity was revealed using 3′ diaminobenzidine tetrahydrochloride (DAB). A,D,G: control was obtained with an incubation of wild type sections in only the secondary antibodies; B,E,H: wild type mice; C,F,I: SR-BI transgenic mice. P, Proximal; M, Medium; D, Colon. V, Villosity; C, Crypt.

    Journal: The Journal of Biological Chemistry

    Article Title: Accelerated lipid absorption in mice overexpressing intestinal SR-BI

    doi: 10.1074/jbc.M508868200

    Figure Lengend Snippet: Intestinal localization of SR-BI Sections of small intestine from wild type and transgenic mice were incubated with anti-SR-BI antibodies followed by incubation with biotinylated secondary antibodies and with streptavidin-peroxidase complex. Peroxidase activity was revealed using 3′ diaminobenzidine tetrahydrochloride (DAB). A,D,G: control was obtained with an incubation of wild type sections in only the secondary antibodies; B,E,H: wild type mice; C,F,I: SR-BI transgenic mice. P, Proximal; M, Medium; D, Colon. V, Villosity; C, Crypt.

    Article Snippet: Sections were washed and incubated with streptavidin-peroxidase complex (Dako) for 30 min.

    Techniques: Transgenic Assay, Mouse Assay, Incubation, Activity Assay

    Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas (streptavidin-peroxidase technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).

    Journal: The American Journal of Pathology

    Article Title: Analysis of 1,25-Dihydroxyvitamin D3 Receptors (VDR) in Basal Cell Carcinomas

    doi:

    Figure Lengend Snippet: Immunohistochemical detection of VDR ( A–C ) and Ki-67 antigen ( D ) in basal cell carcinomas (streptavidin-peroxidase technique with AEC as substrate). Note increased nuclear immunoreactivity for VDR in BCCs as compared to adjacent unaffected ( A ) or overlying ( B ) epidermis. Note also strong expression of VDR in tumor cells of palisaded array ( arrow ) compared to central parts of the tumor ( arrowhead ). In contrast, Ki-67 staining was heterogeneous in most specimens analyzed ( D ).

    Article Snippet: After intermediate washing steps (PBS/TBS, 2 × 5 minutes), the sections were incubated with biotin-labeled rabbit anti-rat IgG (DAKO) or goat anti-rabbit IgG (DAKO) at a dilution of 1:400 (30 minutes, RT), and then with streptavidin-peroxidase complexes (DAKO) at a dilution of 1:400 (30 minutes, RT) or streptavidin-Cy3 (Dianova, Hamburg, Germany).

    Techniques: Immunohistochemistry, Expressing, Staining

    Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, streptavidin- biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Apoptotic activity in the left ventricle. A. showing high expression of caspase- 3 in_cardiac myocytes (arrow head) surrounding the necrotic area, endothelial cells (thin arrow), and neutrophil polymorphs (thick arrow) in 24-hour post MI, Alexa Fluor 488 immunofluorescent technique. B. showing no expression of caspase 3 in 24-hour sham-operated left ventricle. C, showing high expression of cleaved caspase- 3 in cardiac myocytes (thick arrows). Many apoptotic bodies (arrow head) are seen in the infarcted area of left ventricle, streptavidin- biotin immunoperoxidase method. D, showing very low apoptotic activity, only one cell stained with anti-cleaved caspase 3 (arrow head) in the area of infraction in the left ventricle of 4-hour post MI, streptavidin- biotin immunoperoxidase method. E, F, Showing no staining with anti-cleaved caspase 3 in the left ventricle of 30 minutes and 60 minutes post MI, streptavidin- biotin immunoperoxidase method.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Activity Assay, Expressing, Staining

    Galectin-1 expression 30 minutes following ligation of LAD. A. A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of staining of galectin-1. D. A galectin-1 positive control section from prostate gland showing cytoplasmic expression of galectin- 1 by prostatic acini. E, F G. Representative sections of the left ventricle from areas supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), streptavidin- biotin immunoperoxidase method. H, I J. Representative sections from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), Alexa Fluor 488 immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Galectin-1 expression 30 minutes following ligation of LAD. A. A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of staining of galectin-1. D. A galectin-1 positive control section from prostate gland showing cytoplasmic expression of galectin- 1 by prostatic acini. E, F G. Representative sections of the left ventricle from areas supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), streptavidin- biotin immunoperoxidase method. H, I J. Representative sections from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), Alexa Fluor 488 immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Ligation, Negative Control, Staining, Positive Control

