Department of Developmental Biology, Erasmus Medical Center, Rotterdam, The Netherlands; Oncode Institute, Erasmus Medical Center Cancer Institute, Rotterdam, The Netherlands.
Institute for Computational Genomics, Rheinisch-Westfälische Technische Hochschule (RWTH), Aachen University, Aachen, Germany.
Exp Hematol. 2022 Jun;110:28-33. doi: 10.1016/j.exphem.2022.03.010. Epub 2022 Mar 25.
Within the heterogenous pool of bone marrow stromal cells, mesenchymal stromal cells (MSCs) are of particular interest because of their hematopoiesis-supporting capacities, contribution to disease progression, therapy resistance, and leukemic initiation. Cultured bone marrow-derived stromal cells (cBMSCs) are used for in vitro modeling of hematopoiesis-stroma interactions, validation of disease mechanisms, and screening for therapeutic targets. Here, we place cBMSCs (mouse and human) in a bone marrow tissue context by systematically comparing the transcriptome of plastic-adherent cells on a single-cell level with in vivo counterparts. Cultured BMSCs encompass a rather homogenous cell population, independent of the isolation method used and, although still possessing hematopoiesis-supporting capacity, are distinct from freshly isolated MSCs and more akin to in vivo fibroblast populations. Informed by combined cell trajectories and pathway analyses, we illustrate that TGFb inhibition in vitro can preserve a more "MSC"-like phenotype.
在骨髓基质细胞的异质群体中,间充质基质细胞(MSCs)因其具有造血支持能力、对疾病进展的贡献、治疗耐药性和白血病起始作用而备受关注。培养的骨髓来源基质细胞(cBMSCs)用于体外造血-基质相互作用建模、疾病机制验证和治疗靶点筛选。在这里,我们通过在单细胞水平上系统比较塑料贴附细胞与体内对应物的转录组,将 cBMSCs(小鼠和人类)置于骨髓组织环境中。培养的 BMSCs 包含一个相当同质的细胞群体,与所使用的分离方法无关,尽管它们仍然具有造血支持能力,但与新鲜分离的 MSC 不同,更类似于体内成纤维细胞群体。通过结合细胞轨迹和途径分析,我们说明体外 TGFb 抑制可以保留更“MSC 样”的表型。