Self-assembly of differentiated progenitor cells facilitates spheroid human skin organoid formation and planar skin regeneration

细胞生物学 球体 诱导多能干细胞 祖细胞 类有机物 再生(生物学) 移植 人体皮肤 再生医学 干细胞 间质细胞 生物 化学 免疫学 细胞培养 癌症研究 胚胎干细胞 医学 生物化学 遗传学 基因 外科
作者
Patricia Ebner‐Peking,Linda Krisch,Martin Wolf,Sarah Hochmann,Anna Hoog,Balázs Vári,Katharina Muigg,Rodolphe Poupardin,Cornelia Scharler,Sabine Schmidhuber,Elisabeth Russe,Harald Stachelscheid,Achim Schneeberger,Katharina Schallmoser,Dirk Strunk
出处
期刊:Theranostics [Ivyspring International Publisher]
卷期号:11 (17): 8430-8447 被引量:72
标识
DOI:10.7150/thno.59661
摘要

Self-assembly of solid organs from single cells would greatly expand applicability of regenerative medicine. Stem/progenitor cells can self-organize into micro-sized organ units, termed organoids, partially modelling tissue function and regeneration. Here we demonstrated 3D self-assembly of adult and induced pluripotent stem cell (iPSC)-derived fibroblasts, keratinocytes and endothelial progenitors into both, planar human skin in vivo and a novel type of spheroid-shaped skin organoids in vitro, under the aegis of human platelet lysate. Methods: Primary endothelial colony forming cells (ECFCs), skin fibroblasts (FBs) and keratinocytes (KCs) were isolated from human tissues and polyclonally propagated under 2D xeno-free conditions. Human tissue-derived iPSCs were differentiated into endothelial cells (hiPSC-ECs), fibroblasts (hiPSC-FBs) and keratinocytes (hiPSC-KCs) according to efficiency-optimized protocols. Cell identity and purity were confirmed by flow cytometry and clonogenicity indicated their stem/progenitor potential. Triple cell type floating spheroids formation was promoted by human platelet-derived growth factors containing culture conditions, using nanoparticle cell labelling for monitoring the organization process. Planar human skin regeneration was assessed in full-thickness wounds of immune-deficient mice upon transplantation of hiPSC-derived single cell suspensions. Results: Organoids displayed a distinct architecture with surface-anchored keratinocytes surrounding a stromal core, and specific signaling patterns in response to inflammatory stimuli. FGF-7 mRNA transfection was required to accelerate keratinocyte long-term fitness. Stratified human skin also self-assembled within two weeks after either adult- or iPSC-derived skin cell-suspension liquid-transplantation, healing deep wounds of mice. Transplant vascularization significantly accelerated in the presence of co-transplanted endothelial progenitors. Mechanistically, extracellular vesicles mediated the multifactorial platelet-derived trophic effects. No tumorigenesis occurred upon xenografting. Conclusion: This illustrates the superordinate progenitor self-organization principle and permits novel rapid 3D skin-related pharmaceutical high-content testing opportunities with floating spheroid skin organoids. Multi-cell transplant self-organization facilitates development of iPSC-based organ regeneration strategies using cell suspension transplantation supported by human platelet factors.
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