慢性阻塞性肺疾病合并肺间质纤维化大鼠模型的研究进展
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山东中医药大学

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国家中医药管理局科技司-山东省卫生健康委员会共建中医药科技项目、山东省医药卫生科技项目、山东省中医药科技项目


Research Progress on COPD and Pulmonary Interstitial Fibrosis Rat Models
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Shandong University of Traditional Chinese Medicine

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Department of Science and Technology of State Administration of Traditional Chinese Medicine and Shandong Provincial Health Commission jointly build Traditional Chinese Medicine science and Technology Project, Shandong Provincial Medicine and Health Science and Technology Project, Shandong Provincial Traditional Chinese Medicine science and Technology Project

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    摘要:

    慢性阻塞性肺疾病(COPD)和肺间质纤维化(PIF)是两种严重影响肺功能的慢性肺部疾病。COPD合并PIF(COPD-PIF)可导致肺组织损伤进一步加重,加速病情进展,并显著影响患者预后。然而,COPD-PIF的具体发病机制尚未完全阐明,且目前尚无有效的治疗手段。近年来,动物模型在COPD-PIF的病理机制研究及新药开发中发挥了重要作用。现有COPD模型的构建方法主要包括单因素诱导(如香烟烟雾暴露、脂多糖注射)和多因素联合诱导,而PIF模型则主要依赖博来霉素诱导,不同给药方式(如气管内滴注、雾化吸入、尾静脉注射)对模型的稳定性和重复性具有重要影响。尽管已有一定类型的COPD-PIF动物模型被用于研究,但仍存在模型建立方法不完善、稳定性不足及难以全面模拟人类疾病特征的问题。此外,COPD与PIF的发生顺序可能影响模型的病理表现,这在现有研究中尚未达成一致。为更好地研究COPD-PIF的病理机制及筛选有效治疗策略,未来应进一步优化造模方法,提高模型的稳定性和可重复性,探索更符合COPD-PIF临床特征的动物模型,从而推动该领域的基础研究和新药开发。

    Abstract:

    Chronic obstructive pulmonary disease (COPD) and pulmonary interstitial fibrosis (PIF) are two chronic pulmonary diseases that severely impair lung function. COPD combined with PIF (COPD-PIF) exacerbates lung tissue damage, accelerates disease progression, and significantly worsens patient prognosis. However, the exact pathogenesis of COPD-PIF remains unclear, and effective treatment options are still lacking. In recent years, animal models have played a crucial role in elucidating the pathological mechanisms of COPD-PIF and facilitating new drug development. Currently, COPD models are primarily established through single-factor induction (such as cigarette smoke exposure or lipopolysaccharide injection) or multi-factor combination methods, while PIF models mainly rely on bleomycin induction. The administration route (e.g., intratracheal instillation, aerosol inhalation, or intravenous injection) significantly affects the stability and reproducibility of these models. Although various COPD-PIF animal models have been developed and utilized for research, challenges remain in establishing a standardized and reliable model that fully mimics human disease characteristics. Additionally, the order in which COPD and PIF are induced may influence pathological manifestations, but there is no consensus in current studies. To further investigate the pathogenesis of COPD-PIF and identify effective therapeutic strategies, future research should focus on optimizing modeling techniques, improving model stability and reproducibility, and developing animal models that better reflect the clinical characteristics of COPD-PIF. These efforts will contribute to advancing fundamental research and facilitating new drug development in this field.

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  • 收稿日期:2025-04-03
  • 最后修改日期:2025-12-12
  • 录用日期:2026-02-06
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