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17β-雌二醇对来自脂肪组织和骨髓的间充质干/基质细胞的成骨分化有不同影响。

17β-estradiol differently affects osteogenic differentiation of mesenchymal stem/stromal cells from adipose tissue and bone marrow.

作者信息

Niada Stefania, Giannasi Chiara, Ferreira Lorena Maria Josè, Milani Anna, Arrigoni Elena, Brini Anna Teresa

机构信息

Department of Biomedical, Surgical and Dental Sciences, Università degli Studi di Milano, Via Vanvitelli 32, 20129 Milan, Italy; IRCCS Galeazzi Orthopaedic Institute, Via R. Galeazzi 4, 20161 Milan, Italy.

出版信息

Differentiation. 2016 Dec;92(5):291-297. doi: 10.1016/j.diff.2016.04.001. Epub 2016 Apr 14.

Abstract

Adipose-derived and bone marrow stem/stromal cells (ASCs and BMSCs) have been often compared for their application in regenerative medicine, and several factors sustaining their differentiation and efficacy have been investigated. 17 β-estradiol (E2) has been reported to influence some functions of progenitor cells. Here we studied the effects of 10 and 100nM E2 on ASC and BMSC vitality, proliferation and differentiation towards osteogenic and adipogenic lineages. E2 did not modulate ASC and BMSC vitality and growth rate, while the hormone produced a pro-adipogenic effect on both mesenchymal stem/stromal cells (MSCs). In particular, the synergy between 7-day pre-treatment and 100nM E2 led to the most evident result, increasing lipid vacuoles formation in ASCs and BMSCs of +44% and +82%, respectively. Despite the fact that E2 did not alter collagen deposition of osteo-induced MSCs, we observed a different modulation of ASC and BMSC alkaline phosphatase (ALP) activity. Indeed, this osteogenic marker was always enhanced by 17 β-estradiol in BMSCs, and 7-day pre-treatment with 100nM E2 increased it of about 70%. In contrast, E2 weakened ASC osteogenic potential, reducing their ALP activity of about 20%, with the most evident effect on ASCs isolated from pre-menopausal women (-30%). Finally, we identified an estrogen receptor α (ERα) variant of about 37kDa expressed in both MSCs. Interestingly, adipogenic stimuli drastically reduced its expression, while osteogenic ones mildly increased this isoform in BMSCs only. In conclusion, E2 positively affected the adipogenic process of both MSCs while it favored osteogenic induction in BMSCs only, and both mesenchymal progenitors expressed a novel 37kDa ER-α variant whose expression was modulated during differentiation.

摘要

脂肪来源的干细胞和骨髓干细胞(ASCs和BMSCs)常被比较用于再生医学中的应用,并且已经研究了维持它们分化和功效的几个因素。据报道,17β-雌二醇(E2)会影响祖细胞的某些功能。在此,我们研究了10 nM和100 nM E2对ASCs和BMSCs活力、增殖以及向成骨和成脂谱系分化的影响。E2并未调节ASCs和BMSCs的活力及生长速率,而该激素对两种间充质干/基质细胞(MSCs)均产生促脂肪生成作用。特别是,7天预处理与100 nM E2之间的协同作用导致了最明显的结果,分别使ASCs和BMSCs中的脂质空泡形成增加了44%和82%。尽管E2并未改变成骨诱导的MSCs中的胶原蛋白沉积,但我们观察到ASCs和BMSCs碱性磷酸酶(ALP)活性存在不同的调节。实际上,在BMSCs中,这种成骨标志物总是被17β-雌二醇增强,并且用100 nM E2进行7天预处理使其增加了约70%。相比之下,E2削弱了ASCs的成骨潜能,使其ALP活性降低了约20%,对从绝经前女性分离的ASCs影响最为明显(降低30%)。最后,我们鉴定出在两种MSCs中均表达的一种约37 kDa的雌激素受体α(ERα)变体。有趣的是,脂肪生成刺激显著降低了其表达,而成骨刺激仅使BMSCs中的这种异构体轻度增加。总之,E2对两种MSCs的脂肪生成过程产生了积极影响,而仅在BMSCs中促进了成骨诱导,并且两种间充质祖细胞均表达一种新型的37 kDa ER-α变体,其表达在分化过程中受到调节。

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