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In vitro modeling of blood–brain barrier and interface functions in neuroimmune communication

机译:血脑屏障的体外建模与神经影响通信中的血脑屏障与界面功能

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Neuroimmune communication contributes to both baseline and adaptive physiological functions, as well as disease states. The vascular blood–brain barrier (BBB) and associated cells of the neurovascular unit (NVU) serve as an important interface for immune communication between the brain and periphery through the blood. Immune functions and interactions of the BBB and NVU in this context can be categorized into at least five neuroimmune axes, which include (1) immune modulation of BBB impermeability, (2) immune regulation of BBB transporters, secretions, and other functions, (3) BBB uptake and transport of immunoactive substances, (4) immune cell trafficking, and (5) BBB secretions of immunoactive substances. These axes may act separately or in concert to mediate various aspects of immune signaling at the BBB. Much of what we understand about immune axes has been from work conducted using in vitro BBB models, and recent advances in BBB and NVU modeling highlight the potential of these newer models for improving our understanding of how the brain and immune system communicate. In this review, we discuss how conventional in vitro models of the BBB have improved our understanding of the 5 neuroimmune axes. We further evaluate the existing literature on neuroimmune functions of novel in vitro BBB models, such as those derived from human induced pluripotent stem cells (iPSCs) and discuss their utility in evaluating aspects of neuroimmune communication.
机译:神经影响的通信有助于基线和适应性生理功能,以及疾病状态。神经血管单元(NVU)的血管血脑屏障(BBB)和相关细胞用作通过血液的脑和周边之间的免疫连通的重要界面。在这种情况下BBB和NVU的免疫功能和相互作用可以分为至少五个神经疫苗轴,其包括(1)BBB缺水性的免疫调节,(2)BBB转运蛋白的免疫调节,分泌物和其他功能(3 )BBB吸收和免疫活性物质的运输,(4)免疫细胞贩运,和(5)免疫活性物质的BBB分泌物。这些轴可以单独或协同起作用,以在BBB处介导免疫信号传导的各个方面。我们理解免疫轴的大部分都是从体外BBB模型进行的工作,并且BBB和NVU建模的最新进展突出了这些新型模型的潜力,以改善我们对大脑和免疫系统如何沟通的理解。在这篇综述中,我们讨论了BBB的常规体外模型如何改善了我们对5个神经免疫轴的理解。我们进一步评估了新型体外BBB模型的神经影响功能的现有文献,例如衍生自人诱导多能干细胞(IPSC)的那些,并讨论其在评估神经影响通信的方面的效用。

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