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virus nucleoprotein antibody  (Danaher Inc)


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    Danaher Inc virus nucleoprotein antibody
    Virus Nucleoprotein Antibody, supplied by Danaher Inc, used in various techniques. Bioz Stars score: 99/100, based on 563 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ab91335/Recombinant+Anti-LAG-3+antibody/pmc07660575-223-23-26
    Average 99 stars, based on 563 article reviews
    virus nucleoprotein antibody - by Bioz Stars, 2026-09
    99/100 stars

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    Related Articles

    Recombinant:

    Article Title: Verbenalin alleviates acute lung injury induced by sepsis and IgG immune complex through GPR18 receptor
    Article Snippet: Objective: To explore the roles of Enoxaparin Sodium-Polymethyl methacrylate bone cement on inflammatory factors Interleukin-6 and Tumour Necrosis Factor-α in a rabbit knee replacement model. As well as the mechanisms underlying its potential effects on lipopolysaccharide-induced endothelial cell injury.. Methods: A knee replacement model was established using New Zealand rabbits.. Forty rabbits were randomly divided into four groups: PMMA, ES-PMMA, sham-operated, and blank control groups (n = 10 in each group).

    Article Title: Airway inflammatory changes in the lungs of patients with asthma-COPD overlap (ACO): a bronchoscopy endobronchial biopsy study
    Article Snippet: .. Following epitope retrieval, immunostaining with primary antibodies monoclonal anti-human CD68 (1:500 dilution, clone KP1, M0814, Dako, Victoria, Australia), monoclonal mouse anti-human neutrophil elastase (1:200 dilution, clone NP57, M0752, Dako, Victoria, Australia), recombinant anti-ribonuclease 3 eosinophil cationic protein (1:8000 dilution, ab207429, Abcam, Victoria, Australia), mast cell tryptase (1:400 dilution, clone AA1, M7052, Dako, Victoria, Australia), mouse anti-human CD8 (1:30 dilution, clone 4B11, NCL-CD8-4B11-L-CE, Leica Biosystems, Victoria, Australia) and mouse anti-human CD4 (1:30 dilution, clone 4B12, M7310, Dako, Victoria, Australia) was performed at room temperature. .. Polymer enzyme backbone conjugated secondary antibody (Dako EnVision, K5007) was used after the primary antibodies and visualized using diaminobenzidine chromogen (Dako EnVision, K7005).

    Article Title: Lactobacillus johnsonii N6.2 phospholipids induce immature-like dendritic cells with a migratory-regulatory-like transcriptional signature
    Article Snippet: .. TLR2 on the surface of 7-d BMDCs was blocked by pre-incubating the cells with 9 μg/mL of recombinant monoclonal anti-rat TLR2 antibody (ab209217, Abcam) or isotype control (ab172730, Abcam) for 1 h prior to the addition of 5 μg/mL of L. johnsonii N6.2 PLs (as described above) and further incubation for 6 h. The antibody storage buffer (59% PBS pH 7.2, 40% glycerol, 0.05% BSA, 0.01% sodium azide) was prepared in-house and added at equal volumes as a negative control along with the vehicle control for the lipids. ..

    Article Title: Uterine secretome initiates growth of gynecologic tissues in ectopic locations
    Article Snippet: .. Primary antibody recombinant anti-Fox2a antibody (ab108422) and secondary goat anti-rabbit IgG H&L HRP conjugated (ab6721) were obtained from abcam and used according to manufacturer’s instructions. .. DAB Substrate kit (abcam) was used according to manufacturer’s instructions for visualization, hematoxylin was used to counterstain nuclei as we previously described [ ].

    Incubation:

    Article Title: Discovery and Preclinical Characterization of XMT-1660, an Optimized B7-H4-Targeted Antibody–Drug Conjugate for the Treatment of Cancer
    Article Snippet: Following a 20-minute cooldown period, samples were blocked with Dual Endogenous Enzyme Block (Agilent Technologies, catalog no. S200389–2) to quench potential endogenous peroxidase activity. .. Slides were then sequentially incubated with rabbit monoclonal anti–B7-H4 (clone EPR20236, Abcam, catalog no. ab209242; final dilution 1:2,000) primary antibody for 30 minutes, followed by an HRP-labeled anti-rabbit secondary antibody (Agilent Technologies, catalog no. K400311–2) for an additional 30 minutes. .. Chromogenic detection was initiated using liquid DAB+ (Agilent Technologies catalog no. K346811–2) for 5 minutes followed by hematoxylin counterstaining (Abcam, catalog no. ab220365) for 10 seconds.

    Article Title: A Far-Red Fluorescent Probe to Visualize Staphylococcus aureus in Patient Samples
    Article Snippet: Endogenous biotin sites were blocked using Streptavidin/Biotin blocking kit (Vector Laboratories, VC-SP-2002) following manufacturer’s protocols. .. Sections were incubated in 10 μg mL −1 anti- Staphylococcus aureus antibody (Abcam, ab20920) in blocking buffer (with 1% BSA-fraction V, 2% human serum in TBST) at 4 °C overnight, washed three times with TBST, and stained with 5 μg mL −1 Alexa Fluor 568 donkey anti-rabbit IgG (Invitrogen, A10042) for 1 h at room temperature. ..

