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用于祖细胞移植和生物材料的机械拉伸及时间治疗技术。

Mechanical stretch and chronotherapeutic techniques for progenitor cell transplantation and biomaterials.

作者信息

Rogers Eve Helena, Pekovic-Vaughan Vanja, Hunt John Alan

机构信息

Institute of Ageing and Chronic Disease, University of Liverpool, the William Henry Duncan Building, 6 West Derby Street, Liverpool, UK, L7 8TX.

School of Science and Technology, Nottingham Trent University, Clifton Campus, College Drive, Nottingham, UK, NG11 8NS.

出版信息

Biomedicine (Taipei). 2018 Sep;8(3):14. doi: 10.1051/bmdcn/2018080314. Epub 2018 Aug 24.

Abstract

In the body, mesenchymal progenitor cells are subjected to a substantial amount external force from different mechanical stresses, each potentially influences their behaviour and maintenance differentially. Tensile stress, or compression loading are just two of these forces, and here we examine the role of cyclical or dynamic mechanical loading on progenitor cell proliferation and differentiation, as well as on other cellular processes including cell morphology, apoptosis and matrix mineralisation. Moreover, we also examine how mechanical stretch can be used to optimise and ready biomaterials before their implantation, and examine the role of the circadian rhythm, the body's innate time keeping system, on biomaterial delivery and acceptance. Finally, we also investigate the effect of mechanical stretch on the circadian rhythm of progenitor cells, as research suggests that mechanical stimulation may be sufficient in itself to synchronise the circadian rhythm of human adult progenitor cells alone, and has also been linked to progenitor cell function. If proven correct, this could offer a novel, non-intrusive method by which human adult progenitor cells may be activated or preconditioned, being readied for differentiation, so that they may be more successfully integrated within a host body, thereby improving tissue engineering techniques and the efficacy of cellular therapies.

摘要

在体内,间充质祖细胞会受到来自不同机械应力的大量外力作用,每种外力都可能对其行为和维持产生不同的影响。拉伸应力或压缩载荷只是其中的两种力,在此我们研究周期性或动态机械载荷对祖细胞增殖和分化的作用,以及对包括细胞形态、凋亡和基质矿化在内的其他细胞过程的作用。此外,我们还研究了如何在生物材料植入前利用机械拉伸对其进行优化和预处理,并研究生物钟节律(人体固有的计时系统)在生物材料递送和接受方面的作用。最后,我们还研究了机械拉伸对祖细胞生物钟节律的影响,因为研究表明,机械刺激本身可能足以使人类成年祖细胞的生物钟节律同步,并且还与祖细胞功能有关。如果这一观点被证明是正确的,则可能提供一种新颖的、非侵入性的方法来激活或预处理人类成年祖细胞,使其为分化做好准备,从而使其能够更成功地整合到宿主体内,进而改进组织工程技术和细胞治疗的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b223/6108224/c441124b13ef/bmdcn-8-14-fig1.jpg

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