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Image Search Results


Distribution of CD68 positive microglial cells. Immunohistochemistry of CD 68 in the cerebellum x1000, **p<0.01 against control.

Journal: Journal of chemical neuroanatomy

Article Title: Modeling Cerebellar Limb Dysmetria and Impaired Spatial Memory in Rats Using Lamivudine: A preliminary study

doi: 10.1016/j.jchemneu.2020.101838

Figure Lengend Snippet: Distribution of CD68 positive microglial cells. Immunohistochemistry of CD 68 in the cerebellum x1000, **p<0.01 against control.

Article Snippet: Sections were incubated with primary prediluted GFAP (IR524) Dako, and CD68 antibody (M0814) Dako, at 1:100 dilution for 45 minutes each, and sections washed with PBS for 3 minutes.

Techniques: Immunohistochemistry

Hypoxic and macrophagic biomarkers studied by immunohistochemistry and their clinical correlations.

Journal: Cancers

Article Title: Together Intra-Tumor Hypoxia and Macrophagic Immunity Are Driven Worst Outcome in Pediatric High-Grade Osteosarcomas

doi: 10.3390/cancers14061482

Figure Lengend Snippet: Hypoxic and macrophagic biomarkers studied by immunohistochemistry and their clinical correlations.

Article Snippet: We used the following primary antibodies: CD68 (clone KP1, M0814, dilution: 1/1000 e , Dako, Glostrup, Denmark), CD163 (clone 10D6, MS-1103-S, dilution: 1/200 e , Neomarkers, Portsmouth, NH, USA), HIF-1α (ab8366, dilution: 1/1000 e , Abcam, Cambridge, UK), pmTor (clone 49F9, dilution: 1/100 e , Cell Signaling, Danvers, MA, USA), pS6-RP (clone54D2, Cell Signaling, dilution: 1/100 e ) and CAIX (clone MRQ-54, dilution: 1/100 e , Cell Marque, Rocklin, CA, USA).

Techniques: Immunohistochemistry, Expressing

Examples of immunohistochemical staining with hypoxic markers ( upper panels : phospho-mTor (pmTor), pS6-RP, HIF-1α and CAIX and their paired controls) and macrophagic markers ( bottom panel : CD68 and CD163 with their paired controls). Scalebar = 20 µm, black arrows show examples of intra-tumor giant cells.

Journal: Cancers

Article Title: Together Intra-Tumor Hypoxia and Macrophagic Immunity Are Driven Worst Outcome in Pediatric High-Grade Osteosarcomas

doi: 10.3390/cancers14061482

Figure Lengend Snippet: Examples of immunohistochemical staining with hypoxic markers ( upper panels : phospho-mTor (pmTor), pS6-RP, HIF-1α and CAIX and their paired controls) and macrophagic markers ( bottom panel : CD68 and CD163 with their paired controls). Scalebar = 20 µm, black arrows show examples of intra-tumor giant cells.

Article Snippet: We used the following primary antibodies: CD68 (clone KP1, M0814, dilution: 1/1000 e , Dako, Glostrup, Denmark), CD163 (clone 10D6, MS-1103-S, dilution: 1/200 e , Neomarkers, Portsmouth, NH, USA), HIF-1α (ab8366, dilution: 1/1000 e , Abcam, Cambridge, UK), pmTor (clone 49F9, dilution: 1/100 e , Cell Signaling, Danvers, MA, USA), pS6-RP (clone54D2, Cell Signaling, dilution: 1/100 e ) and CAIX (clone MRQ-54, dilution: 1/100 e , Cell Marque, Rocklin, CA, USA).

Techniques: Immunohistochemical staining, Staining

Kaplan–Meier significant correlations with immunohistological analyses of hypoxic and macrophagic biomarkers. On the upper rows, Kaplan–Meier estimates curves of OS and EFS according to the expression of pS6-RP (pS6) (( A , B ), respectively), HIF-1α (HIF) ( C , D ), respectively) and carbonic anhydrase IX (CAIX) (( E , F ), respectively). On the two last rows, Kaplan–Meier estimates of OS ( G ) and EFS ( H ) by the presence or absence of intra-tumor giant cells (GC). We stratified the population with three biomarkers associating CD68, CD163 and GC presence to a worse OS and EFS (( I , J ) curves). Finally, OS and EFS distributions based on the expression of CD68 based on the cutpoint of 17.5% expression (( K , L ) graphs, respectively). p values are reported on the right corner of the graphs, in bold when p < 0.05.

Journal: Cancers

Article Title: Together Intra-Tumor Hypoxia and Macrophagic Immunity Are Driven Worst Outcome in Pediatric High-Grade Osteosarcomas

doi: 10.3390/cancers14061482

Figure Lengend Snippet: Kaplan–Meier significant correlations with immunohistological analyses of hypoxic and macrophagic biomarkers. On the upper rows, Kaplan–Meier estimates curves of OS and EFS according to the expression of pS6-RP (pS6) (( A , B ), respectively), HIF-1α (HIF) ( C , D ), respectively) and carbonic anhydrase IX (CAIX) (( E , F ), respectively). On the two last rows, Kaplan–Meier estimates of OS ( G ) and EFS ( H ) by the presence or absence of intra-tumor giant cells (GC). We stratified the population with three biomarkers associating CD68, CD163 and GC presence to a worse OS and EFS (( I , J ) curves). Finally, OS and EFS distributions based on the expression of CD68 based on the cutpoint of 17.5% expression (( K , L ) graphs, respectively). p values are reported on the right corner of the graphs, in bold when p < 0.05.

Article Snippet: We used the following primary antibodies: CD68 (clone KP1, M0814, dilution: 1/1000 e , Dako, Glostrup, Denmark), CD163 (clone 10D6, MS-1103-S, dilution: 1/200 e , Neomarkers, Portsmouth, NH, USA), HIF-1α (ab8366, dilution: 1/1000 e , Abcam, Cambridge, UK), pmTor (clone 49F9, dilution: 1/100 e , Cell Signaling, Danvers, MA, USA), pS6-RP (clone54D2, Cell Signaling, dilution: 1/100 e ) and CAIX (clone MRQ-54, dilution: 1/100 e , Cell Marque, Rocklin, CA, USA).

Techniques: Expressing