    Ki-67 proliferative activity in the left ventricle. A, B, C, D, Low Ki-67 proliferative activity in normal left ventricle showing nuclear staining of Ki-67 in one interstitial cell (arrow head). E, F, G, 20 minutes MI; I,J, K, 30 minutes MI; M,N,O 60 minutes MI; Q,R,S, 4-hour MI, Low Ki-67 proliferative activity: showing nuclear staining of Ki-67 in few endothelial cells (arrow head) in left ventricle. U, V, W, 24-hour MI, high Ki-67 proliferative activity showing nuclear staining of Ki-67 in a large number of endothelial cells (arrow head) in the infarction area of left ventricle. H, L, P, T, X, showing faint nuclear staining of Ki-67 in one endothelial cell in 20 minutes, 30 minutes, 60 minutes, 4-hours and 24 hour sham-operated left ventricle. A, E, I, M, Q, U are stained by Streptavidin-Biotin immunoperoxidase method. The others are stained by Alexa Fluor 488 immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Ki-67 proliferative activity in the left ventricle. A, B, C, D, Low Ki-67 proliferative activity in normal left ventricle showing nuclear staining of Ki-67 in one interstitial cell (arrow head). E, F, G, 20 minutes MI; I,J, K, 30 minutes MI; M,N,O 60 minutes MI; Q,R,S, 4-hour MI, Low Ki-67 proliferative activity: showing nuclear staining of Ki-67 in few endothelial cells (arrow head) in left ventricle. U, V, W, 24-hour MI, high Ki-67 proliferative activity showing nuclear staining of Ki-67 in a large number of endothelial cells (arrow head) in the infarction area of left ventricle. H, L, P, T, X, showing faint nuclear staining of Ki-67 in one endothelial cell in 20 minutes, 30 minutes, 60 minutes, 4-hours and 24 hour sham-operated left ventricle. A, E, I, M, Q, U are stained by Streptavidin-Biotin immunoperoxidase method. The others are stained by Alexa Fluor 488 immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Activity Assay, Staining

    Galectin-1 expression 4 hours following ligation of LAD. A.A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing low expression of galectin-1 in the left ventricle (thin arrow) and right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of staining of galectin-1. D. Representative section of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or no expression (star shape), streptavidin- biotin immunoperoxidase method. E F, Representative section of the left ventricle from area supplied by LAD showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), streptavidin- biotin immunoperoxidase method. G, H I. Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or no expression (star shape), Alexa Fluor 488 immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Galectin-1 expression 4 hours following ligation of LAD. A.A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing low expression of galectin-1 in the left ventricle (thin arrow) and right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of staining of galectin-1. D. Representative section of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or no expression (star shape), streptavidin- biotin immunoperoxidase method. E F, Representative section of the left ventricle from area supplied by LAD showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), streptavidin- biotin immunoperoxidase method. G, H I. Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or no expression (star shape), Alexa Fluor 488 immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Ligation, Negative Control, Staining

