Department of Plastic Surgery and Regenerative Medicine, Fujian Medical University Union Hospital, Fuzhou, 350001, China.
Department of Plastic Surgery and Regenerative Medicine Institute, Fujian Medical University, Fuzhou, 350001, China.
Adv Sci (Weinh). 2023 Feb;10(4):e2204786. doi: 10.1002/advs.202204786. Epub 2022 Dec 11.
The highly heterogeneous characteristics of Wharton's jelly mesenchymal stem cells (WJ-MSCs) may be responsible for the poor clinical outcomes and poor reproducibility of treatments based on WJ-MSCs. Exploration of WJ-MSC heterogeneity with multimodal single-cell technologies will aid in establishing accurate MSC subtyping and developing screening protocols for dominant functional subpopulations. Here, the characteristics of WJ-MSCs are systematically analyzed by single cell and spatial transcriptome sequencing. Single-cell transcriptomics analysis identifies four WJ-MSC subpopulations, namely proliferative_MSCs, niche-supporting_MSCs, metabolism-related_MSCs and biofunctional-type_MSCs. Furthermore, the transcriptome, cellular heterogeneity, and cell-state trajectories of these subpopulations are characterized. Intriguingly, the biofunctional-type MSCs (marked by S100A9, CD29, and CD142) selected in this study exhibit promising wound repair properties in vitro and in vivo. Finally, by integrating omics data, it has been found that the S100A9 CD29 CD142 subpopulation is more enriched in the fetal segment of the umbilical cord, suggesting that this subpopulation deriving from the fetal segment may have potential for developing into an ideal therapeutic agent for wound healing. Overall, the presented study comprehensively maps the heterogeneity of WJ-MSCs and provides an essential resource for future development of WJ-MSC-based drugs.
牙髓间质干细胞(WJ-MSCs)具有高度异质性的特点,这可能是基于 WJ-MSCs 的治疗方法临床效果不佳且重现性差的原因。利用多模态单细胞技术探索 WJ-MSC 的异质性,有助于建立准确的 MSC 亚型分类,并开发针对优势功能亚群的筛选方案。在这里,我们通过单细胞和空间转录组测序系统地分析了 WJ-MSCs 的特征。单细胞转录组学分析鉴定出了四个 WJ-MSC 亚群,分别是增殖性 MSC、龛支持性 MSC、代谢相关 MSC 和生物功能型 MSC。此外,还对这些亚群的转录组、细胞异质性和细胞状态轨迹进行了表征。有趣的是,本研究中选择的生物功能型 MSC(由 S100A9、CD29 和 CD142 标记)在体外和体内均表现出有希望的伤口修复特性。最后,通过整合组学数据,发现 S100A9 CD29 CD142 亚群在脐带的胎儿段中更为丰富,这表明该亚群可能来源于胎儿段,具有开发为伤口愈合理想治疗剂的潜力。总的来说,本研究全面描绘了 WJ-MSCs 的异质性,为未来基于 WJ-MSCs 的药物开发提供了重要资源。