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Fgf10 Signaling in Lung Development, Homeostasis, Disease, and Repair After Injury.Fgf10信号通路在肺发育、稳态、疾病及损伤后修复中的作用
Front Genet. 2018 Sep 25;9:418. doi: 10.3389/fgene.2018.00418. eCollection 2018.
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Optimising experimental research in respiratory diseases: an ERS statement.优化呼吸疾病的实验研究:ERS 声明。
Eur Respir J. 2018 May 17;51(5). doi: 10.1183/13993003.02133-2017. Print 2018 May.
3
Cartilage rings contribute to the proper embryonic tracheal epithelial differentiation, metabolism, and expression of inflammatory genes.软骨环有助于胚胎期气管上皮的正常分化、代谢以及炎症基因的表达。
Am J Physiol Lung Cell Mol Physiol. 2017 Feb 1;312(2):L196-L207. doi: 10.1152/ajplung.00127.2016. Epub 2016 Dec 9.
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Rare Case of Unilateral Hypoplasia of Lung with Associated Ventricular Mass in an Adult.成人单侧肺发育不全合并心室肿物的罕见病例。
J Clin Diagn Res. 2016 Jul;10(7):OD05-7. doi: 10.7860/JCDR/2016/19591.8138. Epub 2016 Jul 1.
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TGF-β1 promotes scar fibroblasts proliferation and transdifferentiation via up-regulating MicroRNA-21.TGF-β1 通过上调 MicroRNA-21 促进瘢痕成纤维细胞增殖和转分化。
Sci Rep. 2016 Aug 24;6:32231. doi: 10.1038/srep32231.
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Pulmonary Hypoplasia Induced by Oligohydramnios: Findings from Animal Models and a Population-Based Study.羊水过少所致肺发育不全:来自动物模型和一项基于人群研究的结果
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A Positive TGF-β/c-KIT Feedback Loop Drives Tumor Progression in Advanced Primary Liver Cancer.一个正向转化生长因子-β/干细胞生长因子受体反馈环驱动晚期原发性肝癌的肿瘤进展。
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Halting pro-survival autophagy by TGFβ inhibition in bone marrow fibroblasts overcomes bortezomib resistance in multiple myeloma patients.通过 TGFβ 抑制来阻断骨髓成纤维细胞中的促生存自噬作用,可克服多发性骨髓瘤患者对硼替佐米的耐药性。
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Mesenchymal adenomatous polyposis coli plays critical and diverse roles in regulating lung development.间充质腺瘤性结肠息肉病在调节肺发育中发挥着关键且多样的作用。
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The extracellular matrix and transforming growth factor-β1: Tale of a strained relationship.细胞外基质与转化生长因子-β1:一段紧张关系的故事。
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胚胎肺中 TGF-β1 的间质特异性缺失破坏了分支形态发生并诱导肺发育不全。

Mesenchyme-specific deletion of Tgf-β1 in the embryonic lung disrupts branching morphogenesis and induces lung hypoplasia.

机构信息

Developmental Biology and Regenerative Medicine Program, The Saban Research Institute, Children's Hospital Los Angeles, 4661 Sunset Boulevard, Los Angeles, CA, 90027, USA.

Department of Cell Biology and Anatomy, School of Medicine, University of South Carolina, Columbia, SC, 29202, USA.

出版信息

Lab Invest. 2019 Sep;99(9):1363-1375. doi: 10.1038/s41374-019-0256-3. Epub 2019 Apr 25.

DOI:10.1038/s41374-019-0256-3
PMID:31028279
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7422700/
Abstract

Proper lung development depends on the precise temporal and spatial expression of several morphogenic factors, including Fgf10, Fgf9, Shh, Bmp4, and Tgf-β. Over- or under-expression of these molecules often leads to aberrant embryonic or postnatal lung development. Herein, we deleted the Tgf-β1 gene specifically within the lung embryonic mesenchymal compartment at specific gestational stages to determine the contribution of this cytokine to lung development. Mutant embryos developed severe lung hypoplasia and died at birth due to the inability to breathe. Despite the markedly reduced lung size, proliferation and differentiation of the lung epithelium was not affected by the lack of mesenchymal expression of the Tgf-β1 gene, while apoptosis was significantly increased in the mutant lung parenchyma. Lack of mesenchymal expression of the Tgf-β1 gene was also associated with reduced lung branching morphogenesis, with accompanying inhibition of the local FGF10 signaling pathway as well as abnormal development of the vascular system. To shed light on the mechanism of lung hypoplasia, we quantified the phosphorylation of 226 proteins in the mutant E12.5 lung compared with control. We identified five proteins, Hrs, Vav2, c-Kit, the regulatory subunit of Pi3k (P85), and Fgfr1, that were over- or under-phosphorylated in the mutant lung, suggesting that they could be indispensable effectors of the TGF-β signaling program during embryonic lung development. In conclusion, we have uncovered novel roles of the mesenchyme-specific Tgf-β1 ligand in embryonic mouse lung development and generated a mouse model that may prove helpful to identify some of the key pathogenic mechanisms underlying lung hypoplasia in humans.

摘要

适当的肺发育取决于几种形态发生因子的精确时空表达,包括 Fgf10、Fgf9、Shh、Bmp4 和 Tgf-β。这些分子的过度或不足表达通常会导致胚胎或产后肺发育异常。在此,我们在特定的妊娠阶段特异性地在肺胚胎间充质隔室内删除了 Tgf-β1 基因,以确定该细胞因子对肺发育的贡献。突变胚胎由于无法呼吸而出现严重的肺发育不全,并在出生时死亡。尽管肺体积明显减小,但缺乏间质表达的 Tgf-β1 基因对肺上皮的增殖和分化没有影响,而突变肺实质中的细胞凋亡明显增加。间质表达的 Tgf-β1 基因缺失也与肺分支形态发生减少有关,同时伴随局部 FGF10 信号通路的抑制以及血管系统的异常发育。为了阐明肺发育不全的机制,我们比较了突变的 E12.5 肺与对照肺中 226 种蛋白质的磷酸化程度。我们鉴定了五种蛋白质,Hrs、Vav2、c-Kit、PI3K 的调节亚基(P85)和 Fgfr1,它们在突变肺中过度或不足磷酸化,表明它们可能是胚胎肺发育过程中 TGF-β 信号通路不可或缺的效应物。总之,我们揭示了间质特异性 Tgf-β1 配体在胚胎鼠肺发育中的新作用,并产生了一种可能有助于鉴定人类肺发育不全的一些关键致病机制的小鼠模型。