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功能化碳纳米管薄膜支持犬诱导多能干细胞的长期维持和心神经元分化。

Thin films of functionalized carbon nanotubes support long-term maintenance and cardio-neuronal differentiation of canine induced pluripotent stem cells.

机构信息

Division of Physiology and Climatology, ICAR-Indian Veterinary Research Institute, Izatnagar, Uttar Pradesh, India.

Department of Veterinary Physiology, West Bengal University of Animal and Fishery Sciences, Kolkata, West Bengal, India.

出版信息

Nanomedicine. 2022 Feb;40:102487. doi: 10.1016/j.nano.2021.102487. Epub 2021 Nov 3.

Abstract

Induced pluripotent stem cells (iPSCs) are a promising cell source for regenerative medicine. However, their feeder-free maintenance in undifferentiated states remains challenging. In recent past extensive studies have been directed using pristine or functionalized carbon nanotube in tissue engineering. Here we proposed thin films of functionalized carbon nanotubes (OH-single-walled CNTs [SWCNTs] and OH-multiwalled CNTs [MWCNTs]), as alternatives for the feeder-free in vitro culture of canine iPSCs (ciPSCs), considered as the cellular model. The ciPSC colonies could maintain their dome-shaped compactness and other characteristics when propagated on CNT films. Concomitantly, high cell viability and upregulation of pluripotency-associated genes and cell adhesion molecules were observed, further supported by molecular docking. Moreover, CNTs did not have profound toxic effects compared to feeder cultures as evident by cytocompatibility studies. Further, cardiac and neuronal differentiation of ciPSCs was induced on these films to determine their influence on the differentiation process. The cells retained differentiation potential and the nanotopographical features of the substrates provided positive cues to enhance differentiation to both lineages as evident by immunocytochemical staining and marker gene expression. Overall, OH-SWCNT provided better cues, maintained pluripotency, and induced the differentiation of ciPSCs. These results indicate that OH-functionalized CNT films could be used as alternatives for the feeder-free maintenance of ciPSCs towards prospective utilization in regenerative medicine.

摘要

诱导多能干细胞(iPSCs)是再生医学有前途的细胞来源。然而,在未分化状态下无饲养层维持它们仍然具有挑战性。在过去的一段时间里,人们广泛研究了使用原始或功能化的碳纳米管在组织工程中的应用。在这里,我们提出了功能化碳纳米管(OH-单壁 CNTs [SWCNTs] 和 OH-多壁 CNTs [MWCNTs])薄膜,作为犬 iPSCs(ciPSCs)无饲养层体外培养的替代品,ciPSCs 被认为是细胞模型。ciPSC 集落在 CNT 薄膜上繁殖时可以保持其圆顶形的紧凑性和其他特征。同时,观察到高细胞活力和多能性相关基因和细胞黏附分子的上调,这进一步得到了分子对接的支持。此外,与饲养培养相比,CNT 没有明显的毒性作用,这从细胞相容性研究中可以明显看出。此外,还在这些薄膜上诱导 ciPSCs 的心脏和神经元分化,以确定它们对分化过程的影响。细胞保留分化潜力,并且基底的纳米拓扑特征提供了积极的信号,以增强向两种谱系的分化,这可以通过免疫细胞化学染色和标记基因表达来证明。总的来说,OH-SWCNT 提供了更好的信号,维持了多能性,并诱导了 ciPSCs 的分化。这些结果表明,OH 功能化 CNT 薄膜可用作无饲养层维持 ciPSCs 的替代品,有望在再生医学中得到应用。

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