Łach Andrzej, Wnuk Agnieszka, Wójtowicz Anna Katarzyna
Laboratory of Neuropharmacology and Epigenetics, Department of Pharmacology, Maj Institute of Pharmacology, Polish Academy of Sciences, 31-343 Kraków, Poland.
Department of Nutrition, Animal Biotechnology and Fisheries, Faculty of Animal Sciences, University of Agriculture, 30-059 Kraków, Poland.
Bioengineering (Basel). 2023 Apr 25;10(5):519. doi: 10.3390/bioengineering10050519.
The purpose of this paper was to discuss the achievements of in vitro modeling in terms of the blood-brain barrier [BBB] and to create a clear overview of this research area, which is useful in research planning. The text was divided into three main parts. The first part describes the BBB as a functional structure, its constitution, cellular and noncellular components, mechanisms of functioning and importance for the central nervous system, in terms of both protection and nourishment. The second part is an overview of parameters important in terms of establishing and maintaining a barrier phenotype that allows for formulating criteria of evaluation of the BBB models. The third and last part discusses certain techniques for developing the BBB models. It describes subsequent research approaches and models, as they underwent change alongside technological advancement. On the one hand, we discuss possibilities and limitations of different research approaches: primary cultures vs. cell lines and monocultures vs. multicultures. On the other hand, we review advantages and disadvantages of specific models, such as models-on-a-chip, 3D models or microfluidic models. We not only attempt to state the usefulness of specific models in different kinds of research on the BBB but also emphasize the significance of this area of research for advancement of neuroscience and the pharmaceutical industry.
本文旨在探讨体外构建血脑屏障(BBB)模型的研究成果,并对该研究领域进行清晰概述,这对研究规划具有重要意义。本文分为三个主要部分。第一部分将血脑屏障描述为一种功能结构,介绍其组成、细胞和非细胞成分、功能机制以及对中枢神经系统在保护和营养方面的重要性。第二部分概述了在建立和维持能够制定血脑屏障模型评估标准的屏障表型方面的重要参数。第三部分也是最后一部分讨论了构建血脑屏障模型的某些技术。它描述了随着技术进步而不断变化的后续研究方法和模型。一方面,我们讨论了不同研究方法的可能性和局限性:原代培养与细胞系以及单培养与共培养。另一方面,我们回顾了特定模型的优缺点,如芯片模型、三维模型或微流控模型。我们不仅试图阐述特定模型在血脑屏障各种研究中的实用性,还强调了该研究领域对神经科学和制药行业发展的重要性。