Wang Siqi, Lu Haiyuan, Cheng Lamei
Institute of Reproductive and Stem Cell Engineering, School of Basic Medical Sciences, Central South University, Changsha 410078, China.
Zhong Nan Da Xue Xue Bao Yi Xue Ban. 2018 Feb 28;43(2):184-191. doi: 10.11817/j.issn.1672-7347.2018.02.014.
To compare the ability between bone marrow-derived mesenchymal stem cells (MSCs) (BM-MSCs) and adipose-derived MSCs (AD-MSCs) or umbilical cord-derived MSCs (UC-MSCs) on promotion of vessels formation and vessels stabilization relevant to the functions of EPCs. Methods: In vitro, co-culture blood vessel test was performed to compare the angiogenic ability between BM-MSCs, AD-MSCs or UC-MSCs. In vivo, angiogenic assay dependent on basement membrane matrix Matrigel and immunohistochemistry were performed to compare the ability of vessels formation functions between BM-MSCs and AD-MSCs or UC-MSCs. Results: The lengths and dots of vascular structures formed by EPCs on AD-MSCs layer are greater than those by EPCs on BM-MSCs layer and UC-MSCs layer in angiogenic assay in vitro. The stability of the capillary-like structures formed by EPCs with AD-MSCs on Matrigel was more stable than that by the BM-MSCs, UC-MSCs or EPCs. AD-MSCs and EPCs could form abundant functional vessels with blood perfusion in Matrigelin vivo; UC-MSCs and EPCs could form a few functional vessels with blood perfusion in Matrigelin vivo; BM-MSCs and EPCs could form broken vessels with hemocytes leakage in Matrigel in vivo. Conclusion: AD-MSCs have the stronger ability to promote the angiogenesis and stabilize the vessels compared with BM-MSCs or UC-MSCs ex vivo and in vivo.
比较骨髓间充质干细胞(MSCs)(BM-MSCs)、脂肪来源的MSCs(AD-MSCs)或脐带来源的MSCs(UC-MSCs)促进与内皮祖细胞(EPCs)功能相关的血管形成和血管稳定的能力。
体外进行共培养血管试验,比较BM-MSCs、AD-MSCs或UC-MSCs之间的血管生成能力。体内进行依赖于基底膜基质基质胶的血管生成试验和免疫组织化学,比较BM-MSCs与AD-MSCs或UC-MSCs之间的血管形成功能能力。
体外血管生成试验中,EPCs在AD-MSCs层上形成的血管结构长度和点数大于在BM-MSCs层和UC-MSCs层上形成的。EPCs与AD-MSCs在基质胶上形成的类毛细血管结构稳定性高于BM-MSCs、UC-MSCs或EPCs单独形成的。AD-MSCs与EPCs在体内基质胶中可形成大量有血液灌注的功能性血管;UC-MSCs与EPCs在体内基质胶中可形成少量有血液灌注的功能性血管;BM-MSCs与EPCs在体内基质胶中形成的血管有血细胞渗漏且血管破裂。
在体外和体内,与BM-MSCs或UC-MSCs相比,AD-MSCs具有更强的促进血管生成和稳定血管的能力。