Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto, Ontario, Canada M5S 3ES.
Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada M5S 3G9.
Nat Commun. 2017 May 25;8:15380. doi: 10.1038/ncomms15380.
Efforts to recapitulate haematopoiesis, a process guided by spatial and temporal inductive signals, to generate haematopoietic progenitors from human pluripotent stem cells (hPSCs) have focused primarily on exogenous signalling pathway activation or inhibition. Here we show haemogenic niches can be engineered using microfabrication strategies by micropatterning hPSC-derived haemogenic endothelial (HE) cells into spatially-organized, size-controlled colonies. CD34+VECAD+ HE cells were generated with multi-lineage potential in serum-free conditions and cultured as size-specific haemogenic niches that displayed enhanced blood cell induction over non-micropatterned cultures. Intra-colony analysis revealed radial organization of CD34 and VECAD expression levels, with CD45+ blood cells emerging primarily from the colony centroid area. We identify the induced interferon gamma protein (IP-10)/p-38 MAPK signalling pathway as the mechanism for haematopoietic inhibition in our culture system. Our results highlight the role of spatial organization in hPSC-derived blood generation, and provide a quantitative platform for interrogating molecular pathways that regulate human haematopoiesis.
我们利用微制造策略,通过将人多能干细胞(hPSC)来源的造血内皮(HE)细胞微图案化,将其制成空间组织、大小可控的集落,从而构建出类血腔。在无血清条件下生成具有多能性的 CD34+VECAD+HE 细胞,并培养成具有特定大小的类血腔,其血细胞诱导能力明显高于非图案化培养物。集落内分析显示 CD34 和 VECAD 表达水平呈放射状组织,CD45+血细胞主要从集落中心区域出现。我们确定诱导的干扰素γ蛋白(IP-10)/p-38 MAPK 信号通路是我们培养系统中造血抑制的机制。我们的研究结果突出了空间组织在 hPSC 源性血液生成中的作用,并提供了一个定量平台,用于研究调节人类造血的分子途径。