    Article Title: Lactobacillus johnsonii N6.2 phospholipids induce immature-like dendritic cells with a migratory-regulatory-like transcriptional signature
    Article Snippet: .. TLR2 on the surface of 7-d BMDCs was blocked by pre-incubating the cells with 9 μg/mL of recombinant monoclonal anti-rat TLR2 antibody (ab209217, Abcam) or isotype control (ab172730, Abcam) for 1 h prior to the addition of 5 μg/mL of L. johnsonii N6.2 PLs (as described above) and further incubation for 6 h. The antibody storage buffer (59% PBS pH 7.2, 40% glycerol, 0.05% BSA, 0.01% sodium azide) was prepared in-house and added at equal volumes as a negative control along with the vehicle control for the lipids. ..

    Blocking Assay:

    Article Title: A Far-Red Fluorescent Probe to Visualize Staphylococcus aureus in Patient Samples
    Article Snippet: Endogenous biotin sites were blocked using Streptavidin/Biotin blocking kit (Vector Laboratories, VC-SP-2002) following manufacturer’s protocols. .. Sections were incubated in 10 μg mL −1 anti- Staphylococcus aureus antibody (Abcam, ab20920) in blocking buffer (with 1% BSA-fraction V, 2% human serum in TBST) at 4 °C overnight, washed three times with TBST, and stained with 5 μg mL −1 Alexa Fluor 568 donkey anti-rabbit IgG (Invitrogen, A10042) for 1 h at room temperature. ..

    Staining:

    Article Title: A Far-Red Fluorescent Probe to Visualize Staphylococcus aureus in Patient Samples
    Article Snippet: Endogenous biotin sites were blocked using Streptavidin/Biotin blocking kit (Vector Laboratories, VC-SP-2002) following manufacturer’s protocols. .. Sections were incubated in 10 μg mL −1 anti- Staphylococcus aureus antibody (Abcam, ab20920) in blocking buffer (with 1% BSA-fraction V, 2% human serum in TBST) at 4 °C overnight, washed three times with TBST, and stained with 5 μg mL −1 Alexa Fluor 568 donkey anti-rabbit IgG (Invitrogen, A10042) for 1 h at room temperature. ..

    Bioprocessing:

    Article Title: Leveraging a disulfidptosis-related signature to predict the prognosis and immunotherapy effectiveness of cutaneous melanoma based on machine learning
    Article Snippet: .. Five monoclonal antibodies anti-HLA-DQA1 antibody (1:10,000 dilution for WB, 1:200 dilution for IHC, ab128959), anti-GZMA antibody (1:1000 dilution, ab209205), anti-CD79A antibody (1:10,000 dilution, ab79414), anti-LTB antibody (1:1000 dilution, ab89568) and anti-HE5 antibody (1:1000 dilution, ab125071) were purchased from Abcam (Cambridge, UK). .. Monoclonal antibody anti-β-actin (1:20,000 dilution, 66009-1-Ig) was purchased from Proteintech (Wuhan, China).

    Western Blot:

    Article Title: Leveraging a disulfidptosis-related signature to predict the prognosis and immunotherapy effectiveness of cutaneous melanoma based on machine learning
    Article Snippet: .. Five monoclonal antibodies anti-HLA-DQA1 antibody (1:10,000 dilution for WB, 1:200 dilution for IHC, ab128959), anti-GZMA antibody (1:1000 dilution, ab209205), anti-CD79A antibody (1:10,000 dilution, ab79414), anti-LTB antibody (1:1000 dilution, ab89568) and anti-HE5 antibody (1:1000 dilution, ab125071) were purchased from Abcam (Cambridge, UK). .. Monoclonal antibody anti-β-actin (1:20,000 dilution, 66009-1-Ig) was purchased from Proteintech (Wuhan, China).

    Immunohistochemistry:

    Article Title: Leveraging a disulfidptosis-related signature to predict the prognosis and immunotherapy effectiveness of cutaneous melanoma based on machine learning
    Article Snippet: .. Five monoclonal antibodies anti-HLA-DQA1 antibody (1:10,000 dilution for WB, 1:200 dilution for IHC, ab128959), anti-GZMA antibody (1:1000 dilution, ab209205), anti-CD79A antibody (1:10,000 dilution, ab79414), anti-LTB antibody (1:1000 dilution, ab89568) and anti-HE5 antibody (1:1000 dilution, ab125071) were purchased from Abcam (Cambridge, UK). .. Monoclonal antibody anti-β-actin (1:20,000 dilution, 66009-1-Ig) was purchased from Proteintech (Wuhan, China).

    Immunostaining:

    Article Title: Airway inflammatory changes in the lungs of patients with asthma-COPD overlap (ACO): a bronchoscopy endobronchial biopsy study
    Article Snippet: .. Following epitope retrieval, immunostaining with primary antibodies monoclonal anti-human CD68 (1:500 dilution, clone KP1, M0814, Dako, Victoria, Australia), monoclonal mouse anti-human neutrophil elastase (1:200 dilution, clone NP57, M0752, Dako, Victoria, Australia), recombinant anti-ribonuclease 3 eosinophil cationic protein (1:8000 dilution, ab207429, Abcam, Victoria, Australia), mast cell tryptase (1:400 dilution, clone AA1, M7052, Dako, Victoria, Australia), mouse anti-human CD8 (1:30 dilution, clone 4B11, NCL-CD8-4B11-L-CE, Leica Biosystems, Victoria, Australia) and mouse anti-human CD4 (1:30 dilution, clone 4B12, M7310, Dako, Victoria, Australia) was performed at room temperature. .. Polymer enzyme backbone conjugated secondary antibody (Dako EnVision, K5007) was used after the primary antibodies and visualized using diaminobenzidine chromogen (Dako EnVision, K7005).

