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脱细胞同种异体动脉导管联合自体转分化脂肪来源干细胞促进大鼠面神经再生。

Combined use of decellularized allogeneic artery conduits with autologous transdifferentiated adipose-derived stem cells for facial nerve regeneration in rats.

机构信息

Department of Otolaryngology-Head and Neck Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an 710032, China.

出版信息

Biomaterials. 2011 Nov;32(32):8118-28. doi: 10.1016/j.biomaterials.2011.07.031. Epub 2011 Aug 4.

DOI:10.1016/j.biomaterials.2011.07.031
PMID:21816463
Abstract

Natural biological conduits containing seed cells have been widely used as an alternative strategy for nerve gap reconstruction to replace traditional nerve autograft techniques. The purpose of this study was to investigate the effects of a decellularized allogeneic artery conduit containing autologous transdifferentiated adipose-derived stem cells (dADSCs) on an 8-mm facial nerve branch lesion in a rat model. After 8 weeks, functional evaluation of vibrissae movements and electrophysiological assessment, retrograde labeling of facial motoneurons and morphological analysis of regenerated nerves were performed to assess nerve regeneration. The transected nerves reconstructed with dADSC-seeded artery conduits achieved satisfying regenerative outcomes associated with morphological and functional improvements which approached those achieved with Schwann cell (SC)-seeded artery conduits, and superior to those achieved with artery conduits alone or ADSC-seeded artery conduits, but inferior to those achieved with nerve autografts. Besides, numerous transplanted PKH26-labeled dADSCs maintained their acquired SC-phenotype and myelin sheath-forming capacity inside decellularized artery conduits and were involved in the process of axonal regeneration and remyelination. Collectively, our combined use of decellularized allogeneic artery conduits with autologous dADSCs certainly showed beneficial effects on nerve regeneration and functional restoration, and thus represents an alternative approach for the reconstruction of peripheral facial nerve defects.

摘要

天然生物导管中含有种子细胞,已被广泛用作神经间隙重建的替代策略,以替代传统的神经自体移植技术。本研究旨在探讨含有自体转分化脂肪来源干细胞(dADSCs)的去细胞同种异体动脉导管对大鼠 8mm 面神经分支损伤的影响。8 周后,通过评估触须运动的功能和电生理评估、面神经运动神经元逆行标记以及再生神经的形态学分析来评估神经再生。用 dADSC 接种的动脉导管重建的断神经实现了令人满意的再生效果,与形态和功能的改善相关,接近 Schwann 细胞(SC)接种的动脉导管的效果,优于单独使用动脉导管或 dADSC 接种的动脉导管的效果,但不如神经自体移植的效果。此外,大量移植的 PKH26 标记的 dADSCs 在去细胞化的动脉导管内保持其获得的 SC 表型和形成髓鞘的能力,并参与轴突再生和髓鞘形成过程。总之,我们联合使用去细胞化的同种异体动脉导管和自体 dADSCs,肯定对神经再生和功能恢复有有益的影响,因此是重建周围面神经缺损的一种替代方法。

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Combined use of decellularized allogeneic artery conduits with autologous transdifferentiated adipose-derived stem cells for facial nerve regeneration in rats.脱细胞同种异体动脉导管联合自体转分化脂肪来源干细胞促进大鼠面神经再生。
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