human vegfa elisa kit (Boster Bio)
Structured Review

Human Vegfa Elisa Kit, supplied by Boster Bio, used in various techniques. Bioz Stars score: 95/100, based on 70 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/human vegfa elisa kit/product/Boster Bio
Average 95 stars, based on 70 article reviews
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1) Product Images from "The Effects of STRA6 Regulation of the Circadian Rhythm on Choroidal Neovascularization"
Article Title: The Effects of STRA6 Regulation of the Circadian Rhythm on Choroidal Neovascularization
Journal: Investigative Ophthalmology & Visual Science
doi: 10.1167/iovs.65.11.21
Figure Legend Snippet: Correlation analysis of STRA6 and the influence of circadian rhythm and CNV on it. ( A ) Schematic diagram of complete transcriptome sequencing in mouse tissue. ( B ) Venn diagram of mRNA upregulation and downregulation in sequencing results. ( C ) Analysis of STRA6 gene expression differences in public dataset GSE29801 ( n = 293). ( D ) Heat map of GSVA analysis in patients with AMD with high and low STRA6 expression. ( E ) STRA6 protein-protein interaction. ( F ) A possible binding site to the CLOCK gene. ( G ) Luciferase assay showed the regulatory effects of BMAL1 and CLOCK on STRA6. ( H ) The expression of STRA6 mRNA in each group was detected by qRT-PCR ( n = 3 independent experiment). ( I and J ) STRA6 protein expression levels in each group ( n = 3 independent experiments). ( K to M ) The expression of STRA6 and VEGFA protein in RPE-choroid-sclera complex in CNV model mice induced by laser at different time points ( n = 3 independent experiments). ZT, zeitgeber time; error bars represent mean ± SEM; ns was not statistically significant; * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001.
Techniques Used: Sequencing, Gene Expression, Expressing, Binding Assay, Luciferase, Quantitative RT-PCR
Figure Legend Snippet: Construction of circadian rhythm cell model and effect of STRA6 knockdown on RPE cell function in vitro. ( A ) Immunofluorescence staining of ARPE-19 cells ( n = 3 independent experiments; red = STRA6, blue = DAPI; scale = 200 µm). ( B ) The effects of different concentrations of COCL2 on the proliferation of ARPE-19 cells were detected by CCK8 (µmol/L; n = 3 independent experiments). ( C ) The effects of different concentrations of DEX on the proliferation of ARPE-19 cells was detected by CCK8 (nmol/L; n = 3 independent experiments). ( D ) Schematic diagram of cell synchronization circadian rhythm model construction. ( E to H ) Expression of clock gene BMAL1 and CLOCK protein in ARPE-19 cells in each group ( n = 3 independent experiments). ( I and J ) STRA6 protein expression levels in each group ( n = 3 independent experiments). ( K ) STRA6 knockdown verification ( n = 3 independent experiments). ( L to N ) Transwell showed the migration of ARPE-19 cells ( n = 3 independent experiments; scale = 6–12 hours 200 µm, 8 hours 50 µm). ( O to Q ) The wound healing assay showed the migration of ARPE-19 cells in each group at 24 hours and 48 hours ( n = 3 independent experiments; scale = 50 µm). ( R ) The proliferation of ARPE-19 cells in each group was detected by CCK8 ( n = 3 independent experiments). ( S ) VEGF in cell supernatant was detected by ELISA ( n = 3 independent experiments). ZT, zeitgeber time; error bars represent mean ± SEM; ns was not statistically significant; * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001.
Techniques Used: Knockdown, Cell Function Assay, In Vitro, Immunofluorescence, Staining, Expressing, Migration, Wound Healing Assay, Enzyme-linked Immunosorbent Assay
Figure Legend Snippet: Relationship between STRA6 and inflammation and VEGF. ( A ) Laser induced immunofluorescence staining of paraffin sections of CNV model mice ( n = 3/group; red = STRA6; green = F4/80, IB4; blue = DAPI; scale = 100 µm). ( B and C ) Expression of VEGFA protein in ARPE-19 cells at different time points in the non-combined hypoxia model ( n = 3 independent experiments). ( D and E ) Expression of VEGFA protein in ARPE-19 cells at different time points in the non-combined hypoxia model ( n = 3 independent experiments). ( F and G ) STRA6 protein expression in ARPE-19 cells at different time points after circadian rhythm synchronization in the combined hypoxia model ( n = 3 independent experiments). ZT, zeitgeber time; error bars represent mean ± SEM; ns was not statistically significant; * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001.
Techniques Used: Immunofluorescence, Staining, Expressing
Figure Legend Snippet: Effect of STRA6 on CNV formation by activating JAK2/STAT3/VEGFA signaling in RPE cells. ( A and B ) The expression of JAK2 protein in circadian rhythm ( n = 3 independent experiments). ( C and D ) The expression of STAT3 protein in circadian rhythm ( n = 3 independent experiments). ( E and F ) Expression of P-JAK2, JAK2, P-STAT3, STAT3, STRA6, and VEGFA in ARPE-19 cells of each group ( n = 3 independent experiments). ( G and H ) Expression of P-JAK2, JAK2, P-STAT3, STAT3, and VEGFA proteins in ARPE-19 cells that did not synchronize circadian rhythm after addition of JAK2 pathway inhibitors ( n = 3 independent experiments). ZT, zeitgeber time; error bars represent mean ± SEM; ns was not statistically significant; * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001.
Techniques Used: Expressing


