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由脱细胞雪旺细胞片制成的用于周围神经再生的新型无细胞支架

Novel Acellular Scaffold Made from Decellularized Schwann Cell Sheets for Peripheral Nerve Regeneration.

作者信息

Junka Radoslaw, Yu Xiaojun

机构信息

Department of Chemistry, Chemical Biology and Biomedical Engineering, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Regen Eng Transl Med. 2015 Dec;1(1):22-31. doi: 10.1007/s40883-015-0003-2. Epub 2015 Oct 4.

Abstract

UNLABELLED

Extracellular matrix surrounding Schwann cells and neurons provides critical determinants of cellular phenotype during development as well as essential cues in stimulating and guiding regrowth. Using cell sheet technology, we developed a novel scaffold enriched with native extracellular matrix from Schwann cells. Schwann cells were grown into sheets and layered onto polycaprolactone fibers for support. Upon decellularization of these constructs, extracellular matrix remained with few traces of nucleic acids. This method of deposition of extracellular matrix provided more protein than traditional seeding method after decellularization. Additionally, the isolated matrix supported proliferation of Schwann cells better than covalently bound laminin. The proliferation and differentiation of Schwann cells grown on decellularized sheets were complemented by upregulation of Erbb2 and myelin protein zero. Laminin expression of β1 and γ1 chains was also elevated. PC12 cells grown on decellularized sheets produced longer neurite extensions than aligned polycaprolactone fibers alone, proving potential of these scaffolds to be used in future peripheral nerve regenerative studies.

LAY SUMMARY

Peripheral nerve injuries present a serious clinical need with approximately 50 % of surgical cases achieving only some restoration of function. In order to better guide regenerating nerves, supporting cells of the nerve tissue were grown into sheets and subsequently decellularized, leaving a myriad of surrounding protein as a scaffold. Constructs have been shown to support cell growth and neurite extension in vitro. Future projects will combine various cell types present in the nerve tissue as well as stem cells to fully support and reconstruct architecture of the peripheral nerves.

摘要

未标记

施万细胞和神经元周围的细胞外基质在发育过程中提供细胞表型的关键决定因素,也是刺激和引导再生的重要线索。利用细胞片技术,我们开发了一种富含施万细胞天然细胞外基质的新型支架。将施万细胞培养成片,并铺在聚己内酯纤维上以提供支撑。对这些构建体进行脱细胞处理后,细胞外基质保留,几乎没有核酸痕迹。这种细胞外基质沉积方法在脱细胞后比传统接种方法提供了更多蛋白质。此外,分离出的基质比共价结合的层粘连蛋白更能支持施万细胞的增殖。在脱细胞片上生长的施万细胞的增殖和分化通过Erbb2和髓磷脂蛋白零的上调得到补充。β1和γ1链的层粘连蛋白表达也有所升高。在脱细胞片上生长的PC12细胞比单独排列的聚己内酯纤维产生更长的神经突延伸,证明这些支架在未来周围神经再生研究中的应用潜力。

简要概述

周围神经损伤存在严重的临床需求,约50%的手术病例仅实现了部分功能恢复。为了更好地引导再生神经,将神经组织的支持细胞培养成片,随后进行脱细胞处理,留下大量周围蛋白质作为支架。已证明构建体在体外支持细胞生长和神经突延伸。未来项目将结合神经组织中存在的各种细胞类型以及干细胞,以充分支持和重建周围神经的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5ec/4734393/784fc4c473b2/nihms735791f1.jpg

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