il - 11对成人肺泡类器官形成有负面影响

R. Kortekaas, J. Burgess, M. Webster, R. Gosens
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引用次数: 1

摘要

简介:最近有报道称,il - 11可诱导肌成纤维细胞的形成和胶原的分泌,而其皮下给药可促进小鼠肺纤维化的发展。对于il - 11如何影响与上皮修复相关的上皮-间质通讯,以及体内哪些细胞类型是il - 11的主要产生者和应答者,我们知之甚少。在这里,我们的目的是研究il - 11在肺泡再生中的作用。方法:采用类器官模型研究上皮祖细胞的行为,该模型由原代小鼠CD31-CD45-Epcam+细胞与CCL206成纤维细胞或原代人成纤维细胞共培养组成。14天后,测定类器官的数量和大小,用免疫荧光染色法检测表面活性蛋白C (SPC)和乙酰化微管蛋白(ACT),确定肺泡类器官与气道类器官的区别。对人肺组织进行il - 11和il - 11r免疫组化染色,观察il - 11信号的产生细胞和应答细胞。结果:rhIL11的存在显著降低了小鼠和人类器官的形成数量,并呈浓度依赖性,并且rhIL11降低了SPC+类器官的比例,而增加了SPC- act -类器官的比例。类器官大小不受影响。最后,免疫组化结果显示,IL11R主要存在于平滑肌、气道上皮和内皮中,而IL11主要存在于气道上皮、肺泡2型细胞和巨噬细胞中。结论:il - 11可能通过抑制上皮祖细胞的激活和抑制成熟肺泡细胞类型的形成而损害上皮祖细胞的功能。IL11R的定位表明,IL11对间充质细胞的激活可能有助于观察到对祖细胞功能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IL11 negatively impacts adult lung alveolar organoid formation
Introduction: IL11 was recently reported to induce the formation of myofibroblasts and their secretion of collagen, while its subcutaneous administration drives the development of pulmonary fibrosis in mice. Less is known as to how IL11 affects epithelial-mesenchymal communication associated with epithelial repair, and regarding which cell types are the main producers and responders to IL11 in vivo. Here we aim to investigate the role of IL11 in alveolar regeneration. Methods: Epithelial progenitor cell behavior was studied using an organoid model, comprised of a co-culture of primary mouse CD31-CD45-Epcam+ cells with either CCL206 fibroblasts or primary human fibroblasts. After 14 days, the number and size of the organoids were determined, and immunofluorescent staining for Surfactant protein C (SPC) and acetylated tubulin (ACT) was performed to define alveolar vs airway organoids. Immunohistochemical staining of IL11 and IL11R was performed on human lung tissue to observe producer and responder cells of IL11 signaling. Results: The presence of rhIL11 significantly decreased the number of both mouse and human organoids formed in a concentration-dependent manner, and the fraction of SPC+ organoids was reduced by rhIL11 whereas the fraction of SPC-ACT- organoids was increased. Organoid size was not affected. Finally, immunohistochemistry revealed that IL11R is found in smooth muscle, airway epithelium and endothelium, whereas IL11 was primarily observed in airway epithelium, alveolar type 2 cells and macrophages. Conclusions: IL11 may impair epithelial progenitor function by suppressing their activation and by suppressing the formation of mature alveolar cell types. IL11R localization suggests mesenchymal activation by IL11 may contribute to observed effects on progenitor function.
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