Literature DB >> 21990144

Neural differentiation of rat aorta pericyte cells.

Enrique Montiel-Eulefi1, Arthur A Nery, Lara C Rodrigues, Raúl Sánchez, Fernando Romero, Henning Ulrich.   

Abstract

Pericyte perivascular cells, believed to originate mesenchymal stem cells (MSC), are characterized by their capability to differentiate into various phenotypes and participate in tissue reconstruction of different organs, including the brain. We show that these cells can be induced to differentiation into neural-like phenotypes. For these studies, pericytes were obtained from aorta ex-plants of Sprague-Dawley rats and differentiated into neural cells following induction with trans retinoic acid (RA) in serum-free defined media or differentiation media containing nerve growth and brain-derived neuronal factor, B27, N2, and IBMX. When induced to differentiation with RA, cells express the pluripotency marker protein stage-specific embryonic antigen-1, neural-specific proteins β3-tubulin, neurofilament-200, and glial fibrillary acidic protein, suggesting that pericytes undergo differentiation, similar to that of neuroectodermal cells. Differentiated cells respond with intracellular calcium transients to membrane depolarization by KCl indicating the presence of voltage-gated ion channels and express functional N-methyl-D-aspartate receptors, characteristic for functional neurons. The study of neural differentiation of pericytes contributes to the understanding of induction of neuroectodermal differentiation as well as providing a new possible stem-cell source for cell regeneration therapy in the brain.
Copyright © 2011 International Society for Advancement of Cytometry.

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Year:  2011        PMID: 21990144     DOI: 10.1002/cyto.a.21152

Source DB:  PubMed          Journal:  Cytometry A        ISSN: 1552-4922            Impact factor:   4.355


  22 in total

Review 1.  Neurovascular unit: a focus on pericytes.

Authors:  Inês Sá-Pereira; Dora Brites; Maria Alexandra Brito
Journal:  Mol Neurobiol       Date:  2012-02-28       Impact factor: 5.590

Review 2.  Cell cycle regulation during neurogenesis in the embryonic and adult brain.

Authors:  Arquimedes Cheffer; Attila Tárnok; Henning Ulrich
Journal:  Stem Cell Rev Rep       Date:  2013-12       Impact factor: 5.739

3.  Cytometry in the brain: studying differentiation to diagnostic applications in brain disease and regeneration therapy.

Authors:  H Ulrich; J Bocsi; T Glaser; A Tárnok
Journal:  Cell Prolif       Date:  2014-02       Impact factor: 6.831

Review 4.  Pericytes at the intersection between tissue regeneration and pathology.

Authors:  Alexander Birbrair; Tan Zhang; Zhong-Min Wang; Maria Laura Messi; Akiva Mintz; Osvaldo Delbono
Journal:  Clin Sci (Lond)       Date:  2015-01       Impact factor: 6.124

5.  Type-2 pericytes participate in normal and tumoral angiogenesis.

Authors:  Alexander Birbrair; Tan Zhang; Zhong-Min Wang; Maria Laura Messi; John D Olson; Akiva Mintz; Osvaldo Delbono
Journal:  Am J Physiol Cell Physiol       Date:  2014-04-30       Impact factor: 4.249

Review 6.  Pericytes, microvasular dysfunction, and chronic rejection.

Authors:  Malgorzata Kloc; Jacek Z Kubiak; Xian C Li; Rafik M Ghobrial
Journal:  Transplantation       Date:  2015-04       Impact factor: 4.939

Review 7.  Brain mesenchymal stem cells: The other stem cells of the brain?

Authors:  Florence Appaix; Marie-France Nissou; Boudewijn van der Sanden; Matthieu Dreyfus; François Berger; Jean-Paul Issartel; Didier Wion
Journal:  World J Stem Cells       Date:  2014-04-26       Impact factor: 5.326

8.  Cytometry in stem cell research and therapy.

Authors:  Vera S Donnenberg; Henning Ulrich; Attila Tárnok
Journal:  Cytometry A       Date:  2013-01       Impact factor: 4.355

9.  Combination of Chemical and Neurotrophin Stimulation Modulates Neurotransmitter Receptor Expression and Activity in Transdifferentiating Human Adipose Stromal Cells.

Authors:  Arthur A Nery; Ricardo L Pereira; Vinicius Bassaneze; Isis C Nascimento; Lauren S Sherman; Pranela Rameshwar; Claudiana Lameu; Henning Ulrich
Journal:  Stem Cell Rev Rep       Date:  2019-12       Impact factor: 5.739

10.  Polydendrocytes display large lineage plasticity following focal cerebral ischemia.

Authors:  Pavel Honsa; Helena Pivonkova; David Dzamba; Marcela Filipova; Miroslava Anderova
Journal:  PLoS One       Date:  2012-05-10       Impact factor: 3.240

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