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C3H/HeJ小鼠和C57BL/6J小鼠出生后肺生长与发育的比较。

Comparison of postnatal lung growth and development between C3H/HeJ and C57BL/6J mice.

作者信息

Soutiere Shawn E, Mitzner Wayne

机构信息

Division of Physiology, Deptarment of Environmental Health Sciences, The Johns Hopkins University Bloomberg School of Public Health, Baltimore, MD 21205, USA.

出版信息

J Appl Physiol (1985). 2006 May;100(5):1577-83. doi: 10.1152/japplphysiol.00809.2005. Epub 2005 Nov 10.

Abstract

Previous work by our group has demonstrated substantial differences in lung volume and morphometric parameters between inbred mice. Specifically, adult C3H/HeJ (C3) have a 50% larger lung volume and 30% greater mean linear intercept than C57BL/6J (B6) mice. Although much of lung development occurs postnatally in rodents, it is uncertain at what age the differences between these strains become manifest. In this study, we performed quasi-static pressure-volume curves and morphometric analysis on neonatal mice. Lungs from anesthetized mice were degassed in vivo using absorption of 100% O2. Pressure-volume curves were then recorded in situ. The lungs were then fixed by instillation of Zenker's solution at a constant transpulmonary pressure. The left lung from each animal was used for morphometric determination of mean air space chord length (Lma). We found that the lung volume of C3 mice was substantially greater than that of B6 mice at all ages. In contrast, there was no difference in Lma (62.7 microm in C3 and 58.5 microm in B6) of 3-day-old mice. With increasing age (8 days), there was a progressive decrease in the Lma of both strains, with the magnitude of the decrease in B6 Lma mice exceeding that of C3. C3 lung volume remained 50% larger. The combination of parenchymal architectural similarity with lung air volume differences and different rates of alveolar septation support the hypothesis that lung volume and alveolar dimensions are independently regulated.

摘要

我们小组之前的研究表明,近交系小鼠之间的肺容量和形态计量学参数存在显著差异。具体而言,成年C3H/HeJ(C3)小鼠的肺容量比C57BL/6J(B6)小鼠大50%,平均线性截距大30%。尽管啮齿动物的肺发育大多在出生后进行,但这些品系之间的差异在什么年龄显现尚不确定。在本研究中,我们对新生小鼠进行了准静态压力-容积曲线和形态计量学分析。对麻醉小鼠的肺在体内通过吸收100%氧气进行脱气。然后在原位记录压力-容积曲线。随后在恒定跨肺压下通过灌注岑克尔氏溶液固定肺。每只动物的左肺用于形态计量学测定平均气腔弦长(Lma)。我们发现,在所有年龄段,C3小鼠的肺容量均显著大于B6小鼠。相比之下,3日龄小鼠的Lma没有差异(C3为62.7微米,B6为58.5微米)。随着年龄增长(8日龄),两个品系的Lma均逐渐降低,B6小鼠Lma的降低幅度超过C3。C3小鼠的肺容量仍大50%。实质结构相似性与肺气体容量差异以及肺泡分隔速率不同的组合支持了肺容量和肺泡尺寸是独立调节的这一假说。

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