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Image Search Results
Journal: Frontiers in Cellular Neuroscience
Article Title: Retinoic Acid Regulates Endothelial β-catenin Expression and Pericyte Numbers in the Developing Brain Vasculature
doi: 10.3389/fncel.2018.00476
Figure Lengend Snippet: Retinoic acid regulates β-catenin expression in brain endothelial cells. (A) Immunofluorescent images of coronal forebrain sections from E13.5 Wild-type ( Rdh10 +/+ or Rdh10 +/- ) and Rdh10 ( Rdh10 -/- ) mutants stained for β-catenin (green), Isolectin-b4 (Ib4; red), and DAPI (blue). Scale bars are 200 μm. (B,C) Immunohistochemical images of (B) thalamic (thal) regions from E13.5 Wild-type ( Rdh10 +/+ or Rdh10 +/- ; inset from A ) and Rdh10 ( Rdh10 -/- ; inset from A ) mutants and (C) cortical plate from E18.5 dnRAR403 fl/fl and Pdgfbi cre/+ ; dnRAR403 fl/fl brains stained for β-catenin (green) and Ib4 (red). Arrows indicate positive β-catenin expression within the Ib4 + vasculature. Scale bars are 50 μm. (B’,C’) Quantification and analyses (Student’s t -test) for percent of β-catenin expression within the total Ib4 + labeled blood vessels from (B’) Wild-type (gray; n = 6 animals) and Rdh10 mutant (black; n = 5 animals) and (C’) dnRAR403 fl/fl (gray; n = 6 animals) and Pdgfbi cre/+ ; dnRAR403 fl/fl (black; n = 5 animals). (D) Immunocytochemistry of β-catenin (green) expression in bEnd.3 cells following 48 h of vehicle, 50 nM RA, 1 μM RARi (AGN-194310), and RA + RARi. Scale bars are 50 μm. (D’) Quantification and analyses (ANOVA with Tukey’s post hoc analysis) on fluorescent intensity of β-catenin expression normalized to total number of DAPI+ bEnd.3 cells per field in vehicle (white), RA (black), RARi (gray), RA+RARi (black and gray) treated cells ( n = 3 independent experiments).
Article Snippet: The
Techniques: Expressing, Staining, Immunohistochemical staining, Labeling, Mutagenesis, Immunocytochemistry
Journal: Frontiers in Cellular Neuroscience
Article Title: Retinoic Acid Regulates Endothelial β-catenin Expression and Pericyte Numbers in the Developing Brain Vasculature
doi: 10.3389/fncel.2018.00476
Figure Lengend Snippet: Ectopic vascular WNT signaling in RA mutants result in increased pericytes along the developing brain vasculature. (A–C) Immunohistochemical (IHC) images of the (A) thalamic regions from E13.5 Wild-type ( Rdh10 +/+ or Rdh10 +/- ) and Rdh10 ( Rdh10 -/- ), (B) cortical plate from E18.5 dnRAR403 fl/fl and Pdgfbi cre/+ ; dnRAR403 fl/fl , and (C) cortical plate from E14.5 Ctnnb1 GOF/+ and Pdgfbi cre/+ ; Ctnnb1 GOF/+ brains stained for Pdgfrβ (green) and Isolectin-b4 (Ib4; blue). Enlarged images and arrows indicate Pdgfrβ + pericytes surrounding the Ib4 + vasculature. (A–C’) Quantification and analyses (Student’s t -test) for the number of pericytes co-labeled for Pdgfrβ and CoupTFII (staining not shown)/100 μm of Ib4 + blood vessels from (A’) W ild-type (gray; n = 5 animals) and Rdh10 mutants (black; n = 5 animals), (B’) dnRAR403 fl/fl (gray; n = 6 animals) and Pdgfbi cre/+ ; dnRAR403 fl/fl (black; n = 6 animals), and (C’) Ctnnb1 GOF/+ (gray; n = 4 animals) and Pdgfbi cre/+ ; Ctnnb1 GOF/+ (black; n = 4 animals). Scale bars are 50 μm.
Article Snippet: The
Techniques: Immunohistochemical staining, Staining, Labeling