慢性香烟烟雾吸入对衰老加速小鼠老年性肺发育的影响。

S Teramoto, Y Uejima, T Oka, K Teramoto, T Matsuse, Y Ouchi, Y Fukuchi
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引用次数: 20

摘要

衰老加速小鼠(SAM)的功能和形态特征在衰老的老年性肺中表现得最为明显。然而,对于年龄和吸烟对SAM患者肺部变化的影响知之甚少。在本研究中,我们研究了慢性香烟烟雾吸入和年龄对两种SAM菌株SAMP2(衰老易感性菌株)和SAMR1(抗衰老菌株)肺功能和形态的影响,实验时间为6月龄(年轻)和18月龄(老年)。吸入香烟烟雾4周后,在年轻的SAMP2中观察到一个小但明显的空域,并伴随着压力-体积(P-V)曲线的左移,而在SAMR1中则没有。然而,吸入香烟的年轻SAMP2的空域尺寸小于吸入空气的老年SAM,这表明年龄对SAMP2肺部改变的影响可能大于烟草烟雾的小负担。在老年SAM中,烟草暴露小鼠和空气暴露小鼠在功能和结构上没有差异。由于暴露于香烟烟雾中的年轻SAMP2肺部的变化部分与人类肺部的年龄相关变化相模拟,并且由于SAMP2肺部的年龄依赖性变化已被清楚地研究,因此该菌株可能是研究年龄和/或香烟烟雾对肺结构和功能变化影响的有趣动物模型。
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Effects of chronic cigarette smoke inhalation on the development of senile lung in senescence-accelerated mouse.

The senescence-accelerated mouse (SAM) manifests most of the features of function and morphology in the senile lung with aging. However, little is known about the effects of age and cigarette smoke on alterations of the lung in SAM. In the present study, we examined the effects of chronic cigarette smoke inhalation and age on the function and morphology of lungs in two strains of SAM, SAMP2 (senescence-prone strain) and SAMR1 (senescence-resistant strain), from 6 months of age (young) and 18 months of age (aged). After 4 weeks of cigarette smoke inhalation, a small but significant airspace along with a leftward shift of the pressure-volume (P-V) curve was observed in young SAMP2, but not in SAMR1. However, the airspace size of young SAMP2 with cigarette inhalation was smaller than that in aged SAM with air inhalation, suggesting that the effect of age may be greater than that of the small burder of tobacco smoke on the lung alterations in SAMP2. In the aged SAM, there were no differences in function and structure between tobacco-exposed and air-exposed mice. Because the changes in the lungs of young SAMP2 exposed to cigarette smoke were partly simulated with age-related alterations in human lung, and because age-dependent changes of lungs were clearly investigated in SAMP2, this strain may be an interesting animal model for investigating the effects of age and/or cigarette smoke on alterations in lung structure and function.

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