Engineering Tissues of the Central Nervous System: Interfacing Conductive Biomaterials with Neural Stem/Progenitor Cells

接口 生物相容性材料 组织工程 生物材料 神经干细胞 神经组织工程 祖细胞 干细胞 材料科学 神经科学 生物医学工程 纳米技术 计算机科学 生物 工程类 细胞生物学 计算机硬件
作者
Rebecca D. Bierman‐Duquette,Gevick Safarians,Joyce Huang,Bhagat Singh Rajput,Jessica Y. Chen,Ze Zhong Wang,Stephanie K. Seidlits
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:11 (7) 被引量:27
标识
DOI:10.1002/adhm.202101577
摘要

Conductive biomaterials provide an important control for engineering neural tissues, where electrical stimulation can potentially direct neural stem/progenitor cell (NS/PC) maturation into functional neuronal networks. It is anticipated that stem cell-based therapies to repair damaged central nervous system (CNS) tissues and ex vivo, "tissue chip" models of the CNS and its pathologies will each benefit from the development of biocompatible, biodegradable, and conductive biomaterials. Here, technological advances in conductive biomaterials are reviewed over the past two decades that may facilitate the development of engineered tissues with integrated physiological and electrical functionalities. First, one briefly introduces NS/PCs of the CNS. Then, the significance of incorporating microenvironmental cues, to which NS/PCs are naturally programmed to respond, into biomaterial scaffolds is discussed with a focus on electrical cues. Next, practical design considerations for conductive biomaterials are discussed followed by a review of studies evaluating how conductive biomaterials can be engineered to control NS/PC behavior by mimicking specific functionalities in the CNS microenvironment. Finally, steps researchers can take to move NS/PC-interfacing, conductive materials closer to clinical translation are discussed.
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