卫星神经胶质接触促进人类ipsc来源的感觉神经元的分化和成熟。

IF 5.1 2区 医学 Q1 CELL & TISSUE ENGINEERING
Chelsey J LeBlang, Maria F Pazyra-Murphy, Elizabeth S Silagi, Srestha Dasgupta, Marianna Tsolias, Toussaint Miller, Veselina Petrova, Shannon Zhen, Vukasin M Jovanovic, David Castellano, Kathryn Gerrish, Pinar Ormanoglu, Carlos A Tristan, Ilyas Singeç, Clifford J Woolf, Ozge Tasdemir-Yilmaz, Rosalind A Segal
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引用次数: 0

摘要

诱导多能干细胞(idSNs)产生的感觉神经元被用于模拟人类周围神经病变;然而,目前的分化方案产生具有胚胎表型的细胞。外周胶质细胞在发育早期接触感觉神经元,并有助于形成典型的伪单极形态,但这些信号不包括在目前的idSN分化方案中。本研究表明,在与大鼠背根神经节(rDRG)卫星胶质细胞和胶质前体(rSG)共培养中,idSNs的末端分化促进了分化和成熟。共培养的idsn通过与rSG接触而形成伪单极形态。除了形态变化外,共培养中分化的idSNs还表现出增强的动作电位放电,更成熟的基因表达,以及对紫杉醇诱导的轴突变性的易感性。因此,与rSG共培养分化的idsn为研究人类周围神经病变提供了更好的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Satellite glial contact enhances differentiation and maturation of human iPSC-derived sensory neurons.

Sensory neurons generated from induced pluripotent stem cells (idSNs) are used to model human peripheral neuropathies; however, current differentiation protocols produce cells with an embryonic phenotype. Peripheral glia contact sensory neurons early in development and contribute to formation of the canonical pseudounipolar morphology, but these signals are not encompassed in current idSN differentiation protocols. Here, we show that terminal differentiation of idSNs in coculture with rat dorsal root ganglion (rDRG) satellite glia and glial precursors (rSG) advances differentiation and maturation. Cocultured idSNs develop pseudounipolar morphology through contact with rSG. In addition to morphological changes, idSNs terminally differentiated in coculture exhibit enhanced action potential firing, more mature gene expression, and increased susceptibility to paclitaxel-induced axonal degeneration. Thus, idSNs differentiated in coculture with rSG provide a better model for investigating human peripheral neuropathies.

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来源期刊
Stem Cell Reports
Stem Cell Reports CELL & TISSUE ENGINEERING-CELL BIOLOGY
CiteScore
10.50
自引率
1.70%
发文量
200
审稿时长
28 weeks
期刊介绍: Stem Cell Reports publishes high-quality, peer-reviewed research presenting conceptual or practical advances across the breadth of stem cell research and its applications to medicine. Our particular focus on shorter, single-point articles, timely publication, strong editorial decision-making and scientific input by leaders in the field and a "scoop protection" mechanism are reasons to submit your best papers.
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