    HIF-1 α expression of the heart. A. Representative section of naïve heart showing nuclear expression of HIF-1 α by few endothelial cells (arrow head), streptavidin- biotin immunoperoxidase method. B. Negative control section showing no HIF-1 α staining, streptavidin- biotin immunoperoxidase method. C. Positive control section of mouse placenta showing nuclear staining of HIF-1 α by trophoblastic cells, Rhodamine, immunofluorescent technique. D. Negative control section for HIF-1 α. Rhodamine, immunofluorescent technique. E,I,M Q shows representative sections from the anterior wall of left ventricle in the area supplied by LAD 20 min, 30 min, 60 min and 4 hours following ligation of LAD, showing variable nuclear staining of HIF-1 α by cardiac myocytes at different time points (arrow head) and endothelial cells (thin arrow), streptavidin- biotin immunoperoxidase method. F,J,N R shows their corresponding Sham operated hearts showing low nuclear expression of HIF-1 α by few endothelial cells (thin arrow), streptavidin- biotin immunoperoxidase method. Low and high power views of the left ventricle 20 min (G H), 30 min (K L), 60 min (O P) and 4 hours (S T) following ligation of LAD showing high nuclear staining of HIF-1 α by cardiac myocytes (arrow head), Rhodamine, immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: HIF-1 α expression of the heart. A. Representative section of naïve heart showing nuclear expression of HIF-1 α by few endothelial cells (arrow head), streptavidin- biotin immunoperoxidase method. B. Negative control section showing no HIF-1 α staining, streptavidin- biotin immunoperoxidase method. C. Positive control section of mouse placenta showing nuclear staining of HIF-1 α by trophoblastic cells, Rhodamine, immunofluorescent technique. D. Negative control section for HIF-1 α. Rhodamine, immunofluorescent technique. E,I,M Q shows representative sections from the anterior wall of left ventricle in the area supplied by LAD 20 min, 30 min, 60 min and 4 hours following ligation of LAD, showing variable nuclear staining of HIF-1 α by cardiac myocytes at different time points (arrow head) and endothelial cells (thin arrow), streptavidin- biotin immunoperoxidase method. F,J,N R shows their corresponding Sham operated hearts showing low nuclear expression of HIF-1 α by few endothelial cells (thin arrow), streptavidin- biotin immunoperoxidase method. Low and high power views of the left ventricle 20 min (G H), 30 min (K L), 60 min (O P) and 4 hours (S T) following ligation of LAD showing high nuclear staining of HIF-1 α by cardiac myocytes (arrow head), Rhodamine, immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Negative Control, Staining, Positive Control, Ligation

    Galectin-1 and HIF-1 α expression 24 hours following ligation of LAD. A. A high power view of left ventricle in an area supplied by LAD showing coagulative necrosis (thin arrows) accompanied by heavy neutrophil polymorphs infiltration (arrow heads), H E. B. A low power view of the heart showing areas of high expression of galectin-1 (thick arrows) surrounding areas of no expression (star shape) in the left ventricle and interventricular septum in the area supplied by LAD, streptavidin- biotin immunoperoxidase method. C. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thick arrows), streptavidin- biotin immunoperoxidase method. D. Negative control section of the heart showing absence of staining of galectin-1. E, F G. Representative section of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thick arrow), surrounding areas of no expression (thin arrow). Many neutrophil polymorphs are also showing cytoplasmic expression of Galectin-1(arrow head), Streptavidin- biotin immunoperoxidase method. H, I J. Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thick arrow) surrounding areas of no expression (thin arrow), many neutrophil polymorphs (arrow head) show cytoplasmic expression of Galectin-1, Alexa Fluor 488 immunofluorescent technique. K. Representative section from left ventricle showing nuclear expression of HIF-1 α by cardiac myocytes (arrow head) and neutrophil polymorphs (thin arrow), Rhodamine, immunofluorescent technique. L. Representative section from left ventricle showing cytoplasmic expression of Galectin-1 by cardiac myocytes (thick arrow), endothelial cells (arrow head) and neutrophil polymorphs (thin arrows), Alexa Fluor 488 immunofluorescent technique. M. Co-localization of Galectin-1 and HIF-1 α in cardiac myocytes (thick arrow), endothelial cell (arrow head) and neutrophil polymorphs (thin arrow), Alexa Fluor-Rhodamine immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Galectin-1 and HIF-1 α expression 24 hours following ligation of LAD. A. A high power view of left ventricle in an area supplied by LAD showing coagulative necrosis (thin arrows) accompanied by heavy neutrophil polymorphs infiltration (arrow heads), H E. B. A low power view of the heart showing areas of high expression of galectin-1 (thick arrows) surrounding areas of no expression (star shape) in the left ventricle and interventricular septum in the area supplied by LAD, streptavidin- biotin immunoperoxidase method. C. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thick arrows), streptavidin- biotin immunoperoxidase method. D. Negative control section of the heart showing absence of staining of galectin-1. E, F G. Representative section of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thick arrow), surrounding areas of no expression (thin arrow). Many neutrophil polymorphs are also showing cytoplasmic expression of Galectin-1(arrow head), Streptavidin- biotin immunoperoxidase method. H, I J. Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thick arrow) surrounding areas of no expression (thin arrow), many neutrophil polymorphs (arrow head) show cytoplasmic expression of Galectin-1, Alexa Fluor 488 immunofluorescent technique. K. Representative section from left ventricle showing nuclear expression of HIF-1 α by cardiac myocytes (arrow head) and neutrophil polymorphs (thin arrow), Rhodamine, immunofluorescent technique. L. Representative section from left ventricle showing cytoplasmic expression of Galectin-1 by cardiac myocytes (thick arrow), endothelial cells (arrow head) and neutrophil polymorphs (thin arrows), Alexa Fluor 488 immunofluorescent technique. M. Co-localization of Galectin-1 and HIF-1 α in cardiac myocytes (thick arrow), endothelial cell (arrow head) and neutrophil polymorphs (thin arrow), Alexa Fluor-Rhodamine immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Ligation, Negative Control, Staining

