Yang Tingting, Ma Jie, Zhang Siqi, Zhou Rui, Yang Xiaoping, Zheng Bo
Institute of Medical Sciences, General Hospital of Ningxia Medical University, Yinchuan, China.
Diagnosis and Treatment Engineering Technology Research Center of Nervous System Diseases of Ningxia Hui Autonomous Region, Yinchuan, China.
Stem Cells Int. 2025 Jun 17;2025:4451561. doi: 10.1155/sci/4451561. eCollection 2025.
The normal hematopoiesis of the body depends on the interaction between hematopoietic stem/progenitor cells (HSPCs) and mesenchymal stem cells (MSCs) that support the growth and development of hematopoietic cells. However, the separation of MSCs from bone marrow is somewhat limited, and the researchers have turned their attention to stromal cells outside the bone marrow. As the largest organ of human body, skeletal muscle tissue stores a variety of muscle-derived vascular stem/progenitor cells, including muscle-derived pericytes/perivascular cells (MD-PCs) and skeletal muscle derived myoendothelial cells (MECs). Studies have shown that MD-PCs and MECs are similar to bone morrow-derived MSCs (BM-MSCs), which express the surface markers of MSCs and have the potential of multidirectional differentiation. However, very few researches have been done on whether MD-PCs and MECs, like MSCs, can support HSPCs expansion/proliferation, differentiation and possible hematopoietic regulation mechanisms, so the hematopoietic support of these cells remains to be studied. To identify the biological characteristics of CD146 PCs and MECs isolated from human skeletal muscle and to study their supporting effect on umbilical cord blood (UCB) CD34 cells in vitro. Human skeletal muscle-derived CD146 PCs and MECs were isolated and purified by multiparameter flow cytometry and their biological characteristics were identified. The coculture system for CD34 cells with CD146 PCs and MECs as trophoblastic layer, and BM-MSCs as positive control, was established in vitro, respectively. The main outcome measures, including the number and immunophenotype of the cells, the colony formation ability, the expression levels of cytokines were analyzed and compared at 1, 2, and 4 weeks after coculture. CD146 PCs and MECs were isolated by multiparameter flow cytometry and their purity of was 92.55% ± 0.55% and 96.60% ± 1.14% ( = 18), respectively. Both of the cells could be differentiated into osteoblasts, chondrocytes, adipocytes, and myocytes. Compared with the positive control group of BM-MSCs, the experimental group of CD146 PCs and MECs showed no significant differences in cell number, colony formation ability and immunophenotype (CD45, CD34 CD33, CD14, and CD10/CD19; > 0.05, = 5), separately. The expression levels of cytokines in the culture supernatants of CD146 PCs group, MECs group, and BM-MSCs group were measured by ELISA. The expression levels of TPO, IFN-γ, HGF, MCSF, and SCF cytokines were different among CD146 PCs, MECs, and human BM-MSCs ( < 0.05, = 3). Due to the no nourishing feeder layer in culture system, the number of CD34 cells decreased significantly in the 1st week and no cells survived in the 2nd week. Therefore, the cell immunophenotype and colony analysis and the expression levels of cytokines could not be performed. In summary, CD146 PCs and MECs from human skeletal muscle, like human BM-MSCs, have hematopoietic support capacity in vitro.
人体正常的造血功能依赖于造血干/祖细胞(HSPCs)与支持造血细胞生长发育的间充质干细胞(MSCs)之间的相互作用。然而,从骨髓中分离间充质干细胞存在一定局限性,研究人员已将注意力转向骨髓外的基质细胞。作为人体最大的器官,骨骼肌组织储存着多种肌肉来源的血管干/祖细胞,包括肌肉来源的周细胞/血管周围细胞(MD-PCs)和骨骼肌来源的肌内皮细胞(MECs)。研究表明,MD-PCs和MECs与骨髓来源的间充质干细胞(BM-MSCs)相似,它们表达间充质干细胞的表面标志物,具有多向分化潜能。然而,关于MD-PCs和MECs是否像间充质干细胞一样能够支持HSPCs的扩增/增殖、分化以及可能的造血调控机制,相关研究极少,因此这些细胞的造血支持作用仍有待研究。为了鉴定从人骨骼肌中分离出的CD146阳性的周细胞和肌内皮细胞的生物学特性,并研究它们在体外对脐带血(UCB)CD34细胞的支持作用。通过多参数流式细胞术分离并纯化人骨骼肌来源的CD146阳性的周细胞和肌内皮细胞,并鉴定其生物学特性。分别建立以CD146阳性的周细胞和肌内皮细胞作为滋养层、BM-MSCs作为阳性对照的CD34细胞共培养体系。在共培养1、2和4周后,分析并比较主要观察指标,包括细胞数量和免疫表型、集落形成能力、细胞因子表达水平。通过多参数流式细胞术分离出CD146阳性的周细胞和肌内皮细胞,其纯度分别为92.55%±0.55%和96.60%±1.14%(n = 18)。两种细胞均可分化为成骨细胞、软骨细胞、脂肪细胞和肌细胞。与BM-MSCs阳性对照组相比,CD146阳性的周细胞和肌内皮细胞实验组在细胞数量、集落形成能力和免疫表型(CD45、CD34、CD33、CD14和CD10/CD19;P>0.05,n = 5)方面均无显著差异。采用酶联免疫吸附测定法检测CD146阳性的周细胞组、肌内皮细胞组和BM-MSCs组培养上清液中细胞因子的表达水平。CD146阳性的周细胞、肌内皮细胞和人BM-MSCs中TPO、IFN-γ、HGF、MCSF和SCF细胞因子的表达水平存在差异(P<0.05,n = 3)。由于培养体系中没有滋养层,CD34细胞数量在第1周显著减少,第2周无细胞存活。因此,无法进行细胞免疫表型和集落分析以及细胞因子表达水平检测。综上所述,人骨骼肌来源的CD146阳性的周细胞和肌内皮细胞与人类BM-MSCs一样,在体外具有造血支持能力。