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从牙囊上皮细胞诱导唾液腺样细胞

Induction of Salivary Gland-Like Cells from Dental Follicle Epithelial Cells.

作者信息

Xu Q L, Furuhashi A, Zhang Q Z, Jiang C M, Chang T-H, Le A D

机构信息

1 Department of Oral & Maxillofacial Surgery & Pharmacology, University of Pennsylvania School of Dental Medicine, Philadelphia, PA, USA.

2 Section of Implant and Rehabilitative Dentistry, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.

出版信息

J Dent Res. 2017 Aug;96(9):1035-1043. doi: 10.1177/0022034517711146. Epub 2017 May 25.

Abstract

The dental follicle (DF), most often associated with unerupted teeth, is a condensation of ectomesenchymal cells that surrounds the tooth germ in early stages of tooth development. In the present study, we aim to isolate epithelial stem-like cells from the human DF and explore their potential differentiation into salivary gland (SG) cells. We demonstrated the expression of stem cell-related genes in the epithelial components of human DF tissues, and these epithelial progenitor cells could be isolated and ex vivo expanded in a reproducible manner. The human DF-derived epithelial cells possessed clonogenic and sphere-forming capabilities, as well as expressed a panel of epithelial stem cell-related genes, thus conferring stem cell properties (hDF-EpiSCs). When cultured under in vitro 3-dimensional induction conditions, hDF-EpiSCs were capable to differentiate into SG acinar and duct cells. Furthermore, transplantation of hDF-EpiSC-loaded native de-cellularized rat parotid gland scaffolds into the renal capsule of nude mice led to the differentiation of transplanted hDF-EpiSCs into salivary gland-like cells. These findings suggest that hDF-EpiSCs might be a promising source of epithelial stem cells for the development of stem cell-based therapy or bioengineering SG tissues to repair/regenerate SG dysfunction.

摘要

牙囊(DF)通常与未萌出的牙齿相关,是在牙齿发育早期围绕牙胚的外胚间充质细胞的凝聚物。在本研究中,我们旨在从人牙囊中分离上皮样干细胞,并探索它们向唾液腺(SG)细胞分化的潜力。我们证明了人牙囊组织上皮成分中干细胞相关基因的表达,并且这些上皮祖细胞能够以可重复的方式分离并在体外扩增。人牙囊来源的上皮细胞具有克隆形成和形成球体的能力,并且表达一组上皮干细胞相关基因,从而赋予其干细胞特性(hDF-EpiSCs)。当在体外三维诱导条件下培养时,hDF-EpiSCs能够分化为唾液腺腺泡细胞和导管细胞。此外,将负载hDF-EpiSC的天然去细胞大鼠腮腺支架移植到裸鼠肾囊中,导致移植的hDF-EpiSCs分化为唾液腺样细胞。这些发现表明,hDF-EpiSCs可能是一种有前途的上皮干细胞来源,可用于基于干细胞的治疗或生物工程唾液腺组织以修复/再生唾液腺功能障碍。

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