    Concentration Assay:

    Article Title: Discovery and Preclinical Characterization of XMT-1660, an Optimized B7-H4-Targeted Antibody–Drug Conjugate for the Treatment of Cancer
    Article Snippet: Using the Leica BOND III platform, sections were baked, dewaxed and subjected to antigen retrieval (LEICA BOND III ER1+ Proteinase K). .. The primary B7-H4 antibody (Abcam ab209242) was used at a concentration of 0.2 μg/mL (prepared in DAKO/Agilent diluent S3022). .. Signal was detected using the Leica BOND Polymer Refine system/DAB chromogen.

    Control:

    Article Title: Lactobacillus johnsonii N6.2 phospholipids induce immature-like dendritic cells with a migratory-regulatory-like transcriptional signature
    Article Snippet: .. TLR2 on the surface of 7-d BMDCs was blocked by pre-incubating the cells with 9 μg/mL of recombinant monoclonal anti-rat TLR2 antibody (ab209217, Abcam) or isotype control (ab172730, Abcam) for 1 h prior to the addition of 5 μg/mL of L. johnsonii N6.2 PLs (as described above) and further incubation for 6 h. The antibody storage buffer (59% PBS pH 7.2, 40% glycerol, 0.05% BSA, 0.01% sodium azide) was prepared in-house and added at equal volumes as a negative control along with the vehicle control for the lipids. ..

    Negative Control:

    Article Title: Lactobacillus johnsonii N6.2 phospholipids induce immature-like dendritic cells with a migratory-regulatory-like transcriptional signature
    Article Snippet: .. TLR2 on the surface of 7-d BMDCs was blocked by pre-incubating the cells with 9 μg/mL of recombinant monoclonal anti-rat TLR2 antibody (ab209217, Abcam) or isotype control (ab172730, Abcam) for 1 h prior to the addition of 5 μg/mL of L. johnsonii N6.2 PLs (as described above) and further incubation for 6 h. The antibody storage buffer (59% PBS pH 7.2, 40% glycerol, 0.05% BSA, 0.01% sodium azide) was prepared in-house and added at equal volumes as a negative control along with the vehicle control for the lipids. ..



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    (A) Kaplan-Meier survival plots of TNBC breast cancer patients with low or high <t>PFKFB4</t> signature score in TCGA (n = 149) and GEO: GSE21653 (n = 85) database. Medium cut point of PFKFB4 signature score was used to stratified patients. p values were calculated by log rank test. (B) Relative mRNA expression of PFKFB4 in primary tumors and matching metastases in breast cancer patients from GEO: GSE110590 database. p values were calculated by one-way ANOVA and paired t test, two tailed. (C) Immunoblot analyses of PFKFB4 protein expression in LM3.3 human breast cancer cells stably expressing doxycycline inducible non-targeting shRNA (dox-shNT) or two shRNAs targeting PFKFB4 (dox-shPFKFB4 #97 and #99) with or without doxycycline treatment (2 μg/mL). β-actin was used as a loading control. (D) Schematic overview depicting LM3.3 spontaneous metastatic breast cancer model with doxycycline treatment schedule (n = 10). (E) The weight of resected primary tumors (n = 10). Error bars are presented as mean ± SD. ns, not significant, calculated by one-way ANOVA with Dunnett’s multiple comparisons test. (F) Immunoblot analyses of PFKFB4 expression in surgically resected LM3.3 primary tumors after 7 days of doxycycline treatment. Three animal bearing tumors (n = 3) from each group were used for analysis. (G) Representative IVIS image of systemic metastases from each group at day 26 after primary tumor implantation. (H) The kinetics of systemic metastases development after primary tumors were resected, as measured by IVIS imaging (n = 10). Error bars are presented as mean ± SEM. ***p < 0.001 by two-way ANOVA with Dunnett’s multiple comparisons test. See also .
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    Image Search Results


    Journal: iScience

    Article Title: CD82 expression marks the endothelium to hematopoietic transition at the onset of blood specification in human

    doi: 10.1016/j.isci.2023.107583

    Figure Lengend Snippet:

    Article Snippet: Hoechst 33258 (1/100) (1/100) , Abcam , Ab228550.

    Techniques: Recombinant, Derivative Assay, Cell Culture, Flow Cytometry

    TGFBR1 and BMPR2 are the main effector targets of miR-30-3p in HNSCC. ( a ) Predicted interaction between target proteins was analyzed using STRING database. ( b ) Heatmap representing predicted target gene expression was determined by RT-qPCR in HNSCC cell lines ( n = 4–7). ( c ) Western blot analysis of CAL27, CAL33, and SCC9 cell lines overexpressing miR-30a-3p or miR-30e-3p (c for miR-ctrl, a for miR-30a-3p and e for miR-30e-3p, n = 3–12, * p < 0.05, ** p < 0.01 and *** p < 0.001). ( d ) Immunofluorescence analysis by confocal microscopy of HNSCC cell lines overexpressing miR-30a-3p or miR-30e-3p ( n = 3–4). ( e ) Predicted pairing region between miR-30a-3p or miR-30e-3p and TGFBR1 (position 812–818) and BMPR2 (position 1411–1417). ( f ) Evasion of CAL27, CAL33, and SCC9 cell lines with TGF-β or BMP inhibitors ( n = 16–49 spheroids, * p < 0.05, ** p < 0.01 and *** p < 0.001). ( g ) Survival fraction of CAL27, CAL33, and SCC9 cell lines with TGF-β or BMP inhibitors ( n = 9–12, * p < 0.05 and *** p < 0.001).

