Ntenti Charikleia, Papakonstantinou Eleni, Fidani Liana, Stolz Daiana, Goulas Antonis
1st Laboratory of Pharmacology, School of Medicine, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Clinic of Respiratory Medicine, Faculty of Medicine, University of Freiburg, 79106 Freiburg, Germany.
J Pers Med. 2024 Feb 25;14(3):248. doi: 10.3390/jpm14030248.
In COPD, chronic inflammation and exposure to irritants, such as cigarette smoke, lead to the thickening of bronchial walls. This results from increased deposition of collagen and other extracellular matrix components, contributing to the narrowing of airways. Nevertheless, it is widely recognized that COPD is an inflammatory disorder marked by partially reversible airflow limitation wherein genetic factors interact with the environment. In recent years, numerous investigations have substantiated the correlation between gene polymorphisms and COPD. has been implicated in diverse cellular processes, including lysosomal function and extracellular matrix maintenance, both of which play pivotal roles in respiratory health. The genetic variations in could lead to an imbalanced sulfation in the extracellular matrix of lung tissue, potentially playing a role in the onset of COPD. Recent studies have uncovered a potential link between dysregulation of and COPD progression, shedding light on its involvement in the abnormal sulfatase activity observed in COPD patients. Through a comprehensive review of current literature and experimental findings, this article aims to contribute to the growing body of knowledge surrounding the genetic intricacies concerning sulfation of airway remodeling and possible pharmacological applications in COPD and asthma management.
在慢性阻塞性肺疾病(COPD)中,慢性炎症以及接触如香烟烟雾等刺激物会导致支气管壁增厚。这是由于胶原蛋白和其他细胞外基质成分的沉积增加所致,进而导致气道变窄。然而,人们普遍认识到COPD是一种以部分可逆性气流受限为特征的炎症性疾病,其中遗传因素与环境相互作用。近年来,大量研究证实了基因多态性与COPD之间的相关性。[具体基因名称]参与了多种细胞过程,包括溶酶体功能和细胞外基质维持,这两者在呼吸健康中都起着关键作用。[具体基因名称]的基因变异可能导致肺组织细胞外基质中硫酸化失衡,这可能在COPD的发病中起作用。最近的研究发现[具体基因名称]的失调与COPD进展之间存在潜在联系,揭示了其与COPD患者中观察到的异常硫酸酯酶活性的关联。通过对当前文献和实验结果的全面综述,本文旨在为围绕气道重塑硫酸化的遗传复杂性以及COPD和哮喘管理中可能的药理学应用的不断增长的知识体系做出贡献。