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来自脑微血管的周细胞可增强大鼠脑内皮细胞原代培养物中的屏障完整性。

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

作者信息

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

机构信息

Department of Pharmacology, Nagasaki University Graduate School of Biomedical Sciences, 1-12-4 Sakamoto, Nagasaki 852-8523, Japan.

出版信息

Cell Mol Neurobiol. 2007 Sep;27(6):687-94. doi: 10.1007/s10571-007-9195-4. Epub 2007 Sep 6.

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.

摘要

(1) 脑内皮细胞的血脑屏障(BBB)特性是由器官特异性局部信号诱导产生的。在没有与邻近细胞相互作用的培养条件下,脑内皮细胞会丧失其表型。(2) 与星形胶质细胞不同,周细胞作为脑毛细血管内皮细胞的另一种邻近细胞,在血脑屏障共培养系统中很少被使用。(3) 利用原代大鼠脑内皮细胞、星形胶质细胞和周细胞在培养插入物上构建了七种不同类型的血脑屏障模型,即单培养、双共培养和三共培养模型。通过测量跨内皮电阻和小分子荧光素标记物的通透性来比较这些模型的屏障完整性。(4) 我们可以证实,单培养中的脑内皮单层不能形成紧密屏障。在共培养条件下,周细胞诱导产生的电阻高于I型星形胶质细胞,对荧光素的通透性低于I型星形胶质细胞。在三共培养模型中,当内皮细胞和周细胞位于插入物多孔滤膜的两侧,星形胶质细胞位于培养皿底部时,观察到最紧密的屏障。(5) 首次构建了一种基于大鼠原代培养的同基因三共培养血脑屏障模型,该模型除了脑内皮细胞和星形胶质细胞外还使用了脑周细胞。该模型紧密模拟了体内血脑屏障处细胞的解剖位置,优于所测试的其他血脑屏障模型。(6) 周细胞对脑内皮细胞血脑屏障特性的影响可能与星形胶质细胞的影响同样重要,并且可用于构建更好的血脑屏障模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6301/11517186/5a5e7c6432a2/10571_2007_9195_Fig1_HTML.jpg

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