    Journal: International Journal of Molecular Sciences

    Article Title: Tumor-Suppressive and Immunomodulating Activity of miR-30a-3p and miR-30e-3p in HNSCC Cells and Tumoroids

    doi: 10.3390/ijms241311178

    Figure Lengend Snippet: TGFBR1 and BMPR2 are the main effector targets of miR-30-3p in HNSCC. ( a ) Predicted interaction between target proteins was analyzed using STRING database. ( b ) Heatmap representing predicted target gene expression was determined by RT-qPCR in HNSCC cell lines ( n = 4–7). ( c ) Western blot analysis of CAL27, CAL33, and SCC9 cell lines overexpressing miR-30a-3p or miR-30e-3p (c for miR-ctrl, a for miR-30a-3p and e for miR-30e-3p, n = 3–12, * p < 0.05, ** p < 0.01 and *** p < 0.001). ( d ) Immunofluorescence analysis by confocal microscopy of HNSCC cell lines overexpressing miR-30a-3p or miR-30e-3p ( n = 3–4). ( e ) Predicted pairing region between miR-30a-3p or miR-30e-3p and TGFBR1 (position 812–818) and BMPR2 (position 1411–1417). ( f ) Evasion of CAL27, CAL33, and SCC9 cell lines with TGF-β or BMP inhibitors ( n = 16–49 spheroids, * p < 0.05, ** p < 0.01 and *** p < 0.001). ( g ) Survival fraction of CAL27, CAL33, and SCC9 cell lines with TGF-β or BMP inhibitors ( n = 9–12, * p < 0.05 and *** p < 0.001).

    Article Snippet: Samples were blocked in PBS/5% BSA/0.3% Triton X-100 for 1 h and incubated overnight at 4 °C with TGFBR1 (ab235178, 1/100, Abcam) or BMPR2 (ab130206, 1/100, Abcam).

    Techniques: Targeted Gene Expression, Quantitative RT-PCR, Western Blot, Immunofluorescence, Confocal Microscopy

    Overexpression of miR-30-3p slows down HNSCC patient-derived tumoroid growth and development. ( a ) Immunohistochemical staining of Keratin 34BE12, p40, p63, and hematoxylin and eosin staining in tumoroid versus the original tumor. ( b ) miR-30a-3p and miR-30e-3p expression was determined by RT-qPCR in tumoroids ( n = 5, *** p < 0.001). ( c ) miR-30a-3p and miR-30e-3p expression was determined by RT-qPCR in tumoroids post-transfection ( n = 4–5, * p < 0.05) ( d ) Number of tumoroids remaining at day 6 post-transfection with mir-30a-3p or miR-30e-3p ( n = 10–20 tumoroids, *** p < 0.001). ( e ) Volume of tumoroids at day 6 transfected with miR-30a-3p or miR-30e-3p. Estimated volume = (4/3) × π (d1/2 × d2/2 × d3/3) ( n = 10–20 tumoroids, * p < 0.05 and ** p < 0.01). ( f ) TGFBR1 and BMPR2 expressions were determined by RT-qPCR in tumoroids ( n = 4–6, ** p < 0.01 and *** p < 0.001). ( g ) BMPR2 expressions were determined by immunostaining in tumoroids ( n = 3).

    Journal: International Journal of Molecular Sciences

    Article Title: Tumor-Suppressive and Immunomodulating Activity of miR-30a-3p and miR-30e-3p in HNSCC Cells and Tumoroids

    doi: 10.3390/ijms241311178

    Figure Lengend Snippet: Overexpression of miR-30-3p slows down HNSCC patient-derived tumoroid growth and development. ( a ) Immunohistochemical staining of Keratin 34BE12, p40, p63, and hematoxylin and eosin staining in tumoroid versus the original tumor. ( b ) miR-30a-3p and miR-30e-3p expression was determined by RT-qPCR in tumoroids ( n = 5, *** p < 0.001). ( c ) miR-30a-3p and miR-30e-3p expression was determined by RT-qPCR in tumoroids post-transfection ( n = 4–5, * p < 0.05) ( d ) Number of tumoroids remaining at day 6 post-transfection with mir-30a-3p or miR-30e-3p ( n = 10–20 tumoroids, *** p < 0.001). ( e ) Volume of tumoroids at day 6 transfected with miR-30a-3p or miR-30e-3p. Estimated volume = (4/3) × π (d1/2 × d2/2 × d3/3) ( n = 10–20 tumoroids, * p < 0.05 and ** p < 0.01). ( f ) TGFBR1 and BMPR2 expressions were determined by RT-qPCR in tumoroids ( n = 4–6, ** p < 0.01 and *** p < 0.001). ( g ) BMPR2 expressions were determined by immunostaining in tumoroids ( n = 3).

    Article Snippet: Samples were blocked in PBS/5% BSA/0.3% Triton X-100 for 1 h and incubated overnight at 4 °C with TGFBR1 (ab235178, 1/100, Abcam) or BMPR2 (ab130206, 1/100, Abcam).

