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裸鼠(nu/nu)突变对博莱霉素诱导的肺纤维化的影响。生化评估。

The effects of the nude (nu/nu) mutation on bleomycin-induced pulmonary fibrosis. A biochemical evaluation.

作者信息

Schrier D J, Phan S H, McGarry B M

出版信息

Am Rev Respir Dis. 1983 May;127(5):614-7. doi: 10.1164/arrd.1983.127.5.614.

Abstract

Previous reports have suggested that the immune system is involved in the lung fibrogenic response to certain agents or treatments. In the present study, we have evaluated the impact of the athymic (nude) mutation on the development of pulmonary fibrosis in mice induced by a single intratracheal instillation of bleomycin (0.75 units/animal). Histologic examination revealed that cellular infiltration, fibroblast proliferation, and connective tissue accumulation were diminished in the nude mice when compared with euthymic (het) control mice. In contrast to control animals treated with saline, total lung hydroxyproline in the nude mouse was not significantly increased at 14 and 30 days after bleomycin treatment. Net collagen synthesis, as assessed by measuring the rate of incorporation of tritiated proline in an organ culture system, was increased above control values in both nude and euthymic mice at 14 days after bleomycin treatment, although these values returned to normal at 30 days. However, lung collagen synthetic rates, normalized to dry lung weights, were significantly higher at 14 days in euthymic bleomycin-treated control mice than in the nude bleomycin-treated animals. The data indicate that the nude athymic mutation protects, at least partially, against bleomycin-induced pulmonary fibrosis, thus suggesting a role for the cellular immune system in regulating the fibrogenic response to this drug.

摘要

先前的报告表明,免疫系统参与了肺部对某些药物或治疗的纤维化反应。在本研究中,我们评估了无胸腺(裸)突变对经气管内单次注射博来霉素(0.75单位/只动物)诱导的小鼠肺纤维化发展的影响。组织学检查显示,与有胸腺(杂合子)对照小鼠相比,裸鼠的细胞浸润、成纤维细胞增殖和结缔组织积聚减少。与用盐水处理的对照动物相反,博来霉素处理后14天和30天,裸鼠的全肺羟脯氨酸没有显著增加。通过在器官培养系统中测量氚标记脯氨酸的掺入率评估的净胶原合成,在博来霉素处理后14天,裸鼠和有胸腺小鼠均高于对照值,尽管这些值在30天时恢复正常。然而,以干肺重量标准化的肺胶原合成率,在博来霉素处理的有胸腺对照小鼠中14天时显著高于博来霉素处理的裸鼠。数据表明,无胸腺裸突变至少部分地保护小鼠免受博来霉素诱导的肺纤维化,从而提示细胞免疫系统在调节对该药物的纤维化反应中起作用。

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