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寄生虫感染中的一氧化氮:是友还是敌?

Nitric oxide in parasitic infections: a friend or foe?

作者信息

Omar Marwa, Abdelal Heba O

机构信息

Department of Medical Parasitology, Faculty of Medicine, Zagazig University, Gameyet Almohafza St. 1, Menya Al-Kamh, City of Zagazig, 44511 Sharkia Governorate Egypt.

LIS: Cross-National Data Center, Maison des Sciences Humaines - 5e étage, 11- porte des Sciences, L-4366 Esch-Belval, Luxembourg.

出版信息

J Parasit Dis. 2022 Dec;46(4):1147-1163. doi: 10.1007/s12639-022-01518-x. Epub 2022 Jul 18.

Abstract

The complex interaction between the host and the parasite remains a puzzling question. Control of parasitic infections requires an efficient immune response that must be balanced against destructive pathological consequences. Nitric oxide is a nitrogenous free radical which has many molecular targets and serves diverse functions. Apart from being a signaling messenger, nitric oxide is critical for controlling numerous infections. There is still controversy surrounding the exact role of nitric oxide in the immune response against different parasitic species. It proved protective against intracellular protozoa, as well as extracellular helminths. At the same time, it plays a pivotal role in stimulating detrimental pathological changes in the infected hosts. Several reports have discussed the anti-parasitic and immunoregulatory functions of nitric oxide, which could directly influence the control of the infection. Nevertheless, there is scarce literature addressing the harmful cytotoxic impacts of this mediator. Thus, this review provides insights into the most updated concepts and controversies regarding the dual nature and opposing sides of nitric oxide during the course of different parasitic infections.

摘要

宿主与寄生虫之间的复杂相互作用仍是一个令人困惑的问题。控制寄生虫感染需要有效的免疫反应,而这种反应必须与破坏性的病理后果保持平衡。一氧化氮是一种含氮自由基,它有许多分子靶点并发挥多种功能。除了作为信号信使外,一氧化氮对于控制多种感染至关重要。关于一氧化氮在针对不同寄生虫物种的免疫反应中的确切作用仍存在争议。它已被证明对细胞内原生动物以及细胞外蠕虫具有保护作用。同时,它在刺激受感染宿主的有害病理变化中起关键作用。几份报告讨论了一氧化氮的抗寄生虫和免疫调节功能,这些功能可能直接影响感染的控制。然而,关于这种介质有害的细胞毒性影响的文献却很少。因此,本综述深入探讨了在不同寄生虫感染过程中关于一氧化氮的双重性质和相反作用的最新概念及争议。

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