Literature DB >> 17823866

Pericytes from brain microvessels strengthen the barrier integrity in primary cultures of rat brain endothelial cells.

Shinsuke Nakagawa1, Mária A Deli, Shinobu Nakao, Masaru Honda, Kentaro Hayashi, Ryota Nakaoke, Yasufumi Kataoka, Masami Niwa.   

Abstract

(1) The blood-brain barrier (BBB) characteristics of cerebral endothelial cells are induced by organ-specific local signals. Brain endothelial cells lose their phenotype in cultures without cross-talk with neighboring cells. (2) In contrast to astrocytes, pericytes, another neighboring cell of endothelial cells in brain capillaries, are rarely used in BBB co-culture systems. (3) Seven different types of BBB models, mono-culture, double and triple co-cultures, were constructed from primary rat brain endothelial cells, astrocytes and pericytes on culture inserts. The barrier integrity of the models were compared by measurement of transendothelial electrical resistance and permeability for the small molecular weight marker fluorescein. (4) We could confirm that brain endothelial monolayers in mono-culture do not form tight barrier. Pericytes induced higher electrical resistance and lower permeability for fluorescein than type I astrocytes in co-culture conditions. In triple co-culture models the tightest barrier was observed when endothelial cells and pericytes were positioned on the two sides of the porous filter membrane of the inserts and astrocytes at the bottom of the culture dish. (5) For the first time a rat primary culture based syngeneic triple co-culture BBB model has been constructed using brain pericytes beside brain endothelial cells and astrocytes. This model, mimicking closely the anatomical position of the cells at the BBB in vivo, was superior to the other BBB models tested. (6) The influence of pericytes on the BBB properties of brain endothelial cells may be as important as that of astrocytes and could be exploited in the construction of better BBB models.

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Year:  2007        PMID: 17823866     DOI: 10.1007/s10571-007-9195-4

Source DB:  PubMed          Journal:  Cell Mol Neurobiol        ISSN: 0272-4340            Impact factor:   5.046


  17 in total

1.  A pericyte-derived angiopoietin-1 multimeric complex induces occludin gene expression in brain capillary endothelial cells through Tie-2 activation in vitro.

Authors:  Satoko Hori; Sumio Ohtsuki; Ken-ichi Hosoya; Emi Nakashima; Tetsuya Terasaki
Journal:  J Neurochem       Date:  2004-04       Impact factor: 5.372

Review 2.  Astrocyte-endothelial interactions at the blood-brain barrier.

Authors:  N Joan Abbott; Lars Rönnbäck; Elisabeth Hansson
Journal:  Nat Rev Neurosci       Date:  2006-01       Impact factor: 34.870

3.  Permeability properties of a three-cell type in vitro model of blood-brain barrier.

Authors:  Gabriella Schiera; Sandra Sala; Alessia Gallo; Maria Pia Raffa; Giovanna Laura Pitarresi; Giovanni Savettieri; Italia Di Liegro
Journal:  J Cell Mol Med       Date:  2005 Apr-Jun       Impact factor: 5.310

4.  Puromycin-based purification of rat brain capillary endothelial cell cultures. Effect on the expression of blood-brain barrier-specific properties.

Authors:  N Perrière; Ph Demeuse; E Garcia; A Regina; M Debray; J-P Andreux; P Couvreur; J-M Scherrmann; J Temsamani; P-O Couraud; M A Deli; F Roux
Journal:  J Neurochem       Date:  2005-04       Impact factor: 5.372

Review 5.  Endothelial cells of the brain and other organ systems: some similarities and differences.

Authors:  F Joó
Journal:  Prog Neurobiol       Date:  1996-02       Impact factor: 11.685

6.  Tight junctions of brain endothelium in vitro are enhanced by astroglia.

Authors:  J H Tao-Cheng; Z Nagy; M W Brightman
Journal:  J Neurosci       Date:  1987-10       Impact factor: 6.167

7.  Adrenomedullin regulates blood-brain barrier functions in vitro.

Authors:  B Kis; M A Deli; H Kobayashi; C S Abrahám; T Yanagita; H Kaiya; T Isse; R Nishi; S Gotoh; K Kangawa; A Wada; J Greenwood; M Niwa; H Yamashita; Y Ueta
Journal:  Neuroreport       Date:  2001-12-21       Impact factor: 1.837

8.  Effects of hypoxia on endothelial/pericytic co-culture model of the blood-brain barrier.

Authors:  Kentaro Hayashi; Shinobu Nakao; Ryota Nakaoke; Shinsuke Nakagawa; Naoki Kitagawa; Masami Niwa
Journal:  Regul Pept       Date:  2004-12-15

9.  Contribution of glial cells and pericytes to the mRNA profiles of P-glycoprotein and multidrug resistance-associated proteins in an in vitro model of the blood-brain barrier.

