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首页> 外文期刊>American Journal of Physiology >Lung matrix and vascular remodeling in mechanically ventilated elastin haploinsufficient newborn mice
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Lung matrix and vascular remodeling in mechanically ventilated elastin haploinsufficient newborn mice

机译:机械通风的弹性蛋白的肺部基质和血管重塑刚出生的小鼠

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摘要

Elastin plays a pivotal role in lung development. We therefore queried if elastin haploinsufficient newborn mice (Eln+/?) would exhibit abnormal lung structure and function related to modified extracellular matrix (ECM) composition. Because mechanical ventilation (MV) has been linked to dysregulated elastic fiber formation in the newborn lung, we also asked if elastin haploinsufficiency would accentuate lung growth arrest seen after prolonged MV of neonatal mice. We studied 5-day-old wild-type (Eln+/+) and Eln+/? littermates at baseline and after MV with air for 8–24 h. Lungs of unventilated Eln+/? mice contained ~50% less elastin and ~100% more collagen-1 and lysyl oxidase compared with Eln+/+ pups. Eln+/? lungs contained fewer capillaries than Eln+/+ lungs, without discernible differences in alveolar structure. In response to MV, lung tropoelastin and elastase activity increased in Eln+/+ neonates, whereas tropoelastin decreased and elastase activity was unchanged in Eln+/? mice. Fibrillin-1 protein increased in lungs of both groups during MV, more in Eln+/? than in Eln+/+ pups. In both groups, MV caused capillary loss, with larger and fewer alveoli compared with unventilated controls. Respiratory system elastance, which was less in unventilated Eln+/? compared with Eln+/+ mice, was similar in both groups after MV. These results suggest that elastin haploinsufficiency adversely impacts pulmonary angiogenesis and that MV dysregulates elastic fiber integrity, with further loss of lung capillaries, lung growth arrest, and impaired respiratory function in both Eln+/+ and Eln+/? mice. Paucity of lung capillaries in Eln+/? newborns might help explain subsequent development of pulmonary hypertension previously reported in adult Eln+/? mice.
机译:Elastin在肺部发育中起着枢轴作用。因此,我们询问Elastin HaploUnfirfiuch(Eln + /')将表现出异常的肺部结构和与改性细胞外基质(ECM)组合物相关的功能。由于机械通气(MV)与新生儿肺中的失调弹性纤维形成有关,我们还询问ELASTIN HAPHOUSUBCULINUINCUS是否会在新生儿小鼠延长MV后看到肺生长骤停。我们研究了5天历史的野生型(ELN + / +)和ELN + /?在基线和空气中的凋落物,空气过8-24小时。肺的肺不透明的eln + /?与ELN + / +幼崽相比,小鼠含有〜50%的弹性蛋白和〜100%,胶原蛋白-1和赖氨酸氧化酶。 eln + /?肺部含有较少的毛细血管,而不是ELN + / +肺,而不明显肺泡结构差异。响应于MV,Lung Tropoelastin和Elstase活性在ELN + / +新生儿中增加,而Tropoelastin降低,Eln + /αα老鼠。在MV期间,两组肺部增加纤维蛋白-1蛋白,更多在ELN + /?而不是在Eln + / +幼崽中。在这两个组中,与不透明的对照相比,MV导致毛细血管损失,较大且较少的肺泡。呼吸系统弹性,在不透明的ELN + /中少与ELN + / +小鼠相比,MV后两组在两组中相似。这些结果表明,Elastin HepoSuceucksuceucks对肺血管生成产生不利影响,并且MV厌氧纤维完整性,在Eln + / +和Eln +和Eln + /α+ /呼吸功能中进一步丧失肺毛细血管,肺生长缓释和受损的呼吸功能。老鼠。 Eln + /肺毛细血管的缺乏症状新生儿可能有助于解释先前在成人ELN + /中报告的肺动脉高压的后续发展?老鼠。

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