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间充质干细胞饲养层诱导颌下腺自我组织和分支形态发生。

MSCs feeder layers induce SMG self-organization and branching morphogenesis.

作者信息

Farahat Mahmoud, Sathi Gulsan Ara, Hara Emilio Satoshi, Taketa Hiroaki, Kuboki Takuo, Matsumoto Takuya

机构信息

Department of Biomaterials, Okayama University, Okayama, Japan.

Department of Oral Rehabilitation and Regenerative Medicine, Okayama University, Okayama, Japan.

出版信息

PLoS One. 2017 Apr 27;12(4):e0176453. doi: 10.1371/journal.pone.0176453. eCollection 2017.

Abstract

Dysfunction of salivary glands leads to several oral health problems, including dental caries, mastication and swallowing dysfunctions and multiple oral infections. Conventional treatments for such condition fell short of providing satisfying therapeutic results. Recent advances in organ regeneration therapy which utilize tissue stem cells to fabricate bioengineered 3D organ buds, have introduced a promising therapeutic tool for full functional organ regeneration. However, finding a sustainable and easily accessible cell source for such approaches is still challenging, especially in case of severely atrophied tissues such as irradiated salivary glands. In response to this, we hypothesized that bone marrow derived mesenchymal stem cells (MSCs) could be used as feeder cells to induce salivary epithelial tissues/cells branching. Indeed, in 2D cultures, MSCs supported branching of embryonic submandibular salivary gland (SMG) epithelium. Interestingly, this enhancing effect was dependent on the initial number of MSC feeder cells. In addition, MSCs supported the self-assembly of SMG epithelial progenitor cells into well-patterned and branched 3D salivary organoids. Therefore, these findings propose MSCs as a valuable candidate cell source for induced SMG epithelial branching, which can potentially be applied in future methods for SMG regeneration approaches.

摘要

唾液腺功能障碍会导致多种口腔健康问题,包括龋齿、咀嚼和吞咽功能障碍以及多种口腔感染。针对这种情况的传统治疗方法未能提供令人满意的治疗效果。利用组织干细胞制造生物工程3D器官芽的器官再生疗法的最新进展,为全功能器官再生引入了一种有前景的治疗工具。然而,为这种方法找到一种可持续且易于获取的细胞来源仍然具有挑战性,特别是在诸如受辐射唾液腺等严重萎缩组织的情况下。对此,我们假设骨髓间充质干细胞(MSCs)可作为饲养细胞来诱导唾液上皮组织/细胞分支。事实上,在二维培养中,MSCs支持胚胎下颌下唾液腺(SMG)上皮的分支。有趣的是,这种增强作用取决于MSC饲养细胞的初始数量。此外,MSCs支持SMG上皮祖细胞自组装成图案良好且分支的3D唾液类器官。因此,这些发现表明MSCs是诱导SMG上皮分支的有价值的候选细胞来源,其有可能应用于未来的SMG再生方法中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d8a/5407632/3bc3da104524/pone.0176453.g001.jpg

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