    Bcl2 activity in left ventricle. A, B, C, D, showing high cytoplasmic expression of bcl2 by cardiac myocytes (thick arrow), and endothelial cells (arrow head) at 30 minutes post MI in an area supplied by LAD in the left ventricle, streptavidin- biotin immunoperoxidase method. E, F, showing very low expression of bcl2 in few endothelial cells (arrow head) in the left ventricle of naïve and 30-minutes sham operated heart. Streptavidin- biotin immunoperoxidase method.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Bcl2 activity in left ventricle. A, B, C, D, showing high cytoplasmic expression of bcl2 by cardiac myocytes (thick arrow), and endothelial cells (arrow head) at 30 minutes post MI in an area supplied by LAD in the left ventricle, streptavidin- biotin immunoperoxidase method. E, F, showing very low expression of bcl2 in few endothelial cells (arrow head) in the left ventricle of naïve and 30-minutes sham operated heart. Streptavidin- biotin immunoperoxidase method.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Activity Assay, Expressing

    Galectin-1 expression 60 minutes following ligation of LAD. A B, A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. C. Sham operated heart showing low expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. D. Negative control section of the heart showing absence of staining of galectin-1. E, F G, Representative sections of the left ventricle from areas supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or absence of expression (star shape), streptavidin- biotin immunoperoxidase method. H, I J, Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), Alexa Fluor 488 immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Galectin-1 expression 60 minutes following ligation of LAD. A B, A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. C. Sham operated heart showing low expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. D. Negative control section of the heart showing absence of staining of galectin-1. E, F G, Representative sections of the left ventricle from areas supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) surrounding areas of low or absence of expression (star shape), streptavidin- biotin immunoperoxidase method. H, I J, Representative section from left ventricle showing a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow), Alexa Fluor 488 immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Ligation, Negative Control, Staining

    Galectin-1 expression 20 minutes following ligation of LAD. A. A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of galectin-1 staining. D, E F. Representative sections of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow D). High power views show a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) and endothelial cells (arrow head, E F), There is also nuclear expression of galectin 1 by cardiac myocytes (thick arrow E F),streptavidin- biotin immunoperoxidase method. G, H I. Representative section from left ventricle shows a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow).There is also high expression of galectin-1 in the Z bands (arrow head), Alexa Fluor 488 immunofluorescent technique.

    Journal: PLoS ONE

    Article Title: Galectin-1 in Early Acute Myocardial Infarction

    doi: 10.1371/journal.pone.0086994

    Figure Lengend Snippet: Galectin-1 expression 20 minutes following ligation of LAD. A. A low power view of the heart showing a high expression of galectin-1 in the anterior wall of left ventricle in the area supplied by LAD (thin arrow) and the interventricular septum (thick arrow). There is also increase in the expression of galectin-1 in the right ventricle (arrow head), streptavidin- biotin immunoperoxidase method. B. Sham operated heart showing lower expression of galectin-1 in the left ventricle and right ventricle (thin arrow), streptavidin- biotin immunoperoxidase method. C. Negative control section of the heart showing absence of galectin-1 staining. D, E F. Representative sections of the left ventricle from area supplied by LAD showing high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow D). High power views show a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow) and endothelial cells (arrow head, E F), There is also nuclear expression of galectin 1 by cardiac myocytes (thick arrow E F),streptavidin- biotin immunoperoxidase method. G, H I. Representative section from left ventricle shows a well demarcated area of high cytoplasmic expression of galectin-1 by cardiac myocytes (thin arrow).There is also high expression of galectin-1 in the Z bands (arrow head), Alexa Fluor 488 immunofluorescent technique.

    Article Snippet: Finally, sections were incubated with streptavidin–peroxidase complex for 20 minutes at room temperature (Thermo Scientific, USA), DAB chromogen (Thermo Scientific, USA) added and counter staining done with haematoxylin.

    Techniques: Expressing, Ligation, Negative Control, Staining