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Hydrogen Sulfide: A Therapeutic Option in Systemic Sclerosis

机译:硫化氢:系统性硬化症的治疗选择

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Systemic sclerosis (SSc) is a lethal disease that is characterized by auto-immunity, vascular injury, and progressive fibrosis of multiple organ systems. Despite the fact that the exact etiology of SSc remains unknown, oxidative stress has been associated with a large range of SSc-related complications. In addition to the well-known detrimental properties of reactive oxygen species (ROS), gasotransmitters (e.g., nitric oxide (NO), carbon monoxide (CO), and hydrogen sulfide (H 2 S)) are also thought to play an important role in SSc. Accordingly, the diverse physiologic actions of NO and CO and their role in SSc have been previously studied. Recently, multiple studies have also shown the importance of the third gasotransmitter H 2 S in both vascular physiology and pathophysiology. Interestingly, homocysteine (which is converted into H 2 S through the transsulfuration pathway) is often found to be elevated in SSc patients; suggesting defects in the transsulfuration pathway. Hydrogen sulfide, which is known to have several effects, including a strong antioxidant and vasodilator effect, could potentially play a prominent role in the initiation and progression of vasculopathy. A better understanding of the actions of gasotransmitters, like H 2 S, in the development of SSc-related vasculopathy, could help to create early interventions to attenuate the disease course. This paper will review the role of H 2 S in vascular (patho-)physiology and potential disturbances in SSc. Moreover, current data from experimental animal studies will be reviewed. Lastly, we will evaluate potential interventional strategies.
机译:系统性硬化症(SSc)是一种致命疾病,其特征在于自身免疫,血管损伤和多器官系统进行性纤维化。尽管目前尚不清楚SSc的确切病因,但氧化应激与大量与SSc相关的并发症有关。除了众所周知的活性氧(ROS)的有害特性外,气体传输剂(例如一氧化氮(NO),一氧化碳(CO)和硫化氢(H 2 S))也被认为起着重要的作用。在SSc中。因此,先前已经研究了NO和CO的多种生理作用及其在SSc中的作用。最近,多项研究还显示了第三种气体递质H 2 S在血管生理学和病理生理学中的重要性。有趣的是,在SSc患者中经常发现高半胱氨酸(通过转硫途径转化为H 2 S);表明转硫途径中的缺陷。众所周知,硫化氢具有多种作用,包括强大的抗氧化剂和血管舒张作用,可能在血管病的发生和发展中发挥重要作用。更好地了解类似于H 2 S的气体递质在SSc相关血管病发展中的作用,可能有助于创造早期干预措施以减轻疾病进程。本文将回顾H 2 S在SSc的血管(病理)生理和潜在障碍中的作用。此外,将对来自实验动物研究的最新数据进行回顾。最后,我们将评估潜在的干预策略。

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