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首页> 外文期刊>British Journal of Medicine and Medical Research >Molecular Biology of Chronic Obstructive Pulmonary Disease from the Bases to the Therapeutic Decision: A Review
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Molecular Biology of Chronic Obstructive Pulmonary Disease from the Bases to the Therapeutic Decision: A Review

机译:从基础到治疗决策的慢性阻塞性肺疾病的分子生物学研究进展

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Chronic obstructive pulmonary disease (COPD) is a global public health problem. It has an overwhelming prevalence, yet accepted therapies are ineffective in reducing disease progression. Bronchodilators, the mainstay of COPD treatment, only provide symptomatic relief. Therefore, in order to provide a superior approach, it is important to better understand the rationale behind therapy and the underlying mechanisms by which the inflammatory process, through various pathogenic pathways, leads to deterioration. Cigarette smoke and other pollutants/biomass fuels affect the lungs ability to counterbalance proteases and neutralize different types of stress. Even if the initial noxa is discontinued, inflammation, infection and autoimmunity promote a chronic lung inflammatory response; leading to the development of emphysema and small airway disease. This is due to continuous endogenous production of reactive oxygen species, nitrative and carbonyl stress. The process then continues into a harmful spiral and systemic disease. The objective of this paper is to offer an updated review of COPD, simplifying the integration of basic science research and introducing the concepts and evidence of therapeutic alternatives. This review discusses why some drugs have failed and which alternatives are emerging. Probably there is no unique effective therapy, but several combinations of drugs might be required to impact the different subcellular compartments and obtain a more effective therapy in COPD.
机译:慢性阻塞性肺疾病(COPD)是全球性的公共卫生问题。它的患病率很高,但是公认的疗法在减少疾病进展方面无效。支气管扩张药是COPD治疗的主要手段,只能缓解症状。因此,为了提供更好的方法,重要的是更好地理解治疗背后的原理以及炎症过程通过各种病原体途径导致恶化的基本机制。香烟烟雾和其他污染物/生物质燃料会影响肺部平衡蛋白酶和中和不同类型压力的能力。即使最初的诺沙星中断,炎症,感染和自身免疫也会促进慢性肺部炎症反应。导致肺气肿和小气道疾病的发展。这是由于连续产生内源性活性氧,硝化和羰基应力。然后,该过程继续发展为有害的螺旋体和全身性疾病。本文的目的是提供COPD的最新综述,简化基础科学研究的整合,并介绍治疗替代方案的概念和证据。这篇综述讨论了为什么某些药物失败以及出现了哪些替代药物。可能没有独特的有效疗法,但是可能需要几种药物组合才能影响不同的亚细胞区室并获得更有效的COPD治疗。

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