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Hedgehog/Wnt 反馈支持膀胱上皮干细胞的再生增殖。

Hedgehog/Wnt feedback supports regenerative proliferation of epithelial stem cells in bladder.

机构信息

Department of Developmental Biology, Institute for Stem Cell Biology and Regenerative Medicine, Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

Nature. 2011 Apr 7;472(7341):110-4. doi: 10.1038/nature09851. Epub 2011 Mar 9.

Abstract

Epithelial integrity in metazoan organs is maintained through the regulated proliferation and differentiation of organ-specific stem and progenitor cells. Although the epithelia of organs such as the intestine regenerate constantly and thus remain continuously proliferative, other organs, such as the mammalian urinary bladder, shift from near-quiescence to a highly proliferative state in response to epithelial injury. The cellular and molecular mechanisms underlying this injury-induced mode of regenerative response are poorly defined. Here we show in mice that the proliferative response to bacterial infection or chemical injury within the bladder is regulated by signal feedback between basal cells of the urothelium and the stromal cells that underlie them. We demonstrate that these basal cells include stem cells capable of regenerating all cell types within the urothelium, and are marked by expression of the secreted protein signal Sonic hedgehog (Shh). On injury, Shh expression in these basal cells increases and elicits increased stromal expression of Wnt protein signals, which in turn stimulate the proliferation of both urothelial and stromal cells. The heightened activity of this signal feedback circuit and the associated increase in cell proliferation appear to be required for restoration of urothelial function and, in the case of bacterial injury, may help clear and prevent further spread of infection. Our findings provide a conceptual framework for injury-induced epithelial regeneration in endodermal organs, and may provide a basis for understanding the roles of signalling pathways in cancer growth and metastasis.

摘要

真核生物器官中的上皮完整性通过器官特异性干细胞和祖细胞的增殖和分化来维持。尽管肠道等器官的上皮不断再生,因此保持持续增殖,但其他器官,如哺乳动物的膀胱,在受到上皮损伤时会从近乎静止状态转变为高度增殖状态。这种损伤诱导的再生反应的细胞和分子机制尚未完全确定。在这里,我们在小鼠中表明,膀胱内细菌感染或化学损伤的增殖反应受到尿路上皮基底细胞和位于其下方的基质细胞之间信号反馈的调节。我们证明这些基底细胞包括能够再生尿路上皮所有细胞类型的干细胞,并且由分泌蛋白信号 Sonic hedgehog (Shh) 标记。在损伤时,这些基底细胞中的 Shh 表达增加,并引发基质中 Wnt 蛋白信号的表达增加,反过来又刺激尿路上皮和基质细胞的增殖。这种信号反馈回路的增强活性以及相关的细胞增殖增加似乎是恢复尿路上皮功能所必需的,并且在细菌损伤的情况下,可能有助于清除和防止感染进一步扩散。我们的发现为内胚层器官损伤诱导的上皮再生提供了一个概念框架,并可能为理解信号通路在癌症生长和转移中的作用提供基础。

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