首页> 外文期刊>Cellular and Molecular Neurobiology >In search of the astrocytic factor(s) modulating blood-brain barrier functions in brain capillary endothelial cells in vitro.
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In search of the astrocytic factor(s) modulating blood-brain barrier functions in brain capillary endothelial cells in vitro.

机译:为了寻找星形胶质细胞因子在体外调节脑毛细血管内皮细胞中的血脑屏障功能。

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(1) The blood-brain barrier (BBB) is formed by brain capillary endothelial cells (ECs). There are various cell types, in particular astrocytes, but also pericytes and neurons, located in close vicinity to the capillary ECs which may influence formation and function of the BBB. Based on this consideration, this paper discusses various aspects of the influence of the surrounding cells on brain capillary ECs with special focus on the role of astrocytes. (2) Based on the morphology of the BBB, important aspects of brain EC functions are summarized, such as transport functions and maintenance of low paracellular permeability. Moreover, various facets are discussed with respect to the influence of astrocytes, pericytes, microglia, and neurons on the BBB. Data on the role of glial cells in the ontogenesis of the BBB are presented subsequently. The knowledge on this subject is far from being complete, however, these data imply that the neuraleuronal environment rather than glial cells may be of importance inthe maturation of the barrier. (3) The role of glial cells in the induction and maintenance of the BBB is discussed under physiological as well as pathological conditions. Although the literature presents manifold evidence for a great variety of effects induced by astroglia, there are also many controversies, which may result from different cellular models and experimental conditions used in the respective studies. Numerous factors secreted by astrocytes have been shown to induce a BBB phenotype. On the molecular level, increased expression of barrier-relevant proteins (e.g., tight junction proteins) is documented in the presence of astrocyte-derived factors, and many studies demonstrate the improvement of physiological parameters, such as increased transendothelial resistance and decreased paracellular permeability, in different in vitro models of the BBB. Moreover, one has to take into account that the interaction of brain ECs and astrocytes is bi-directional, and that the other cell types surrounding the brain microvasculature also contribute to BBB function or dysfunction, respectively. (4) In conclusion, it is expected that the present and future research focused on molecular mechanisms and signaling pathways will produce new and exciting insights into the complex network of BBB regulation: the cornerstone is laid.
机译:(1)血脑屏障(BBB)由脑毛细血管内皮细胞(EC)形成。有多种细胞类型,尤其是星形胶质细胞,还有周细胞和神经元,它们位于毛细血管内皮细胞附近,可能会影响血脑屏障的形成和功能。基于这一考虑,本文讨论了周围细胞对脑毛细血管内皮细胞影响的各个方面,特别着重于星形胶质细胞的作用。 (2)根据血脑屏障的形态,总结了脑EC功能的重要方面,例如转运功能和维持低旁细胞通透性。此外,讨论了关于星形胶质细胞,周细胞,小胶质细胞和神经元对血脑屏障的影响的各个方面。随后介绍了神经胶质细胞在血脑屏障本体发育中的作用的数据。关于该主题的知识还远远不够完整,但是,这些数据表明,在屏障的成熟过程中,神经/神经环境而不是神经胶质细胞可能很重要。 (3)在生理和病理条件下讨论了神经胶质细胞在血脑屏障的诱导和维持中的作用。尽管文献提供了关于星状胶质瘤引起的多种效应的大量证据,但也存在许多争议,这可能是由各自研究中使用的不同细胞模型和实验条件引起的。星形胶质细胞分泌的多种因子已显示出可诱导BBB表型。在分子水平上,有星形胶质细胞衍生因子存在时,与屏障相关的蛋白(例如紧密连接蛋白)的表达增加,并且许多研究表明生理参数的改善,例如跨内皮电阻增加和旁细胞通透性降低,在BBB的不同体外模型中。此外,必须考虑到大脑EC和星形胶质细胞的相互作用是双向的,并且大脑微脉管周围的其他细胞类型也分别导致BBB功能或功能障碍。 (4)总之,可以预期的是,目前和未来的研究主要集中在分子机制和信号传导途径上,它将对BBB调控的复杂网络产生新的令人振奋的见解:奠定了基础。

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