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慢性阻塞性肺疾病的病理生理机制相关方面。

Aspects on pathophysiological mechanisms in COPD.

作者信息

Larsson Kjell

机构信息

Unit of Lung and Allergy Research, National Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden.

出版信息

J Intern Med. 2007 Sep;262(3):311-40. doi: 10.1111/j.1365-2796.2007.01837.x.

Abstract

Chronic obstructive pulmonary disease (COPD) is a condition which is characterized by irreversible airway obstruction due to narrowing of small airways, bronchiolitis, and destruction of the lung parenchyma, emphysema. It is the fourth most common cause of mortality in the world and is expected to be the third most common cause of death by 2020. The main cause of COPD is smoking but other exposures may be of importance. Exposure leads to airway inflammation in which a variety of cells are involved. Besides neutrophil granulocytes, macrophages and lymphocytes, airway epithelial cells are also of particular importance in the inflammatory process and in the development of emphysema. Cell trafficking orchestrated by chemokines and other chamoattractants, the proteinase-antiproteinase system, oxidative stress and airway remodelling are central processes associated with the development of COPD. Recently systemic effects of COPD have attracted attention and the importance of systemic inflammation has been recognized. This seems to have direct therapeutic implications as treatment with inhaled glucocorticosteroids has been shown to influence mortality. The increasing body of knowledge regarding the inflammatory mechanism in COPD will most likely have implications for future therapy and new drugs, specifically aimed at interaction with the inflammatory processes, are currently being developed.

摘要

慢性阻塞性肺疾病(COPD)是一种以小气道狭窄、细支气管炎以及肺实质破坏(肺气肿)导致不可逆性气道阻塞为特征的疾病。它是全球第四大常见死因,预计到2020年将成为第三大常见死因。COPD的主要病因是吸烟,但其他暴露因素也可能起重要作用。暴露会导致气道炎症,多种细胞参与其中。除了中性粒细胞、巨噬细胞和淋巴细胞外,气道上皮细胞在炎症过程和肺气肿的发展中也特别重要。由趋化因子和其他趋化剂精心安排的细胞迁移、蛋白酶-抗蛋白酶系统、氧化应激和气道重塑是与COPD发展相关的核心过程。最近,COPD的全身效应引起了关注,全身炎症的重要性已得到认可。这似乎具有直接的治疗意义,因为吸入糖皮质激素治疗已被证明会影响死亡率。关于COPD炎症机制的知识不断增加,很可能会对未来的治疗产生影响,目前正在研发专门针对与炎症过程相互作用的新药。

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