碳纳米管片对人间充质干细胞形态发生和神经分化的调控。

IF 1.4
Jeong Ah Kim, Eui Yun Jang, Tae June Kang, Sungjun Yoon, Raquel Ovalle-Robles, Won Jong Rhee, Taewoo Kim, Ray H Baughman, Yong Hyup Kim, Tai Hyun Park
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引用次数: 38

摘要

为了成功地利用干细胞在再生医学中的治疗应用,有效分化成特定的细胞谱系和轴突在期望方向上的引导是至关重要的。在这里,我们使用排列的多壁碳纳米管(MWCNT)薄片将人间充质干细胞(hMSCs)分化为神经细胞。人间充质干细胞对平行于碳纳米管取向方向的碳纳米管片具有优先粘附性。细胞伸长比对照高2倍,大多数细胞在碳纳米管片上排列,与碳纳米管取向方向在5°范围内。此外,在碳纳米管薄片上培养的hMSCs中,观察到神经分化的显著协同增强。轴突的生长也可以通过纳米尺度的碳纳米管来控制。这种碳纳米管薄片提供了一种新的细胞支架平台,可以调节干细胞的形态发生和分化,为组织和干细胞再生开辟了一条新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of morphogenesis and neural differentiation of human mesenchymal stem cells using carbon nanotube sheets.

In order to successfully utilize stem cells for therapeutic applications in regenerative medicine, efficient differentiation into a specific cell lineage and guidance of axons in a desired direction is crucial. Here, we used aligned multi-walled carbon nanotube (MWCNT) sheets to differentiate human mesenchymal stem cells (hMSCs) into neural cells. Human MSCs present a preferential adhesion to aligned CNT sheets with longitudinal stretch parallel to the CNT orientation direction. Cell elongation was 2-fold higher than the control and most of the cells were aligned on CNT sheets within 5° from the CNT orientation direction. Furthermore, a significant, synergistic enhancement of neural differentiation was observed in hMSCs cultured on the CNT sheets. Axon outgrowth was also controlled using nanoscale patterning of CNTs. This CNT sheet provides a new cellular scaffold platform that can regulate morphogenesis and differentiation of stem cells, which could open up a new approach for tissue and stem cell regeneration.

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