Department of Otolaryngology - Head and Neck Surgery, Beijing Friendship Hospital, Capital Medical University, 95 Yong An Road, Beijing 100050, China.
Department of Cardiology, Chinese PLA General Hospital, 28 FuXing Road, Beijing 100853, China.
Exp Cell Res. 2018 Sep 1;370(1):116-126. doi: 10.1016/j.yexcr.2018.06.013. Epub 2018 Jun 14.
Transplantation of bone marrow-derived endothelial progenitor cells (BM-EPCs) has been used as a therapeutic strategy for vascular repair. However, it remains controversial whether BM-EPCs exhibit clonal endothelial colony-forming cell (ECFC) capacity, a characteristic of true EPCs. The aim of this study was to isolate and explore the cellular properties of BM-ECFCs. We isolated BM-ECFCs from rat bone marrow with high purity via an optimized method. This approach involved the removal of selective colonies based on the conventional differential adhesive culture method used to isolate ECFCs from peripheral and umbilical cord blood. Our results indicate that primary colony BM-ECFCs display a panel of surface antigen markers consistent with endothelial cells. These BM-ECFCs coexpress CD34, CD133, and VEGFR2 at high levels, and these levels decrease with passaging. These cells have high potential for proliferation, migration, and formation of capillary-like structures on Matrigel, and these abilities are retained during ex vivo expansion. Furthermore, BM-ECFCs cultured with 10% or 20% fetal bovine serum demonstrated two different patterns of spontaneous capillary-like structure formation. These results provide a foundation for isolation of ECFCs from human bone marrow for autologous cell transplantation and tissue engineering applications in the future.
骨髓来源的内皮祖细胞(BM-EPCs)移植已被用作血管修复的治疗策略。然而,BM-EPCs 是否表现出克隆性内皮集落形成细胞(ECFC)能力,即真正 EPCs 的特征,这仍然存在争议。本研究的目的是分离和探索 BM-ECFC 的细胞特性。我们通过优化的方法从大鼠骨髓中分离出高纯度的 BM-ECFC。这种方法涉及根据从外周血和脐带血中分离 ECFC 的常规差异粘附培养方法,选择性地去除选择性集落。我们的结果表明,原代集落 BM-ECFC 表达一组与内皮细胞一致的表面抗原标志物。这些 BM-ECFC 高水平共表达 CD34、CD133 和 VEGFR2,随着传代培养,这些水平会降低。这些细胞具有高增殖、迁移和在 Matrigel 上形成毛细血管样结构的潜能,并且这些能力在体外扩增过程中得以保留。此外,在 10%或 20%胎牛血清中培养的 BM-ECFC 表现出两种不同的自发毛细血管样结构形成模式。这些结果为未来从人骨髓中分离 ECFC 进行自体细胞移植和组织工程应用提供了基础。