    Techniques: Over Expression, Derivative Assay, Immunohistochemical staining, Staining, Expressing, Quantitative RT-PCR, Transfection, Immunostaining

    miR-30a-3p and miR-30e-3p influence macrophages’ immune response to HNSCC cells. ( a ) Images of M0-polarized THP-1 exposed to CAL27, CAL33, SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media in phase-contrast microscopy (×10). ( b ) Western blot analysis of CD86 in M0-polarized THP-1 exposed to CAL27, CAL33, and SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 7–10, * p < 0.05, ** p < 0.01, *** p < 0.001). ( c ) TGFBR1 expression was determined by RT-qPCR in M0-polarized THP-1 exposed to CAL27, CAL33, SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 3–4, * p < 0.05, ** p < 0.01, *** p < 0.001). ( d ) Western blot analysis of CD163 in M0-polarized THP-1 exposed to CAL27, CAL33, and SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 8–10, * p < 0.05, ** p < 0.01, *** p < 0.001). ( e ) Images of MO-polarized THP-1 cells (green) phagocytosing miR-30a-3p or miR-30e-3p-transfected HNSCC cells (red) in confocal microscopy 20× and 63×. ( f ) Percentage of phagocytosis, calculated as the number of M0-polarized THP-1 cells phagocytosing transfected HNSCC cells/total number of M0-polarized THP-1 × 100 ( n = 3–4, * p < 0.05, ** p < 0.01, *** p < 0.001). ( g ) Percentage of phagocytosis with antibody antiCD47, calculated as the number of M0-polarized THP-1 cells phagocytosing transfected HNSCC cells/total number of M0-polarized THP-1 × 100 ( n = 10–18, * p < 0.05).

    Journal: International Journal of Molecular Sciences

    Article Title: Tumor-Suppressive and Immunomodulating Activity of miR-30a-3p and miR-30e-3p in HNSCC Cells and Tumoroids

    doi: 10.3390/ijms241311178

    Figure Lengend Snippet: miR-30a-3p and miR-30e-3p influence macrophages’ immune response to HNSCC cells. ( a ) Images of M0-polarized THP-1 exposed to CAL27, CAL33, SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media in phase-contrast microscopy (×10). ( b ) Western blot analysis of CD86 in M0-polarized THP-1 exposed to CAL27, CAL33, and SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 7–10, * p < 0.05, ** p < 0.01, *** p < 0.001). ( c ) TGFBR1 expression was determined by RT-qPCR in M0-polarized THP-1 exposed to CAL27, CAL33, SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 3–4, * p < 0.05, ** p < 0.01, *** p < 0.001). ( d ) Western blot analysis of CD163 in M0-polarized THP-1 exposed to CAL27, CAL33, and SCC9 overexpressing miR-30a-3p and miR-30e-3p conditioned media ( n = 8–10, * p < 0.05, ** p < 0.01, *** p < 0.001). ( e ) Images of MO-polarized THP-1 cells (green) phagocytosing miR-30a-3p or miR-30e-3p-transfected HNSCC cells (red) in confocal microscopy 20× and 63×. ( f ) Percentage of phagocytosis, calculated as the number of M0-polarized THP-1 cells phagocytosing transfected HNSCC cells/total number of M0-polarized THP-1 × 100 ( n = 3–4, * p < 0.05, ** p < 0.01, *** p < 0.001). ( g ) Percentage of phagocytosis with antibody antiCD47, calculated as the number of M0-polarized THP-1 cells phagocytosing transfected HNSCC cells/total number of M0-polarized THP-1 × 100 ( n = 10–18, * p < 0.05).

    Article Snippet: Samples were blocked in PBS/5% BSA/0.3% Triton X-100 for 1 h and incubated overnight at 4 °C with TGFBR1 (ab235178, 1/100, Abcam) or BMPR2 (ab130206, 1/100, Abcam).

    Techniques: Microscopy, Western Blot, Expressing, Quantitative RT-PCR, Transfection, Confocal Microscopy

    (A) Kaplan-Meier survival plots of TNBC breast cancer patients with low or high PFKFB4 signature score in TCGA (n = 149) and GEO: GSE21653 (n = 85) database. Medium cut point of PFKFB4 signature score was used to stratified patients. p values were calculated by log rank test. (B) Relative mRNA expression of PFKFB4 in primary tumors and matching metastases in breast cancer patients from GEO: GSE110590 database. p values were calculated by one-way ANOVA and paired t test, two tailed. (C) Immunoblot analyses of PFKFB4 protein expression in LM3.3 human breast cancer cells stably expressing doxycycline inducible non-targeting shRNA (dox-shNT) or two shRNAs targeting PFKFB4 (dox-shPFKFB4 #97 and #99) with or without doxycycline treatment (2 μg/mL). β-actin was used as a loading control. (D) Schematic overview depicting LM3.3 spontaneous metastatic breast cancer model with doxycycline treatment schedule (n = 10). (E) The weight of resected primary tumors (n = 10). Error bars are presented as mean ± SD. ns, not significant, calculated by one-way ANOVA with Dunnett’s multiple comparisons test. (F) Immunoblot analyses of PFKFB4 expression in surgically resected LM3.3 primary tumors after 7 days of doxycycline treatment. Three animal bearing tumors (n = 3) from each group were used for analysis. (G) Representative IVIS image of systemic metastases from each group at day 26 after primary tumor implantation. (H) The kinetics of systemic metastases development after primary tumors were resected, as measured by IVIS imaging (n = 10). Error bars are presented as mean ± SEM. ***p < 0.001 by two-way ANOVA with Dunnett’s multiple comparisons test. See also .

