Literature DB >> 3305702

Immunocytochemical studies of desmin and vimentin in pericapillary cells of chicken.

T Fujimoto, S J Singer.   

Abstract

The composition of intermediate filaments in pericytes was examined by immunofluorescent and immunoelectron microscopic labeling of frozen sections of various chicken microvascular beds in situ. Pericytes in capillaries of cardiac muscle, exocrine pancreas, and kidney (peritubular capillary) were found to contain both desmin and vimentin. In some capillaries where pericytes do not exist, cells apposed to endothelial cells--the Ito cell in the hepatic sinusoid and the reticular cell in the splenic sinusoid--were shown to contain both of the intermediate filament proteins. In contrast, podocytes and mesangial cells around renal glomerular capillaries contained only vimentin. The presence of desmin supports the hypothesis that pericytes may have a contractile apparatus similar to that of vascular smooth muscle cells. Our results also revealed that even in microvascular beds where pericytes are not found, cells having both desmin and vimentin exist next to endothelial cells and may assume similar functions to pericytes.

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Year:  1987        PMID: 3305702     DOI: 10.1177/35.10.3305702

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  17 in total

Review 1.  Pivotal role of pericytes in kidney fibrosis.

Authors:  Yujiro Kida; Jeremy S Duffield
Journal:  Clin Exp Pharmacol Physiol       Date:  2011-07       Impact factor: 2.557

2.  Pericyte involvement in capillary sprouting during angiogenesis in situ.

Authors:  V Nehls; K Denzer; D Drenckhahn
Journal:  Cell Tissue Res       Date:  1992-12       Impact factor: 5.249

Review 3.  Re-evaluation of fibroblasts and fibroblast-like cells.

Authors:  T Komuro
Journal:  Anat Embryol (Berl)       Date:  1990

4.  Immunohistochemical localization of desmin in the quail ovary. Demonstration of a suspensory apparatus.

Authors:  L Van Nassauw; M Callebaut; F Harrisson; G Daneels; M Moeremans
Journal:  Histochemistry       Date:  1989

Review 5.  From pathobiology to the targeting of pericytes for the treatment of diabetic retinopathy.

Authors:  Joseph F Arboleda-Velasquez; Cammi N Valdez; Christina K Marko; Patricia A D'Amore
Journal:  Curr Diab Rep       Date:  2015-02       Impact factor: 4.810

6.  Analyzing Remodeling of Cardiac Tissue: A Comprehensive Approach Based on Confocal Microscopy and 3D Reconstructions.

Authors:  T Seidel; J-C Edelmann; F B Sachse
Journal:  Ann Biomed Eng       Date:  2015-09-23       Impact factor: 3.934

Review 7.  The versatility of microvascular pericytes: from mesenchyme to smooth muscle?

Authors:  V Nehls; D Drenckhahn
Journal:  Histochemistry       Date:  1993-01

8.  Heterogeneity of smooth muscle-associated proteins in mammalian brain microvasculature.

Authors:  E Ehler; G Karlhuber; H C Bauer; A Draeger
Journal:  Cell Tissue Res       Date:  1995-02       Impact factor: 5.249

Review 9.  Renal pericytes: multifunctional cells of the kidneys.

Authors:  Ania Stefańska; A M Stefańska; Bruno Péault; B Péault; John J Mullins; J J Mullins
Journal:  Pflugers Arch       Date:  2013-04-16       Impact factor: 3.657

10.  Induction of alpha-smooth muscle actin expression in cultured human brain pericytes by transforming growth factor-beta 1.

Authors:  M M Verbeek; I Otte-Höller; P Wesseling; D J Ruiter; R M de Waal
Journal:  Am J Pathol       Date:  1994-02       Impact factor: 4.307

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