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高糖环境对大鼠骨髓腔来源间充质基质细胞扩增和分化能力的影响。

Effects of high glucose conditions on the expansion and differentiation capabilities of mesenchymal stromal cells derived from rat endosteal niche.

机构信息

School of Dentistry, Cardiff Institute of Tissue Engineering and Repair (CITER), College of Biomedical and Life Sciences, Cardiff University, Cardiff, CF14 4XY, UK.

College of Dentistry, University of Anbar, Anbar, Iraq.

出版信息

BMC Mol Cell Biol. 2019 Nov 21;20(1):51. doi: 10.1186/s12860-019-0235-y.

Abstract

BACKGROUND

Mesenchymal stromal cells in the endosteal niche lining compact bone (CB-MSCs) represent a heterogeneous population, all of which contribute to bone repair and remodelling. Hyperglycaemia associated with type 2 diabetes mellitus (T2DM) can delay and impair the bone healing process. Therefore, this study investigated the influences of high (25 mM) glucose conditions on CB-MSC populations isolated from male Wistar rats, versus normal (5.5 mM) glucose conditions; in terms of proliferation (population doublings, PDs), senescence characteristics, stem cell marker expression, colony forming efficiencies (CFEs); and osteogenic/adipogenic differentiation, following extended culture in vitro.

RESULTS

CB-MSCs under both normoglycaemic and hyperglycaemic conditions demonstrated similar morphologies and rapid exponential growth to >300PDs, although high glucose conditions promoted more rapid and persistent proliferation beyond ~50PDs, with few indications of senescence. Limited senescence was confirmed by minimal SA-β-galactosidase staining, low senescence marker (p53, p21, p16) expression and positive telomere maintenance marker (rTERT, TR) expression. However, telomere lengths varied throughout culture expansion, with hyperglycaemia significantly reducing telomere lengths at PD50 and PD200. Furthermore, CB-MSCs expanded in normal and high glucose conditions remained non-transformed, exhibiting similar MSC (CD73/CD90/CD105), multipotency (CD146) and embryonic (Slug, Snail) markers throughout extended culture, but negligible hematopoietic (CD34/CD45) or pluripotency (Nanog, Oct4) markers. Hyperglycaemia significantly increased CFEs at PD50 and PD100, which decreased at PD200. CB-MSC osteogenic differentiation was also inhibited by hyperglycaemia at PD15, PD100 and PD200, but not at PD50. Hyperglycaemia inhibited CB-MSC adipogenic differentiation to a lesser extent at PD15 and PD50, with reduced adipogenesis overall at PD100 and PD200.

CONCLUSION

This study demonstrates the limited negative impact of hyperglycaemia on the proliferative and stem cell characteristics of heterogeneous CB-MSC populations, although minor sub-population(s) appear more susceptible to these conditions leading to impaired osteogenic/adipogenic differentiation capabilities. Such findings potentially highlight the impact of hyperglycaemia on CB-MSC bone repair capabilities in situ.

摘要

背景

在密质骨的骨内膜龛中,间充质基质细胞(CB-MSCs)代表一个异质性群体,所有这些细胞都有助于骨修复和重塑。2 型糖尿病(T2DM)相关的高血糖会延迟和损害骨愈合过程。因此,本研究旨在探讨高(25mmol/L)葡萄糖条件对雄性 Wistar 大鼠 CB-MSCs 群体的影响,与正常(5.5mmol/L)葡萄糖条件相比;在增殖(群体倍增,PDs)、衰老特征、干细胞标志物表达、集落形成效率(CFEs);以及成骨/成脂分化方面,在体外延长培养后。

结果

在正常血糖和高血糖条件下,CB-MSCs 均表现出相似的形态和快速的指数生长,超过 300PDs,尽管高葡萄糖条件促进了更快和持续的增殖,超过~50PDs,且衰老迹象很少。通过最小化 SA-β-半乳糖苷酶染色、低衰老标志物(p53、p21、p16)表达和阳性端粒维持标志物(rTERT、TR)表达,证实了有限的衰老。然而,端粒长度在整个培养过程中发生变化,高血糖在 PD50 和 PD200 时显著降低端粒长度。此外,在正常和高葡萄糖条件下扩增的 CB-MSCs 保持非转化状态,在整个延长培养过程中表现出相似的 MSC(CD73/CD90/CD105)、多能性(CD146)和胚胎(Slug、Snail)标志物,但造血(CD34/CD45)或多能性(Nanog、Oct4)标志物很少。高血糖在 PD50 和 PD100 时显著增加 CFEs,但在 PD200 时降低。CB-MSC 成骨分化在 PD15、PD100 和 PD200 时也受到高血糖的抑制,但在 PD50 时不受抑制。高血糖在 PD15 和 PD50 时对 CB-MSC 成脂分化的抑制作用较小,但总体上在 PD100 和 PD200 时成脂分化减少。

结论

本研究表明,高血糖对异质 CB-MSC 群体的增殖和干细胞特征的负面影响有限,尽管少数亚群似乎更容易受到这些条件的影响,导致成骨/成脂分化能力受损。这些发现可能强调了高血糖对 CB-MSC 骨修复能力的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6803/6873668/caf3c6a4624c/12860_2019_235_Fig1_HTML.jpg

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