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: (A) Kaplan-Meier survival plots of TNBC breast cancer patients with low or high PFKFB4 signature score in TCGA (n = 149) and GEO: GSE21653 (n = 85) database. Medium cut point of PFKFB4 signature score was used to stratified patients. p values were calculated by log rank test. (B) Relative mRNA expression of PFKFB4 in primary tumors and matching metastases in breast cancer patients from GEO: GSE110590 database. p values were calculated by one-way ANOVA and paired t test, two tailed. (C) Immunoblot analyses of PFKFB4 protein expression in LM3.3 human breast cancer cells stably expressing doxycycline inducible non-targeting shRNA (dox-shNT) or two shRNAs targeting PFKFB4 (dox-shPFKFB4 #97 and #99) with or without doxycycline treatment (2 μg/mL). β-actin was used as a loading control. (D) Schematic overview depicting LM3.3 spontaneous metastatic breast cancer model with doxycycline treatment schedule (n = 10). (E) The weight of resected primary tumors (n = 10). Error bars are presented as mean ± SD. ns, not significant, calculated by one-way ANOVA with Dunnett’s multiple comparisons test. (F) Immunoblot analyses of PFKFB4 expression in surgically resected LM3.3 primary tumors after 7 days of doxycycline treatment. Three animal bearing tumors (n = 3) from each group were used for analysis. (G) Representative IVIS image of systemic metastases from each group at day 26 after primary tumor implantation. (H) The kinetics of systemic metastases development after primary tumors were resected, as measured by IVIS imaging (n = 10). Error bars are presented as mean ± SEM. ***p < 0.001 by two-way ANOVA with Dunnett’s multiple comparisons test. See also .

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: Expressing, Two Tailed Test, Western Blot, Stable Transfection, shRNA, Tumor Implantation, Imaging

    (A) Gene sets enriched in WT or PFKFB4-KO EMT6 cells identified in RNA-seq data. Top five gene sets significantly enriched in WT cells are listed. Plot showing gene set enrichment analysis (GSEA) of αvβ3 integrin pathway in EMT6 cells. (B) Heatmap showing differentially expressed genes (DEGs) (p < 0.05, Log 2 FC < −1.5 or > 1.5) in αvβ3 integrin pathway. (C) The mRNA expression of ITGB1, ITGB3 (encoding integrin β3), ITGB5, and ITGAV in EMT6 WT and PFKFB4-KO cells measured by quantitative PCR (n = 3). Error bars are presented as mean ± SD. ****p < 0.0001 by one-way ANOVA with Dunnett’s multiple comparisons test. (D) The protein expression of integrin β3 and PFKFB4 in EMT6 WT and PFKFB4-KO cells measured by immunoblotting. β-actin was used as a loading control. (E) Boyden chamber migration assay using EMT6 WT and PFKFB4-KO cells with serum as chemoattractant (n = 3). Scale bar, 300 μm. Error bars are presented as mean ± SD. ****p < 0.0001 by one-way ANOVA with Dunnett’s multiple comparisons test. (F) Boyden chamber migration assay using EMT6 WT and PFKFB4-KO cells using fibronectin (FN; 10 μg/mL) and vitronectin (VN; 5 μg/mL) as chemoattractant. Scale bar, 300 μm. (G) Quantification of FN- and VN-dependent migration (n = 3). Error bars are presented as mean ± SD. **p < 0.01 by unpaired two-tailed t test. (H) Representative immunohistochemistry images showing integrin β3 (red) expression in shNT and shPFKFB4 metastatic lymph nodes from LM3.3 mouse experiments described in . Human HLA (green) was used as a marker for human tumor cells. Scale bar, 50 μm. (I) Quantification of integrin β3 expression in human HLA-positive cells (n = 3). Error bars are presented as mean ± SD. *p < 0.05 by unpaired two-tailed t test. See also and .

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: (A) Gene sets enriched in WT or PFKFB4-KO EMT6 cells identified in RNA-seq data. Top five gene sets significantly enriched in WT cells are listed. Plot showing gene set enrichment analysis (GSEA) of αvβ3 integrin pathway in EMT6 cells. (B) Heatmap showing differentially expressed genes (DEGs) (p < 0.05, Log 2 FC < −1.5 or > 1.5) in αvβ3 integrin pathway. (C) The mRNA expression of ITGB1, ITGB3 (encoding integrin β3), ITGB5, and ITGAV in EMT6 WT and PFKFB4-KO cells measured by quantitative PCR (n = 3). Error bars are presented as mean ± SD. ****p < 0.0001 by one-way ANOVA with Dunnett’s multiple comparisons test. (D) The protein expression of integrin β3 and PFKFB4 in EMT6 WT and PFKFB4-KO cells measured by immunoblotting. β-actin was used as a loading control. (E) Boyden chamber migration assay using EMT6 WT and PFKFB4-KO cells with serum as chemoattractant (n = 3). Scale bar, 300 μm. Error bars are presented as mean ± SD. ****p < 0.0001 by one-way ANOVA with Dunnett’s multiple comparisons test. (F) Boyden chamber migration assay using EMT6 WT and PFKFB4-KO cells using fibronectin (FN; 10 μg/mL) and vitronectin (VN; 5 μg/mL) as chemoattractant. Scale bar, 300 μm. (G) Quantification of FN- and VN-dependent migration (n = 3). Error bars are presented as mean ± SD. **p < 0.01 by unpaired two-tailed t test. (H) Representative immunohistochemistry images showing integrin β3 (red) expression in shNT and shPFKFB4 metastatic lymph nodes from LM3.3 mouse experiments described in . Human HLA (green) was used as a marker for human tumor cells. Scale bar, 50 μm. (I) Quantification of integrin β3 expression in human HLA-positive cells (n = 3). Error bars are presented as mean ± SD. *p < 0.05 by unpaired two-tailed t test. See also and .

