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Apelin 受体信号在小鼠胚胎干细胞来源的中胚层细胞和间充质干细胞的迁移和分化中的调节作用。

Regulatory role of apelin receptor signaling in migration and differentiation of mouse embryonic stem cell-derived mesoderm cells and mesenchymal stem/stromal cells.

机构信息

Faculty of Engineering, Genetics and Bioengineering Department, Yeditepe University, Istanbul, Turkey.

出版信息

Hum Cell. 2023 Mar;36(2):612-630. doi: 10.1007/s13577-023-00861-2. Epub 2023 Jan 24.

Abstract

Mesoderm-derived cells, including bone, muscle, and mesenchymal stem/stromal cells (MSCs), constitute various parts of vertebrate body. Cell therapy with mesoderm specification in vitro may be a promising treatment for diseases affecting organs of mesodermal origin. Repair and regeneration of damaged organs with in vitro generation of mesoderm-derived tissues and MSCs hold a great potential for regenerative therapy. Therefore, understanding the signaling pathways involving mesoderm and mesoderm-derived cellular differentiation is important. Previous findings indicated the importance of Apelin receptor (Aplnr) signaling, during embryonic development, in gastrulation, cell migration, and differentiation. Nevertheless, regulatory role of Aplnr pathway in differentiation of mesoderm and mesoderm-derived MSCs remains unclear. In the current study, we tried to elucidate the role of Aplnr signaling during mesoderm cell migration and differentiation from mouse embryonic stem cells (mESCs). By activating and suppressing Aplnr signaling pathway via peptide, small molecule, and genetic modifications including siRNA- and shRNA-mediated knockdown and CRISPR-Cas9-mediated knockout (KO), we revealed that Aplnr signaling not only induces migration of cells during germ layer formation but also enhances mesoderm differentiation through FGF/MAPK pathway. Antibody array and LC/MS protein profiling data demonstrated that Apelin-13 treatment enhanced cell cycle, EGFR, FGF, Wnt, and Integrin signaling pathway proteins. Furthermore, Aplelin-13 treatment improved MSC characteristics, with mesenchymal phenotype and high expression of MSC markers, and silencing Aplnr signaling components resulted in significantly reduced expression of MSC markers. Also, Aplnr signaling activity enhanced proliferation and survival of the cells during MSC derivation from mesoderm.

摘要

中胚层来源的细胞,包括骨骼、肌肉和间充质干细胞(MSCs),构成了脊椎动物身体的各个部分。在体外进行中胚层特化的细胞治疗可能是治疗源于中胚层器官疾病的一种有前途的方法。利用体外生成中胚层来源的组织和 MSCs 来修复和再生受损器官,为再生疗法带来了巨大的潜力。因此,了解涉及中胚层和中胚层来源的细胞分化的信号通路非常重要。先前的研究结果表明,Apelin 受体(Aplnr)信号在胚胎发育过程中的原肠胚形成、细胞迁移和分化中具有重要作用。然而,Aplnr 通路在中胚层和中胚层来源的 MSCs 分化中的调节作用仍不清楚。在本研究中,我们试图阐明 Aplnr 信号在小鼠胚胎干细胞(mESCs)向中胚层细胞迁移和分化过程中的作用。通过肽、小分子以及基因修饰(包括 siRNA 和 shRNA 介导的敲低和 CRISPR-Cas9 介导的敲除)来激活和抑制 Aplnr 信号通路,我们发现 Aplnr 信号不仅诱导了胚层形成过程中的细胞迁移,还通过 FGF/MAPK 通路增强了中胚层分化。抗体阵列和 LC/MS 蛋白质谱数据分析表明,Apelin-13 处理增强了细胞周期、EGFR、FGF、Wnt 和整合素信号通路蛋白。此外,Apelin-13 处理改善了 MSC 特性,表现为间充质表型和 MSC 标志物的高表达,而沉默 Aplnr 信号通路成分则导致 MSC 标志物的表达显著降低。此外,Aplnr 信号通路活性增强了中胚层来源的 MSC 细胞的增殖和存活。

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