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首页> 外文期刊>Developmental cell >Poised Regeneration of Zebrafish Melanocytes Involves Direct Differentiation and Concurrent Replenishment of Tissue-Resident Progenitor Cells
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Poised Regeneration of Zebrafish Melanocytes Involves Direct Differentiation and Concurrent Replenishment of Tissue-Resident Progenitor Cells

机译:斑马鱼黑素细胞的蓄势再生涉及组织常驻祖细胞的直接分化和同时补充。

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摘要

Efficient regeneration following injury is critical for maintaining tissue function and enabling organismal survival. Cells reconstituting damaged tissue are often generated from resident stem or progenitor cells or from cells that have dedifferentiated and become proliferative. While lineage-tracing studies have defined cellular sources of regeneration in many tissues, the process by which these cells execute the regenerative process is largely obscure. Here, we have identified tissue-resident progenitor cells that mediate regeneration of zebrafish stripe melanocytes and defined how these cells reconstitute pigmentation. Nearly all regeneration melanocytes arise through direct differentiation of progenitor cells. Wnt signaling is activated prior to differentiation, and inhibition of Wnt signaling impairs regeneration. Additional progenitors divide symmetrically to sustain the pool of progenitor cells. Combining direct differentiation with symmetric progenitor divisions may serve as a means to rapidly repair injured tissue while preserving the capacity to regenerate.
机译:受伤后的高效再生对于维持组织功能和实现机体生存至关重要。重建受损组织的细胞通常由常驻干细胞或祖细胞或已去分化并增殖的细胞产生。虽然沿袭追踪研究已经定义了许多组织中再生的细胞来源,但是这些细胞执行再生过程的过程在很大程度上是模糊的。在这里,我们确定了介导斑马鱼条纹黑素细胞再生的组织驻留祖细胞,并定义了这些细胞如何重构色素沉着。几乎所有的再生黑素细胞都是通过祖细胞的直接分化产生的。 Wnt信号在分化之前被激活,并且抑制Wnt信号会损害再生。其他祖细胞对称分裂以维持祖细胞库。将直接分化与对称祖细胞分裂相结合可作为一种快速修复受损组织,同时保留再生能力的方法。

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