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: RNA Sequencing Assay, Expressing, Real-time Polymerase Chain Reaction, Western Blot, Migration, Two Tailed Test, Immunohistochemistry, Marker

    (A) Quantitative PCR showing the relative levels of PFKFB4 in MDA-MB-468, MDA-MB-231, and EMT6 cells cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. **p < 0.01; ***p < 0.001 by unpaired two-tailed t test. (B) Wound healing assay using EMT6 WT and PFKFB4-KO cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (C) The mRNA expression of ITGB3 in EMT6 WT and PFKFB4-KO cells under normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (D and E) Immunoblot analyses of integrin β3, HIF-1α, PFKFB4, and β-actin in WT and PFKFB4-KO MDA-MB-468 (D) and EMT6 cells (E) cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ). (F) Immunoblot analyses showing the levels of endogenous integrin β3 and GFP-integrin β3 along with PFKFB4. β-actin was used as a loading control. (G) Boyden chamber migration assay using EMT6 WT, PFKFB4-KO, and PFKFB4-KO cells with ectopic GFP-integrin β3 cultured in hypoxic condition (1% O 2 ). Scale bar, 300 μm. (H) Quantification of migration assay under hypoxic condition (n = 3). Error bars are presented as mean ± SD. ***p < 0.001 by one-way ANOVA with Dunnett’s multiple comparisons test. See also .

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: (A) Quantitative PCR showing the relative levels of PFKFB4 in MDA-MB-468, MDA-MB-231, and EMT6 cells cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. **p < 0.01; ***p < 0.001 by unpaired two-tailed t test. (B) Wound healing assay using EMT6 WT and PFKFB4-KO cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (C) The mRNA expression of ITGB3 in EMT6 WT and PFKFB4-KO cells under normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (D and E) Immunoblot analyses of integrin β3, HIF-1α, PFKFB4, and β-actin in WT and PFKFB4-KO MDA-MB-468 (D) and EMT6 cells (E) cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ). (F) Immunoblot analyses showing the levels of endogenous integrin β3 and GFP-integrin β3 along with PFKFB4. β-actin was used as a loading control. (G) Boyden chamber migration assay using EMT6 WT, PFKFB4-KO, and PFKFB4-KO cells with ectopic GFP-integrin β3 cultured in hypoxic condition (1% O 2 ). Scale bar, 300 μm. (H) Quantification of migration assay under hypoxic condition (n = 3). Error bars are presented as mean ± SD. ***p < 0.001 by one-way ANOVA with Dunnett’s multiple comparisons test. See also .

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: Real-time Polymerase Chain Reaction, Cell Culture, Two Tailed Test, Wound Healing Assay, Expressing, Western Blot, Migration

    (A) Representative images of ultrasound and photoacoustic imaging (US-PAI) from LM3.3 shNT and shPFKFB4 primary tumors. The images were acquired in 3D-mode and presented in three representative frames showing the oxygen saturation (sO 2 %) from the periphery (left and right frames) and the core (middle frame) of the tumors. (B) Quantification of oxygen saturation (tumor 3D sO 2 %) in shNT and shPFKFB4 tumors (n = 3). Error bars are presented as mean ± SD. ns, not significant, calculated by unpaired two-tailed t test. (C) Immunohistochemical staining of PFKFB4 (red) and pimonidazole (green) from resected LM3.3 shNT and shPFKFB4 primary tumors (n = 4). Pimonidazole isa marker of hypoxia. Each tumor was imaged and quantified in both pimonidazole negative and positive areas. Scale bar, 75 μm. (D) Quantification of the intensity of PFKFB4 staining (n = 4). Error bars are presented as mean ± SD. **p < 0.01; ***p < 0.001; ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (E) Experimental workflow of in vitro (n = 3) and in vivo (n = 5) targeted metabolomics. (F) Principal component analysis of targeted metabolomics from EMT6 WT and PFKFB4-KO cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ). (G) Relative levels of serine, glycine, aspartate, arginine, and GSH/GSSG in WT and PFKFB4-KO EMT6 cells cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (H) Unique metabolic signature regulated by PFKFB4 in TNBC is schematically demonstrated. See also and .

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: (A) Representative images of ultrasound and photoacoustic imaging (US-PAI) from LM3.3 shNT and shPFKFB4 primary tumors. The images were acquired in 3D-mode and presented in three representative frames showing the oxygen saturation (sO 2 %) from the periphery (left and right frames) and the core (middle frame) of the tumors. (B) Quantification of oxygen saturation (tumor 3D sO 2 %) in shNT and shPFKFB4 tumors (n = 3). Error bars are presented as mean ± SD. ns, not significant, calculated by unpaired two-tailed t test. (C) Immunohistochemical staining of PFKFB4 (red) and pimonidazole (green) from resected LM3.3 shNT and shPFKFB4 primary tumors (n = 4). Pimonidazole isa marker of hypoxia. Each tumor was imaged and quantified in both pimonidazole negative and positive areas. Scale bar, 75 μm. (D) Quantification of the intensity of PFKFB4 staining (n = 4). Error bars are presented as mean ± SD. **p < 0.01; ***p < 0.001; ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (E) Experimental workflow of in vitro (n = 3) and in vivo (n = 5) targeted metabolomics. (F) Principal component analysis of targeted metabolomics from EMT6 WT and PFKFB4-KO cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ). (G) Relative levels of serine, glycine, aspartate, arginine, and GSH/GSSG in WT and PFKFB4-KO EMT6 cells cultured in normoxia (21% O 2 ) or hypoxia (1% O 2 ) (n = 3). Error bars are presented as mean ± SD. *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (H) Unique metabolic signature regulated by PFKFB4 in TNBC is schematically demonstrated. See also and .

