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Chemical Cocktail Induces Hematopoietic Reprogramming and Expands Hematopoietic Stem/Progenitor Cells

机译:化学鸡尾酒诱导造血重编程并扩大造血干/祖细胞。

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摘要

Generation of hematopoietic stem/progenitor cells (HSPCs) via cell expansion or cell reprogramming has been widely achieved by overexpression of transcription factors. Herein, it is reported that without introducing exogenous genes, mouse fibroblasts can be reprogrammed into hemogenic cells based on lineage tracing analysis, which further develop into hematopoietic cells, by treatment of cocktails of chemical compounds. The chemical cocktails also reprogram differentiated hematopoietic cells back into HSPC‐like cells. Most importantly, the chemical cocktails enabling hematopoietic reprogramming robustly promote HSPC proliferation ex vivo. The expanded HSPCs acquire enhanced capacity of hematopoietic reconstruction in vivo. Single‐cell sequencing analysis verifies the expansion of HSPCs and the cell reprogramming toward potential generation of HSPCs at the same time by the chemical cocktail treatment. Thus, the proof‐of‐concept findings not only demonstrate that hematopoietic reprogramming can be achieved by chemical compounds but also provide a promising strategy for acquisition of HSPCs by chemical cocktail‐enabled double effects.
机译:通过细胞扩增或细胞重编程,造血干/祖细胞(HSPC)的生成已通过转录因子的过表达而广泛实现。在此,据报道,在不引入外源基因的情况下,可以基于谱系示踪分析将小鼠成纤维细胞重编程为造血细胞,通过处理化合物的混合物进一步将其发展为造血细胞。化学混合物还可以将分化的造血细胞重新编程为HSPC样细胞。最重要的是,能够进行造血重编程的化学混合物能强有力地促进离体HSPC增殖。扩展的HSPCs在体内获得增强的造血重建能力。单细胞测序分析可通过化学混合物处理来验证HSPC的扩增以及细胞向潜在HSPC的重新编程。因此,概念验证的发现不仅表明可以通过化合物实现造血重编程,而且还为通过化学混合物使能的双重效应获得HSPC提供了一种有前途的策略。

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