Department of Biology, Faculty of Sciences, Shahid Chamran University of Ahvaz, Ahvaz, Iran.
Department of Biology, Faculty of Sciences, Shahid Chamran University of Ahvaz, Ahvaz, Iran.
Tissue Cell. 2024 Apr;87:102331. doi: 10.1016/j.tice.2024.102331. Epub 2024 Feb 19.
The ex vivo expansion of hematopoietic stem cells, with both high quantities and quality, is considered a paramount issue in cell and gene therapy for hematological diseases. Complex interactions between the bone marrow microenvironment and hematopoietic stem cells reveal the importance of using 2D and 3D coculture as a physiological system simulator in the proliferation, differentiation, and homeostasis of HSCs. Herein, the capacity of mesenchymal stem cells derived from different sources to support the expansion and maintenance of HSPC was compared with each other. We evaluated the fold increase of HSPC, CD34 marker expression, cytokine secretion profile of different MSCs, and the frequency of hematopoietic colony-forming unit parameters. Our results show that there was no significant difference between adipose tissue-MSC, Wharton jelly-MSC, and Endometrial-MSCs in HSPC expansion (fold increase: 34.74±4.38 in Wj-MSC, 32.22±5.07 in AD-MSC, 25.9±1.27 in En-MSCs); However, there were significantly more than the expansion media alone (4.4±0.69). The results obtained from the cytokine secretion analysis also confirm these results. Also, there were significant differences in the clonogenicity of Wj-MSC, En-MSCs, and expansion media (CFU-GEMM: 7±1.73, 2.3±1.15, and 2.3±1.52), which indicated that Wj-MSC could significantly maintain the primitive state. As a result, using Wj-mesenchymal stem cells on a 3D coculture system effectively increases the HSPC expansion and maintains the colonization potential of hematopoietic stem cells.
体外扩增造血干细胞,同时兼顾数量和质量,被认为是细胞和基因治疗血液疾病的首要问题。骨髓微环境与造血干细胞之间的复杂相互作用表明,使用 2D 和 3D 共培养作为生理系统模拟器来增殖、分化和维持 HSCs 非常重要。在此,比较了不同来源的间充质干细胞支持 HSPC 扩增和维持的能力。我们评估了 HSPC 的扩增倍数、CD34 标志物表达、不同 MSC 的细胞因子分泌谱以及造血集落形成单位参数的频率。我们的结果表明,脂肪组织-MSC、Wharton 胶-MSC 和子宫内膜-MSC 在 HSPC 扩增方面没有显著差异(扩增倍数:Wj-MSC 为 34.74±4.38,AD-MSC 为 32.22±5.07,En-MSCs 为 25.9±1.27);然而,与单独的扩增培养基相比,有显著增加(4.4±0.69)。细胞因子分泌分析的结果也证实了这些结果。此外,Wj-MSC、En-MSCs 和扩增培养基的集落形成能力也存在显著差异(CFU-GEMM:7±1.73、2.3±1.15 和 2.3±1.52),这表明 Wj-MSC 可以显著维持原始状态。因此,在 3D 共培养系统中使用 Wj 间充质干细胞可有效增加 HSPC 的扩增,并维持造血干细胞的定植潜能。