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: Imaging, Two Tailed Test, Immunohistochemical staining, Staining, Marker, In Vitro, In Vivo, Cell Culture

    (A and B) Representative PFKFB4 immunohistochemical staining of breast cancer patients (n = 122) with high or low staining of PFKFB4 in the nucleus (A) and cytoplasm (B). Scale bar, 300 μm. (C and D) Kaplan-Meier analysis of the overall survival of breast cancer patients (n = 122) with high or low expression of PFKFB4 in the nucleus (C) or cytoplasm (D). (E) WT and PFKFB4-KO MDA-MB-468 cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) were subjected to subcellular fractionation, followed by immunoblot analyses of PFKFB4, β-tubulin, and lamin A/C. PFKFB4 blot was imaged for 30 s to obtain a low exposure and 120 s to obtain a high exposure. (F) Immunoblot analyses of nuclear fractions from MDA-MB-468 WT and PFKFB4-KO cells cultured in normoxic or hypoxic conditions were probed with PFKFB4, lamin A/C, and HIF-1α antibodies. (G) MDA-MB-468 cells cultured in normoxic or hypoxic conditions were used for immunofluorescence staining of PFKFB4. Scale bar, 25 μm (low-magnification image) and 10 μm (high-magnification image). (H and I) The mRNA expression of SLC2A1 (H) and PDK1 (I) in WT and PFKFB4-KO MDA-MB-468 cells under normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) was measured by quantitative PCR (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ***p < 0.001; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (J) HIF-1α luciferase (HRE) reporter assay in MDA-MB-468 WT and PFKFB4-KO cells expressing shNT or shSRC-3 cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) for 24 h. Error bars are presented as mean ± SD. ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (K) Immunoblot analyses of SRC-3 and integrin β3 in MDA-MB-231 cells stably expressing shNT or shSRC-3. β-actin was used as a loading control. See also and and .

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: (A and B) Representative PFKFB4 immunohistochemical staining of breast cancer patients (n = 122) with high or low staining of PFKFB4 in the nucleus (A) and cytoplasm (B). Scale bar, 300 μm. (C and D) Kaplan-Meier analysis of the overall survival of breast cancer patients (n = 122) with high or low expression of PFKFB4 in the nucleus (C) or cytoplasm (D). (E) WT and PFKFB4-KO MDA-MB-468 cells cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) were subjected to subcellular fractionation, followed by immunoblot analyses of PFKFB4, β-tubulin, and lamin A/C. PFKFB4 blot was imaged for 30 s to obtain a low exposure and 120 s to obtain a high exposure. (F) Immunoblot analyses of nuclear fractions from MDA-MB-468 WT and PFKFB4-KO cells cultured in normoxic or hypoxic conditions were probed with PFKFB4, lamin A/C, and HIF-1α antibodies. (G) MDA-MB-468 cells cultured in normoxic or hypoxic conditions were used for immunofluorescence staining of PFKFB4. Scale bar, 25 μm (low-magnification image) and 10 μm (high-magnification image). (H and I) The mRNA expression of SLC2A1 (H) and PDK1 (I) in WT and PFKFB4-KO MDA-MB-468 cells under normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) was measured by quantitative PCR (n = 3). Error bars are presented as mean ± SD. *p < 0.05; ***p < 0.001; ****p < 0.0001 by one-way ANOVA with Sidak’s multiple comparisons test. (J) HIF-1α luciferase (HRE) reporter assay in MDA-MB-468 WT and PFKFB4-KO cells expressing shNT or shSRC-3 cultured in normoxic (21% O 2 ) or hypoxic condition (1% O 2 ) for 24 h. Error bars are presented as mean ± SD. ****p < 0.0001; ns, not significant, calculated by one-way ANOVA with Sidak’s multiple comparisons test. (K) Immunoblot analyses of SRC-3 and integrin β3 in MDA-MB-231 cells stably expressing shNT or shSRC-3. β-actin was used as a loading control. See also and and .

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: Immunohistochemical staining, Staining, Expressing, Cell Culture, Fractionation, Western Blot, Immunofluorescence, Real-time Polymerase Chain Reaction, Luciferase, Reporter Assay, Stable Transfection

    KEY RESOURCES TABLE

    Journal: Cell reports

    Article Title: Hypoxic activation of PFKFB4 in breast tumor microenvironment shapes metabolic and cellular plasticity to accentuate metastatic competence

    doi: 10.1016/j.celrep.2022.111756

    Figure Lengend Snippet: KEY RESOURCES TABLE

    Article Snippet: PFKFB4 Antibody (Abcam, Cat. No. ab137785) at 1/100 was used for staining.

    Techniques: Cell Culture, Produced, Recombinant, Infection, Western Blot, Lysis, Protease Inhibitor, Bicinchoninic Acid Protein Assay, Plasmid Preparation, Blocking Assay, Stripping, Magnetic Beads, SYBR Green Assay, Luciferase, Amplification, Sequencing, shRNA, Software, Real-time Polymerase Chain Reaction