Institute on Membrane Technology, National Research Council of Italy, CNR-ITM, Rende, Italy.
Cells Tissues Organs. 2022;211(4):447-476. doi: 10.1159/000511680. Epub 2021 Apr 13.
To date, the creation of biomimetic devices for the regeneration and repair of injured or diseased tissues and organs remains a crucial challenge in tissue engineering. Membrane technology offers advanced approaches to realize multifunctional tools with permissive environments well-controlled at molecular level for the development of functional tissues and organs. Membranes in fiber configuration with precisely controlled, tunable topography, and physical, biochemical, and mechanical cues, can direct and control the function of different kinds of cells toward the recovery from disorders and injuries. At the same time, fiber tools also provide the potential to model diseases in vitro for investigating specific biological phenomena as well as for drug testing. The purpose of this review is to present an overview of the literature concerning the development of hollow fibers and electrospun fiber membranes used in bioartificial organs, tissue engineered constructs, and in vitro bioreactors. With the aim to highlight the main biomedical applications of fiber-based systems, the first part reviews the fibers for bioartificial liver and liver tissue engineering with special attention to their multifunctional role in the long-term maintenance of specific liver functions and in driving hepatocyte differentiation. The second part reports the fiber-based systems used for neuronal tissue applications including advanced approaches for the creation of novel nerve conduits and in vitro models of brain tissue. Besides presenting recent advances and achievements, this work also delineates existing limitations and highlights emerging possibilities and future prospects in this field.
迄今为止,创造仿生设备以再生和修复受损或患病的组织和器官仍然是组织工程中的一个关键挑战。膜技术提供了先进的方法来实现多功能工具,可在分子水平上实现允许的环境,以开发功能性组织和器官。具有精确控制、可调拓扑结构的纤维状配置的膜,以及物理、生化和机械线索,可以指导和控制不同种类的细胞的功能,以从疾病和损伤中恢复。同时,纤维工具还具有在体外模拟疾病的潜力,以研究特定的生物学现象以及药物测试。本文综述的目的是介绍有关中空纤维和静电纺丝纤维膜在生物人工器官、组织工程构建体和体外生物反应器中的应用的文献概述。为了突出纤维基系统的主要生物医学应用,第一部分回顾了用于生物人工肝脏和肝脏组织工程的纤维,特别关注它们在长期维持特定肝脏功能和驱动肝细胞分化方面的多功能作用。第二部分报告了用于神经元组织应用的纤维基系统,包括创建新型神经导管和脑组织体外模型的先进方法。除了介绍最新的进展和成就外,本文还阐述了该领域目前存在的局限性,并强调了新的可能性和未来的前景。