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牙髓间充质干细胞的再生潜能和血管再生:直接、旁分泌还是自分泌作用?

Regenerative Potential of DPSCs and Revascularization: Direct, Paracrine or Autocrine Effect?

机构信息

Biomedicine and Advanced Technologies Rieti Center, Sabina Universitas, 02100, Rieti, Italy.

Department of Experimental Medicine, "Sapienza" University, 00161, Rome, Italy.

出版信息

Stem Cell Rev Rep. 2021 Oct;17(5):1635-1646. doi: 10.1007/s12015-021-10162-6. Epub 2021 Apr 7.

Abstract

A new source of mesenchymal stem cells has recently been discovered, the so-called dental pulp derived stem cells (DPSCs) which therefore could represent potentially tools for regenerative medicine. DPSC originate from the neural crest and are physiologically involved in dentin homeostasis; moreover, they contribute to bone remodeling and differentiation into several tissues including cartilage, bone, adipose and nervous tissues. DPSCs have also been shown to influence the angiogenesis process, for example through the release of secretory factors or by differentiating into vascular and/or perivascular cells. Angiogenesis, that has a pivotal role in tissue regeneration and repair, is defined as the formation of new vessels from preexisting vessels and is mediated by mutual and reciprocal interactions between endothelial cells and perivascular cells. It is also known that co-cultures of perivascular and endothelial cells (ECs) can form a vascular network in vitro and also in vivo. Since DPSCs seem to have characteristics similar to pericytes, understanding the possible mechanism of interaction between DPSCs and ECs during neo-angiogenesis is dramatically important for the development of advanced clinical application in the field of regeneration.

摘要

最近发现了一种新的间充质干细胞来源,即所谓的牙髓来源的干细胞(DPSCs),因此它们可能成为再生医学的潜在工具。DPSC 起源于神经嵴,在生理上参与牙本质稳态;此外,它们有助于骨重塑和分化为包括软骨、骨、脂肪和神经组织在内的几种组织。DPSC 还被证明可以影响血管生成过程,例如通过释放分泌因子或分化为血管和/或血管周细胞。血管生成在组织再生和修复中起着关键作用,定义为从现有血管形成新血管,并且由内皮细胞和血管周细胞之间的相互和相互作用介导。已知血管周细胞和内皮细胞(EC)的共培养可以在体外和体内形成血管网络。由于 DPSCs 似乎具有与周细胞相似的特征,因此了解 DPSCs 和 EC 之间在新血管生成过程中的相互作用的可能机制对于再生领域中先进临床应用的发展具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0324/8553678/5454adffe062/12015_2021_10162_Fig1_HTML.jpg

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