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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Refuting the hypothesis that semaphorin‐3f/neuropilin‐2 exclude blood vessels from the cap mesenchyme in the developing kidney
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Refuting the hypothesis that semaphorin‐3f/neuropilin‐2 exclude blood vessels from the cap mesenchyme in the developing kidney

机译:反驳鼻腔蛋白-3F / neuropilin-2排除肿瘤中的肿瘤中的血管中的假设

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摘要

Background: During murine kidney development, new cortical blood vessels form and pattern in cycles that coincide with cycles of collecting duct branching and the accompanying splitting of the cap mesenchyme (nephron progenitor cell populations that “cap” collecting duct ends). At no point in the patterning cycle do blood vessels enter the cap mesenchyme. We hypothesized that the exclusion of blood vessels from the cap mesenchyme may be controlled, at least in part, by an anti‐angiogenic signal expressed by the cap mesenchyme cells. Results: We show that semaphorin‐3f (Sema3f), a known anti‐angiogenic factor, is expressed in cap mesenchymal cells and its receptor, neuropilin‐2 (Nrp2), is expressed by newly forming blood vessels in the cortex of the developing kidney. We hypothesized that Sema3f/Nrp2 signaling excludes vessels from the cap mesenchyme. Genetic ablation of Sema3f and of Nrp2 , however, failed to result in vessels invading the cap mesenchyme. Conclusions: Despite complementary expression patterns, our data suggest that Sema3f and Nrp2 are dispensable for the exclusion of vessels from the cap mesenchyme during kidney development. These results should provoke additional experiments to ascertain the biological significance of Sema3f/Nrp2 expression in the developing kidney. Developmental Dynamics 246:1047–1056, 2017 . ? 2017 Wiley Periodicals, Inc.
机译:背景:在鼠肾发育期间,新的皮质血管在循环中形成和图案,与收集管道分支的循环相一致,并且伴随帽间充质的伴随分裂(肾子祖细胞群“盖子”收集管道末端)。在图案化循环中没有任何点,血管进入帽间充质。我们假设可以至少部分地通过帽间充质细胞表达的抗血管生成信号来控制来自帽间充质细胞的血管。结果:我们表明,通过新形成肾脏皮质中的新形成血管表达了Quaphorin-3F(Sema3F),一种已知的抗血管生成因子,一种已知的抗血管生成因子。 。我们假设SEMA3F / NRP2信号传导不包括来自帽间充质的血管。然而,SEMA3F和NRP2的遗传烧蚀未能导致侵入帽间充质的血管。结论:尽管表达式互补模式,但我们的数据表明SEMA3F和NRP2可分配用于在肾发育期间从帽间充质中排除血管。这些结果应挑选额外的实验,以确定SEMA3F / NRP2表达在发育中的肾脏中的生物学意义。发展动力学246:2017年。还2017年Wiley期刊,Inc。

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