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Dissecting Engineered Cell Types and Enhancing Cell Fate Conversion via CellNet

机译:剖析工程细胞类型并通过CellNet增强细胞命运转换

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Engineering clinically relevant cells in vitro holds promise for regenerative medicine, but most protocols fail to faithfully recapitulate target cell properties. To address this, we developed CellNet, a network biology platform that determines whether engineered cells are equivalent to their target tissues, diagnoses aberrant gene regulatory networks, and prioritizes candidate transcriptional regulators to enhance engineered conversions. Using CellNet, we improved B cell to macrophage conversion, transcriptionally and functionally, by knocking down predicted B cell regulators. Analyzing conversion of fibroblasts to induced hepatocytes (iHeps), CellNet revealed an unexpected intestinal program regulated by the master regulator Cdx2. We observed longterm functional engraftment of mouse colon by iHeps, thereby establishing their broader potential as endoderm progenitors and demonstrating direct conversion of fibroblasts into intestinal epithelium. Our studies illustrate how CellNet can be employed to improve direct conversion and to uncover unappreciated properties of engineered cells.
机译:在体外工程化临床相关细胞有望为再生医学带来希望,但是大多数方案都无法忠实地概括靶细胞的特性。为了解决这个问题,我们开发了CellNet,这是一个网络生物学平台,可以确定工程细胞是否等同于其靶组织,诊断异常基因调控网络,并优先考虑候选转录调控因子以增强工程转化。使用CellNet,我们通过敲低预测的B细胞调节因子,从转录和功能上改善了B细胞到巨噬细胞的转化。通过分析成纤维细胞向诱导肝细胞(iHeps)的转化,CellNet发现了由主调节剂Cdx2调节的意外肠程序。我们观察到iHeps对小鼠结肠的长期功能移植,从而确立了它们作为内胚层祖细胞的广泛潜力,并证明了成纤维细胞直接转化为肠上皮。我们的研究表明,可以利用CellNet来改善直接转化并发现工程细胞的未认识特性。

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