Department of Chemistry, Center for Diagnostics and Therapeutics, Georgia State University, Atlanta, Georgia, USA.
Antioxid Redox Signal. 2020 Nov 10;33(14):1046-1059. doi: 10.1089/ars.2019.7880. Epub 2020 Mar 6.
Bioactive sulfur species such as hydrogen sulfide (HS), persulfide species (R-SSH, ≥ 1), hydrogen polysulfide (HS, ≥ 2), sulfur dioxide (SO), and carbon disulfide (CS) participate in various physiological and/or pathological pathways such as vasodilation, apoptosis, inflammation, and energy metabolism regulation. The oxidation state of the individual sulfur species endows them unique biological activities. There have been great strides made in achieving molecular understanding of the sulfur-signaling processes. The development of various chemical tools that deliver reactive sulfur species in a controllable manner has played an important role in understanding the different roles of various sulfur species. In this review, we focus on three types of sulfur species, including persulfide, SO, and CS. Starting with a brief introduction of their physiological functions, we will then assess the various drug delivery strategies to generate persulfide species, SO, and CS as research tools and potentially as therapeutic agents. Development of donors of various sulfur species that respond to distinct stimulus is critical for this field. Another key to the long-term success of this field is the identification of an area of unmet medical need that can be addressed with these sulfur species.
生物活性硫物种,如硫化氢(HS)、过硫物种(R-SSH,≥1)、多硫化氢(HS,≥2)、二氧化硫(SO)和二硫化碳(CS),参与各种生理和/或病理途径,如血管舒张、细胞凋亡、炎症和能量代谢调节。单个硫物种的氧化态赋予它们独特的生物学活性。在实现对硫信号转导过程的分子理解方面已经取得了重大进展。各种能够以可控方式输送反应性硫物种的化学工具的发展,在理解各种硫物种的不同作用方面发挥了重要作用。在这篇综述中,我们重点关注三种类型的硫物种,包括过硫物种、SO 和 CS。首先简要介绍它们的生理功能,然后评估各种将过硫物种、SO 和 CS 作为研究工具并潜在地作为治疗剂生成的药物输送策略。开发对各种不同刺激有响应的硫物种供体对于这一领域至关重要。该领域长期成功的另一个关键是确定可以用这些硫物种解决的未满足的医疗需求领域。