Ribot Jonathan, Caliaperoumal Guavri, Paquet Joseph, Boisson-Vidal Catherine, Petite Herve, Anagnostou Fani
Laboratory of Bioingénierie et Biomécanique Ostéo-articulaires-UMR CNRS 7052 Paris 7-Denis Diderot University, Sorbonne Paris Cite, Paris, France.
INSERM, UMR 1140, Université Paris Descartes, Sorbonne Paris Cite, Paris, France.
J Cell Mol Med. 2017 Feb;21(2):349-363. doi: 10.1111/jcmm.12969. Epub 2016 Sep 19.
This study aimed at characterizing the impact of type 2 diabetes mellitus (T2DM) on the bone marrow mesenchymal stem cell (BMMSC) secretome and angiogenic properties. BMMSCs from Zucker diabetic fatty rats (ZDF) (a T2DM model) and Zucker LEAN littermates (control) were cultured. The supernatant conditioned media (CM) from BMMSCs of diabetic and control rats were collected and analysed. Compared to results obtained using CM from LEAN-BMMSCs, the bioactive content of ZDF-BMMSC CM (i) differently affects endothelial cell (HUVEC) functions in vitro by inducing increased (3.5-fold; P < 0.01) formation of tubule-like structures and migration of these cells (3-fold; P < 0.001), as well as promotes improved vascular formation in vivo, and (ii) contains different levels of angiogenic factors (e.g. IGF1) and mediators, such as OSTP, CATD, FMOD LTBP1 and LTBP2, which are involved in angiogenesis and/or extracellular matrix composition. Addition of neutralizing antibodies against IGF-1, LTBP1 or LTBP2 in the CM of BMMSCs from diabetic rats decreased its stimulatory effect on HUVEC migration by approximately 60%, 40% or 40%, respectively. These results demonstrate that BMMSCs from T2DM rats have a unique secretome with distinct angiogenic properties and provide new insights into the role of BMMSCs in aberrant angiogenesis in the diabetic milieu.
本研究旨在表征2型糖尿病(T2DM)对骨髓间充质干细胞(BMMSC)分泌组和血管生成特性的影响。培养了来自Zucker糖尿病脂肪大鼠(ZDF,一种T2DM模型)和Zucker LEAN同窝大鼠(对照)的BMMSC。收集并分析了糖尿病大鼠和对照大鼠BMMSC的上清条件培养基(CM)。与使用LEAN - BMMSC的CM获得的结果相比,ZDF - BMMSC CM的生物活性成分(i)通过诱导管状结构形成增加(3.5倍;P < 0.01)和这些细胞的迁移(3倍;P < 0.001),在体外对内皮细胞(HUVEC)功能产生不同影响,并促进体内血管形成改善,以及(ii)含有不同水平的血管生成因子(如IGF1)和介质,如OSTP、CATD、FMOD、LTBP1和LTBP2,它们参与血管生成和/或细胞外基质组成。在糖尿病大鼠BMMSC的CM中添加针对IGF - 1、LTBP1或LTBP2的中和抗体,分别使其对HUVEC迁移的刺激作用降低约60%、40%或40%。这些结果表明,来自T2DM大鼠的BMMSC具有独特的分泌组,具有不同的血管生成特性,并为BMMSC在糖尿病环境中异常血管生成中的作用提供了新的见解。