Pediatric Infectious Diseases, Department of Pediatrics, Medical Faculty Mannheim, Heidelberg University, 68167, Mannheim, Germany.
European Center for Angioscience, Medical Faculty Mannheim, Heidelberg University, 68167, Mannheim, Germany.
Hum Cell. 2024 Sep;37(5):1235-1242. doi: 10.1007/s13577-024-01115-5. Epub 2024 Aug 5.
The choroid plexus (CP), a highly vascularized endothelial-epithelial convolute, is placed in the ventricular system of the brain and produces a large part of the cerebrospinal fluid (CSF). Additionally, the CP is the location of a blood-CSF barrier (BCSFB) that separates the CSF from the blood stream in the CP endothelium. In vitro models of the CP and the BCSFB are of high importance to investigate the biological functions of the CP and the BCSFB. Since the CP is involved in several serious diseases, these in vitro models promise help in researching the processes contributing to the diseases and during the development of treatment options. In this review, we provide an overview on the available models and the advances that have been made toward more sophisticated and "in vivo near" systems as organoids and microfluidic lab-on-a-chip approaches. We go into the applications and research objectives for which the various modeling systems can be used and discuss the possible future prospects and perspectives.
脉络丛(CP)是一种高度血管化的内皮-上皮卷曲结构,位于脑室内系统,产生大部分脑脊液(CSF)。此外,CP 是血脑屏障(BCSFB)的所在地,它将 CSF 与 CP 内皮中的血流隔开。CP 和 BCSFB 的体外模型对于研究 CP 和 BCSFB 的生物学功能非常重要。由于 CP 涉及到几种严重的疾病,这些体外模型有望有助于研究导致疾病的过程,并在治疗方案的开发过程中提供帮助。在这篇综述中,我们概述了现有的模型以及朝着更复杂和“接近体内”的系统(如类器官和微流控芯片实验室方法)的进展。我们探讨了各种建模系统可用于的应用和研究目标,并讨论了可能的未来前景和观点。