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细胞外基质线索调节施万细胞的形态、增殖和蛋白质表达。

Extracellular matrix cues modulate Schwann cell morphology, proliferation, and protein expression.

机构信息

Department of Chemical and Environmental Engineering, University of Cincinnati, Cincinnati, Ohio.

Department of Biomedical Engineering, University of Cincinnati, Cincinnati, Ohio.

出版信息

J Tissue Eng Regen Med. 2020 Feb;14(2):229-242. doi: 10.1002/term.2987. Epub 2019 Nov 14.

Abstract

Peripheral nerve injuries require a complex set of signals from cells, macrophages, and the extracellular matrix (ECM) to induce regeneration across injury sites and achieve functional recovery. Schwann cells (SCs), the major glial cell in the peripheral nervous system (PNS), are critical to nerve regeneration due to their inherent capacity for altering phenotype postinjury to facilitate wound healing. The ECM plays a vital role in wound healing as well as regulating cell phenotype during tissue repair. To examine the underlying mechanisms between the ECM and SCs, this work sought to determine how specific ECM cues regulate the phenotype of SCs. To address this, SCs were cultured on polydimethylsiloxane substrates of a variable Young's modulus coated with ECM proteins. Cells were analyzed for spreading area, proliferation, cell and nuclear shape, and c-Jun expression. It was found that substrates with a stiffness of 8.67 kPa coated with laminin promoted the highest expression of c-Jun, a marker signifying a "regenerative" SC. Microcontact printed, cell adhesive areas were then utilized to precisely control the geometry and spreading of SCs and by controlling spreading area and cellular elongation; expression of c-Jun was either promoted or downregulated. These results begin to address the significant interplay between ECM cues and phenotype of SCs, while offering a potential means to enhance PNS regeneration through cellular therapies.

摘要

周围神经损伤需要细胞、巨噬细胞和细胞外基质 (ECM) 发出一系列复杂的信号,以诱导损伤部位的再生并实现功能恢复。雪旺细胞 (SCs) 是周围神经系统 (PNS) 中的主要神经胶质细胞,由于其在损伤后改变表型的固有能力,有利于伤口愈合,因此对神经再生至关重要。ECM 在伤口愈合以及在组织修复过程中调节细胞表型方面起着至关重要的作用。为了研究 ECM 和 SCs 之间的潜在机制,这项工作旨在确定特定的 ECM 线索如何调节 SCs 的表型。为了解决这个问题,将 SCs 培养在涂有 ECM 蛋白的不同杨氏模量的聚二甲基硅氧烷基底上。分析细胞的铺展面积、增殖、细胞和核形状以及 c-Jun 表达。结果发现,杨氏模量为 8.67 kPa 的基底上涂有层粘连蛋白可促进 c-Jun 的最高表达,c-Jun 是一种标志着“再生”SC 的标志物。然后利用微接触印刷的细胞黏附区域精确控制 SCs 的几何形状和铺展,通过控制铺展面积和细胞伸长,c-Jun 的表达得到促进或下调。这些结果开始解决 ECM 线索和 SCs 表型之间的重要相互作用,同时为通过细胞疗法增强 PNS 再生提供了一种潜在的方法。

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