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primary antibody anti p2y 6 r  (Alomone Labs)


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    Structured Review

    Alomone Labs primary antibody anti p2y 6 r
    Endothelial <t>P2Y</t> 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)
    Primary Antibody Anti P2y 6 R, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 94/100, based on 35 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/primary+antibody+anti+p2y+6+r/pmc13013911-69-0-9?v=Alomone+Labs
    Average 94 stars, based on 35 article reviews
    primary antibody anti p2y 6 r - by Bioz Stars, 2026-08
    94/100 stars

    Images

    1) Product Images from "Proteasomal-dependent endothelial P2Y 6 receptor downregulation as an adaptive mechanism limiting monocyte adhesion during intestinal schistosomiasis"

    Article Title: Proteasomal-dependent endothelial P2Y 6 receptor downregulation as an adaptive mechanism limiting monocyte adhesion during intestinal schistosomiasis

    Journal: Purinergic Signalling

    doi: 10.1007/s11302-026-10141-x

    Endothelial P2Y 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)
    Figure Legend Snippet: Endothelial P2Y 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)

    Techniques Used: Immunocytochemistry, Staining, Cell Culture, Control, Infection, Fluorescence

    Endothelial P2Y 6 R expression is increased by proteosome inhibition during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from basal (top line) MG132 1 µM, 1 h (middle line) or MG132 1 µM, 6 h (bottom line) using anti-P2Y 6 R antibody (1:500, overnight) followed by Alexa Fluor 488 secondary antibody secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified for all groups and then expressed as arbitrary units (a.u.). C . ROS was quantified colorimetrically using NBT. D . Lipid peroxidation was quantified by the production of malondialdehyde (MDA) in reaction with thiobarbituric acid. Data were expressed as the mean and SEM of n independent cultures in triplicate for each condition. **p < 0.01 ( B , One-way ANOVA followed by Tukey’s multiple comparisons test, n = 3 animals for each group); ***p < 0.001; **p < 0.01 (C, D, unpaired t -test, n = 3 animals for each group). ROS = reactive oxygen species; TBARS = thiobarbituric acid reactive species
    Figure Legend Snippet: Endothelial P2Y 6 R expression is increased by proteosome inhibition during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from basal (top line) MG132 1 µM, 1 h (middle line) or MG132 1 µM, 6 h (bottom line) using anti-P2Y 6 R antibody (1:500, overnight) followed by Alexa Fluor 488 secondary antibody secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified for all groups and then expressed as arbitrary units (a.u.). C . ROS was quantified colorimetrically using NBT. D . Lipid peroxidation was quantified by the production of malondialdehyde (MDA) in reaction with thiobarbituric acid. Data were expressed as the mean and SEM of n independent cultures in triplicate for each condition. **p < 0.01 ( B , One-way ANOVA followed by Tukey’s multiple comparisons test, n = 3 animals for each group); ***p < 0.001; **p < 0.01 (C, D, unpaired t -test, n = 3 animals for each group). ROS = reactive oxygen species; TBARS = thiobarbituric acid reactive species

    Techniques Used: Expressing, Inhibition, Immunocytochemistry, Staining, Cell Culture, Fluorescence



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    Alomone Labs primary antibody anti p2y 6 r
    Endothelial <t>P2Y</t> 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)
    Primary Antibody Anti P2y 6 R, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/primary+antibody+anti+p2y+6+r/pmc13013911-69-0-9?v=Alomone+Labs
    Average 94 stars, based on 1 article reviews
    primary antibody anti p2y 6 r - by Bioz Stars, 2026-08
    94/100 stars
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    Endothelial P2Y 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)

    Journal: Purinergic Signalling

    Article Title: Proteasomal-dependent endothelial P2Y 6 receptor downregulation as an adaptive mechanism limiting monocyte adhesion during intestinal schistosomiasis

    doi: 10.1007/s11302-026-10141-x

    Figure Lengend Snippet: Endothelial P2Y 6 R mRNA and protein levels are reduced during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from control (top line) and infected (bottom line) groups using anti-P2Y 6 R antibody (1:500, overnight), followed by Alexa Fluor 488 secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified and then expressed as arbitrary units (a.u.). P2Y 6 R mRNA levels were lower in the infected (gray bars) than in the control (white bars) group. C. The P2Y 6 R mRNA levels were normalized by the endogenous gene β-actin. Data were expressed as mean and SEM of n independent cultures performed with different animals for each condition. ***p < 0.001, **p < 0.01 (unpaired t -test, n = 3–4 animals for each group)

    Article Snippet: Primary antibody anti-P2Y 6 R (#APR-011) was obtained from Alomone Labs.

    Techniques: Immunocytochemistry, Staining, Cell Culture, Control, Infection, Fluorescence

    Endothelial P2Y 6 R expression is increased by proteosome inhibition during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from basal (top line) MG132 1 µM, 1 h (middle line) or MG132 1 µM, 6 h (bottom line) using anti-P2Y 6 R antibody (1:500, overnight) followed by Alexa Fluor 488 secondary antibody secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified for all groups and then expressed as arbitrary units (a.u.). C . ROS was quantified colorimetrically using NBT. D . Lipid peroxidation was quantified by the production of malondialdehyde (MDA) in reaction with thiobarbituric acid. Data were expressed as the mean and SEM of n independent cultures in triplicate for each condition. **p < 0.01 ( B , One-way ANOVA followed by Tukey’s multiple comparisons test, n = 3 animals for each group); ***p < 0.001; **p < 0.01 (C, D, unpaired t -test, n = 3 animals for each group). ROS = reactive oxygen species; TBARS = thiobarbituric acid reactive species

    Journal: Purinergic Signalling

    Article Title: Proteasomal-dependent endothelial P2Y 6 receptor downregulation as an adaptive mechanism limiting monocyte adhesion during intestinal schistosomiasis

    doi: 10.1007/s11302-026-10141-x

    Figure Lengend Snippet: Endothelial P2Y 6 R expression is increased by proteosome inhibition during schistosomiasis. A. Immunocytochemistry staining of cultured mesenteric endothelial cells from basal (top line) MG132 1 µM, 1 h (middle line) or MG132 1 µM, 6 h (bottom line) using anti-P2Y 6 R antibody (1:500, overnight) followed by Alexa Fluor 488 secondary antibody secondary antibody (1:300, 1 h, green) and nuclear fluorescence using DAPI (blue) (scale bar = 20 μm; × 400) (see methods). B. The fluorescence intensity was quantified for all groups and then expressed as arbitrary units (a.u.). C . ROS was quantified colorimetrically using NBT. D . Lipid peroxidation was quantified by the production of malondialdehyde (MDA) in reaction with thiobarbituric acid. Data were expressed as the mean and SEM of n independent cultures in triplicate for each condition. **p < 0.01 ( B , One-way ANOVA followed by Tukey’s multiple comparisons test, n = 3 animals for each group); ***p < 0.001; **p < 0.01 (C, D, unpaired t -test, n = 3 animals for each group). ROS = reactive oxygen species; TBARS = thiobarbituric acid reactive species

    Article Snippet: Primary antibody anti-P2Y 6 R (#APR-011) was obtained from Alomone Labs.

    Techniques: Expressing, Inhibition, Immunocytochemistry, Staining, Cell Culture, Fluorescence