School of Medicine and Surgery, University of Milano-Bicocca, 20900 Monza, Italy.
FIMP-Federazione Italiana Medici Pediatri, 00185 Rome, Italy.
Int J Environ Res Public Health. 2023 Mar 1;20(5):4393. doi: 10.3390/ijerph20054393.
Particulate matter (PM) is a harmful component of urban air pollution and PM2.5, in particular, can settle in the deep airways. The RAS system plays a crucial role in the pathogenesis of pollution-induced inflammatory diseases: the ACE/AngII/AT1 axis activates a pro-inflammatory pathway counteracted by the ACE2/Ang(1-7)/MAS axis, which in turn triggers an anti-inflammatory and protective pathway. However, ACE2 acts also as a receptor through which SARS-CoV-2 penetrates host cells to replicate. COX-2, HO-1, and iNOS are other crucial proteins involved in ultrafine particles (UFP)-induced inflammation and oxidative stress, but closely related to the course of the COVID-19 disease. BALB/c male mice were subjected to PM2.5 sub-acute exposure to study its effects on ACE2 and ACE, COX-2, HO-1 and iNOS proteins levels, in the main organs concerned with the pathogenesis of COVID-19. The results obtained show that sub-acute exposure to PM2.5 induces organ-specific modifications which might predispose to greater susceptibility to severe symptomatology in the case of SARS-CoV-2 infection. The novelty of this work consists in using a molecular study, carried out in the lung but also in the main organs involved in the disease, to analyze the close relationship between exposure to pollution and the pathogenesis of COVID-19.
颗粒物(PM)是城市空气污染的有害成分,特别是 PM2.5 可以沉降到深层气道中。RAS 系统在污染引起的炎症性疾病发病机制中起着至关重要的作用:ACE/AngII/AT1 轴激活促炎途径,而 ACE2/Ang(1-7)/MAS 轴则拮抗该途径,进而触发抗炎和保护途径。然而,ACE2 也是 SARS-CoV-2 穿透宿主细胞进行复制的受体。COX-2、HO-1 和 iNOS 是其他与超细颗粒(UFP)诱导的炎症和氧化应激密切相关的关键蛋白,但与 COVID-19 疾病的病程密切相关。将 BALB/c 雄性小鼠暴露于 PM2.5 亚急性暴露下,研究其对 ACE2 和 ACE、COX-2、HO-1 和 iNOS 蛋白水平的影响,这些蛋白与 COVID-19 发病机制有关的主要器官。结果表明,PM2.5 亚急性暴露会引起器官特异性改变,这可能使 SARS-CoV-2 感染时更容易出现严重症状。这项工作的新颖之处在于使用分子研究,在肺部进行,也在疾病涉及的主要器官进行,分析了暴露于污染与 COVID-19 发病机制之间的密切关系。