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Sox9+ ductal cells are multipotent progenitors throughout development but do not produce new endocrine cells in the normal or injured adult pancreas

机译:Sox9 +导管细胞是整个发育过程中的多能祖细胞,但不会在正常或受损的成人胰腺中产生新的内分泌细胞

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摘要

One major unresolved question in the field of pancreas biology is whether ductal cells have the ability to generate insulin-producing β-cells. Conclusive examination of this question has been limited by the lack of appropriate tools to efficiently and specifically label ductal cells in vivo. We generated Sox9CreERT2 mice, which, during adulthood, allow for labeling of an average of 70% of pancreatic ductal cells, including terminal duct/centroacinar cells. Fate-mapping studies of the Sox9+ domain revealed endocrine and acinar cell neogenesis from Sox9+ cells throughout embryogenesis. Very small numbers of non-β endocrine cells continue to arise from Sox9+ cells in early postnatal life, but no endocrine or acinar cell neogenesis from Sox9+ cells occurs during adulthood. In the adult pancreas, pancreatic injury by partial duct ligation (PDL) has been suggested to induce β-cell regeneration from a transient Ngn3+ endocrine progenitor cell population. Here, we identify ductal cells as a cell of origin for PDL-induced Ngn3+ cells, but fail to observe β-cell neogenesis from duct-derived cells. Therefore, although PDL leads to activation of Ngn3 expression in ducts, PDL does not induce appropriate cues to allow for completion of the entire β-cell neogenesis program. In conclusion, although endocrine cells arise from the Sox9+ ductal domain throughout embryogenesis and the early postnatal period, Sox9+ ductal cells of the adult pancreas no longer give rise to endocrine cells under both normal conditions and in response to PDL.
机译:胰腺生物学领域尚未解决的一个主要问题是导管细胞是否具有产生胰岛素的β细胞的能力。由于缺乏在体内有效和特异性标记导管细胞的适当工具,该问题的结论性检查受到了限制。我们生成了Sox9CreERT2小鼠,该小鼠在成年期可以标记平均70%的胰导管细胞,包括终末导管/中央腺泡细胞。 Sox9 +域的命运映射研究显示整个胚胎发生过程中,Sox9 +细胞的内分泌和腺泡细胞新生。在出生后早期,非常少量的非β内分泌细胞继续由Sox9 +细胞产生,但是在成年期没有发生Sox9 +细胞的内分泌或腺泡细胞新生。在成年胰腺中,已经提出了通过部分导管结扎(PDL)引起的胰腺损伤可诱导瞬时Ngn3 +内分泌祖细胞群体中的β细胞再生。在这里,我们将导管细胞鉴定为PDL诱导的Ngn3 +细胞的起源细胞,但未能观察到导管衍生细胞产生的β细胞新生。因此,尽管PDL导致导管中Ngn3表达的激活,但PDL不会诱导适当的提示来完成整个β细胞新生程序。总之,尽管在整个胚胎发生和出生后早期阶段,内分泌细胞均来自Sox9 +导管结构域,但在正常条件下以及对PDL的响应下,成年胰腺的Sox9 +导管细胞不再产生内分泌细胞。

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