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首页> 外文期刊>American Journal of Physiology >Mesenchymal determination of mechanical strain-induced fetal lung cell proliferation.
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Mesenchymal determination of mechanical strain-induced fetal lung cell proliferation.

机译:间充质测定机械应变引起的胎儿肺细胞增殖。

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摘要

Fetal breathing movements play an important role in normal fetal lung growth. We have previously shown that an intermittent mechanical strain regimen (60 cycles/min, 15 min/h), simulating normal fetal breathing movements, stimulated growth of mixed fetal rat lung cells in organotypic culture. In the present study, we examined the individual responses of the two major fetal lung cell types, fibroblasts and epithelial cells, to mechanical strain. Also, we investigated the effect of mesenchymal-epithelial interactions on strain-induced cell proliferation during fetal lung development. Fibroblasts and epithelial cells from day 18 to day 21 fetal rat lung (term = 22 days), cultured alone or as various recombinants, were subjected to either a 48-h static culture or to strain, and DNA synthesis was measured. Both cell types responded individually to strain with enhanced DNA synthesis throughout late fetal lung development. Independent of the recombination ratio, there was no additive response to strain when fibroblasts and epithelial cells from the same gestation were recombined. In contrast, strain-induced DNA synthesis was suppressed when cells from different gestations were recombined. The ontogenic response pattern of recombinants to mechanical strain was similar to that of fibroblasts but not of epithelial cells. Strain-induced proliferation increased and peaked at the early canalicular stage of lung development at 19 days of gestation and declined thereafter. We conclude that strain-enhanced growth of the fetal lung is gestation dependent and that the gestational response to mechanical force is regulated by the mesenchyme.
机译:胎儿呼吸运动在正常的胎儿肺生长中起重要作用。先前我们已经表明,模拟正常胎儿呼吸运动的间歇性机械应变方案(60个周期/分钟,15分钟/小时)刺激了器官型培养中混合胎鼠肺细胞的生长。在本研究中,我们检查了两种主要胎儿肺细胞类型(成纤维细胞和上皮细胞)对机械应变的个体反应。此外,我们调查了胚胎肺发育过程中间充质-上皮相互作用对菌株诱导的细胞增殖的影响。单独培养或以各种重组体培养的第18天至第21天胎儿大鼠肺(成胎= 22天)的成纤维细胞和上皮细胞进行48小时静态培养或应变培养,并测量DNA合成。整个胎儿肺发育后期,两种细胞类型均对DNA合成增强的菌株产生反应。与重组比率无关,当来自同一妊娠的成纤维细胞和上皮细胞重组时,对菌株没有加性反应。相反,当重组来自不同妊娠的细胞时,菌株诱导的DNA合成受到抑制。重组体对机械应变的本体反应模式与成纤维细胞相似,但与上皮细胞相似。应变诱导的增殖在妊娠19天的肺发育的早期小管阶段增加并达到峰值,然后下降。我们得出的结论是,胎肺的应变增强型生长与妊娠有关,而对机械力的妊娠反应受间充质调节。

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