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芯片上神经损伤模型的研究进展。

Advances in Nerve Injury Models on a Chip.

机构信息

Department of Surgery-Transplant and Mary and Dick Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, NE, 68198, USA.

Department of Surgery-Plastic Surgery, University of Nebraska Medical Center, Omaha, NE, 68198, USA.

出版信息

Adv Biol (Weinh). 2023 Aug;7(8):e2200227. doi: 10.1002/adbi.202200227. Epub 2023 Jan 29.

Abstract

Regeneration and functional recovery of the damaged nerve are challenging due to the need for effective therapeutic drugs, biomaterials, and approaches. The poor outcome of the treatment of nerve injury stems from the incomplete understanding of axonal biology and interactions between neurons and the surrounding environment, such as glial cells and extracellular matrix. Microfluidic devices, in combination with various injury techniques, have been applied to test biological hypotheses in nerve injury and nerve regeneration. The microfluidic devices provide multiple advantages over the in vitro cell culture on a petri dish and in vivo animal models because a specific part of the neuronal environment can be manipulated using physical and chemical interventions. In addition, single-cell behavior and interactions between neurons and glial cells can be visualized and quantified on microfluidic platforms. In this article, current in vitro nerve injury models on a chip that mimics in vivo axonal injuries and the regeneration process of axons are summarized. The microfluidic-based nerve injury models could enhance the understanding of the physiological and pathophysiological mechanisms of nerve tissues and simultaneously serve as powerful drug and biomaterial screening platforms.

摘要

由于需要有效的治疗药物、生物材料和方法,受损神经的再生和功能恢复具有挑战性。神经损伤治疗效果不佳的原因是对轴突生物学以及神经元与周围环境(如神经胶质细胞和细胞外基质)之间的相互作用缺乏全面了解。微流控装置与各种损伤技术相结合,已被应用于测试神经损伤和神经再生中的生物学假设。与在培养皿中的体外细胞培养和体内动物模型相比,微流控装置具有多个优势,因为可以使用物理和化学干预来操纵神经元环境的特定部分。此外,单细胞行为以及神经元和神经胶质细胞之间的相互作用可以在微流控平台上可视化和量化。本文总结了目前在芯片上模拟体内轴突损伤和轴突再生过程的体外神经损伤模型。基于微流控的神经损伤模型可以增强对神经组织生理和病理生理机制的理解,同时也可以作为强大的药物和生物材料筛选平台。

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