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基质调节在小鼠中代偿性肺生长和祖细胞增殖中的作用。

Matrix modulation of compensatory lung regrowth and progenitor cell proliferation in mice.

机构信息

Tufts University Cummings School of Veterinary Medicine, North Grafton, Massachusetts, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2010 Feb;298(2):L158-68. doi: 10.1152/ajplung.90594.2008. Epub 2009 Nov 13.

Abstract

Mechanical stress is an important modulator of lung morphogenesis, postnatal lung development, and compensatory lung regrowth. The effect of mechanical stress on stem or progenitor cells is unclear. We examined whether proliferative responses of epithelial progenitor cells, including dually immunoreactive (CCSP and proSP-C) progenitor cells (CCSP+/SP-C+) and type II alveolar epithelial cells (ATII), are affected by physical factors found in the lung of emphysematics, including loss of elastic recoil, reduced elastin content, and alveolar destruction. Mice underwent single lung pneumonectomy (PNY) to modulate transpulmonary pressure (mechanical stress) and to stimulate lung regeneration. Control mice underwent sham thoracotomy. Plombage of different levels was employed to partially or completely abolish this mechanical stress. Responses to graded changes in transpulmonary pressure were assessed in elastin-insufficient mice (elastin +/-, ELN+/-) and elastase-treated mice with elastase-induced emphysema. Physiological regrowth, morphometry (linear mean intercept; Lmi), and the proliferative responses of CCSP+/SP-C+, Clara cells, and ATII were evaluated. Plombage following PNY significantly reduced transpulmonary pressure, regrowth, and CCSP+/SP-C+, Clara cell, and ATII proliferation following PNY. In the ELN+/- group, CCSP+/SP-C+ and ATII proliferation responses were completely abolished, although compensatory lung regrowth was not significantly altered. In contrast, in elastase-injured mice, compensatory lung regrowth was significantly reduced, and ATII but not CCSP+/SP-C+ proliferation responses were impaired. Elastase injury also reduced the baseline abundance of CCSP+/SP-C+, and CCSP+/SP-C+ were found to be displaced from the bronchioalveolar duct junction. These data suggest that qualities of the extracellular matrix including elastin content, mechanical stress, and alveolar integrity strongly influence the regenerative capacity of the lung, and the patterns of cell proliferation in the lungs of adult mice.

摘要

机械应力是肺形态发生、出生后肺发育和代偿性肺再生的重要调节因子。机械应力对干细胞或祖细胞的影响尚不清楚。我们研究了上皮祖细胞(包括双免疫阳性(CCSP 和 proSP-C)祖细胞(CCSP+/SP-C+)和 II 型肺泡上皮细胞(ATII))的增殖反应是否受到肺气肿肺中发现的物理因素的影响,包括弹性回缩丧失、弹性蛋白含量减少和肺泡破坏。小鼠接受单侧肺切除术(PNY)以调节跨肺压(机械应力)并刺激肺再生。对照小鼠接受假开胸术。采用不同水平的填塞来部分或完全消除这种机械应力。在弹性蛋白不足的小鼠(弹性蛋白 +/-,ELN +/-)和弹性酶诱导肺气肿的弹性酶处理小鼠中,评估了对跨肺压分级变化的反应。评估了生理再生、形态计量学(线性平均截距;Lmi)和 CCSP+/SP-C+、Clara 细胞和 ATII 的增殖反应。PNY 后的填塞显著降低了 PNY 后的跨肺压、再生和 CCSP+/SP-C+、Clara 细胞和 ATII 的增殖。在 ELN +/-组中,CCSP+/SP-C+和 ATII 的增殖反应完全被消除,尽管代偿性肺再生没有明显改变。相比之下,在弹性酶损伤的小鼠中,代偿性肺再生明显减少,而 ATII 但不是 CCSP+/SP-C+的增殖反应受损。弹性酶损伤还降低了 CCSP+/SP-C+的基线丰度,并且发现 CCSP+/SP-C+从支气管肺泡导管交界处移位。这些数据表明,包括弹性蛋白含量、机械应力和肺泡完整性在内的细胞外基质的性质强烈影响肺的再生能力,以及成年小鼠肺中细胞增殖的模式。

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