Authors:  Vincent Berezowski; Christophe Landry; Marie-Pierre Dehouck; Roméo Cecchelli; Laurence Fenart
Journal:  Brain Res       Date:  2004-08-20       Impact factor: 3.252

10.  A new model of the blood--brain barrier: co-culture of neuronal, endothelial and glial cells under dynamic conditions.

Authors:  K A Stanness; J F Neumaier; T J Sexton; G A Grant; A Emmi; D O Maris; D Janigro
Journal:  Neuroreport       Date:  1999-12-16       Impact factor: 1.837

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  138 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

2.  Paracellular tightness and claudin-5 expression is increased in the BCEC/astrocyte blood-brain barrier model by increasing media buffer capacity during growth.

Authors:  Hans Christian Helms; Helle Sønderby Waagepetersen; Carsten Uhd Nielsen; Birger Brodin
Journal:  AAPS J       Date:  2010-10-22       Impact factor: 4.009

3.  Brain pericytes: emerging concepts and functional roles in brain homeostasis.

Authors:  Masahiro Kamouchi; Tetsuro Ago; Takanari Kitazono
Journal:  Cell Mol Neurobiol       Date:  2011-03       Impact factor: 5.046

Review 4.  Inflammatory cell trafficking across the blood-brain barrier: chemokine regulation and in vitro models.

Authors:  Yukio Takeshita; Richard M Ransohoff
Journal:  Immunol Rev       Date:  2012-07       Impact factor: 12.988

Review 5.  In vitro models of the blood-brain barrier: An overview of commonly used brain endothelial cell culture models and guidelines for their use.

Authors:  Hans C Helms; N Joan Abbott; Malgorzata Burek; Romeo Cecchelli; Pierre-Olivier Couraud; Maria A Deli; Carola Förster; Hans J Galla; Ignacio A Romero; Eric V Shusta; Matthew J Stebbins; Elodie Vandenhaute; Babette Weksler; Birger Brodin
Journal:  J Cereb Blood Flow Metab       Date:  2016-02-11       Impact factor: 6.200

6.  Pericytes modulate myelination in the central nervous system.

Authors:  Patrick O Azevedo; Isadora F G Sena; Julia P Andreotti; Juliana Carvalho-Tavares; José C Alves-Filho; Thiago M Cunha; Fernando Q Cunha; Akiva Mintz; Alexander Birbrair
Journal:  J Cell Physiol       Date:  2018-03-01       Impact factor: 6.384

7.  Initial contact of glioblastoma cells with existing normal brain endothelial cells strengthen the barrier function via fibroblast growth factor 2 secretion: a new in vitro blood-brain barrier model.

Authors:  Keisuke Toyoda; Kunihiko Tanaka; Shinsuke Nakagawa; Dinh Ha Duy Thuy; Kenta Ujifuku; Kensaku Kamada; Kentaro Hayashi; Takayuki Matsuo; Izumi Nagata; Masami Niwa
Journal:  Cell Mol Neurobiol       Date:  2013-02-06       Impact factor: 5.046

8.  Oxygen-Glucose Deprivation Induces G2/M Cell Cycle Arrest in Brain Pericytes Associated with ERK Inactivation.

Authors:  Wenjie Wei; Zhiyuan Yu; Minjie Xie; Wei Wang; Xiang Luo
Journal:  J Mol Neurosci       Date:  2016-09-24       Impact factor: 3.444

9.  Cilostazol strengthens barrier integrity in brain endothelial cells.

Authors:  Shoji Horai; Shinsuke Nakagawa; Kunihiko Tanaka; Yoichi Morofuji; Pierre-Oliver Couraud; Maria A Deli; Masaki Ozawa; Masami Niwa
Journal:  Cell Mol Neurobiol       Date:  2012-12-07       Impact factor: 5.046

Review 10.  Cell-culture models of the blood-brain barrier.

Authors:  Yarong He; Yao Yao; Stella E Tsirka; Yu Cao
Journal:  Stroke       Date:  2014-06-17       Impact factor: 7.914

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