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将间质干细胞的神经发生外推到电活性和导电性支架上,以用于牙源性和口腔来源的干细胞。

Extrapolating neurogenesis of mesenchymal stem/stromal cells on electroactive and electroconductive scaffolds to dental and oral-derived stem cells.

机构信息

Central Laboratory, Peking University School and Hospital of Stomatology, Beijing, China.

School of Medical and Life Sciences, Sunway University, Subang Jaya, Selangor Darul Ehsan, Malaysia.

出版信息

Int J Oral Sci. 2022 Feb 24;14(1):13. doi: 10.1038/s41368-022-00164-6.

Abstract

The high neurogenic potential of dental and oral-derived stem cells due to their embryonic neural crest origin, coupled with their ready accessibility and easy isolation from clinical waste, make these ideal cell sources for neuroregeneration therapy. Nevertheless, these cells also have high propensity to differentiate into the osteo-odontogenic lineage. One strategy to enhance neurogenesis of these cells may be to recapitulate the natural physiological electrical microenvironment of neural tissues via electroactive or electroconductive tissue engineering scaffolds. Nevertheless, to date, there had been hardly any such studies on these cells. Most relevant scientific information comes from neurogenesis of other mesenchymal stem/stromal cell lineages (particularly bone marrow and adipose tissue) cultured on electroactive and electroconductive scaffolds, which will therefore be the focus of this review. Although there are larger number of similar studies on neural cell lines (i.e. PC12), neural stem/progenitor cells, and pluripotent stem cells, the scientific data from such studies are much less relevant and less translatable to dental and oral-derived stem cells, which are of the mesenchymal lineage. Much extrapolation work is needed to validate that electroactive and electroconductive scaffolds can indeed promote neurogenesis of dental and oral-derived stem cells, which would thus facilitate clinical applications in neuroregeneration therapy.

摘要

由于牙齿和口腔来源的干细胞具有胚胎神经嵴起源的高神经发生潜力,加上它们易于获得和从临床废物中轻易分离,这些细胞成为神经再生治疗的理想细胞来源。然而,这些细胞也有很高的倾向分化为成骨-成牙本质谱系。增强这些细胞的神经发生的一种策略可能是通过电活性或导电性组织工程支架来再现神经组织的天然生理电微环境。然而,迄今为止,针对这些细胞几乎没有进行过此类研究。最相关的科学信息来自于在电活性和导电性支架上培养的其他间充质干细胞/基质细胞谱系(特别是骨髓和脂肪组织)的神经发生,因此这将是本综述的重点。尽管有更多关于神经细胞系(即 PC12)、神经干细胞/祖细胞和多能干细胞的类似研究,但这些研究的科学数据与牙齿和口腔来源的间充质干细胞相关性较小,且更难转化应用于这些干细胞。需要进行大量的推断工作来验证电活性和导电性支架确实可以促进牙齿和口腔来源的干细胞的神经发生,从而促进神经再生治疗的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d165/8873504/59d15c939f35/41368_2022_164_Fig1_HTML.jpg

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