Luo Man, Wang Qin, Zhao Gang, Jiang Wei, Zeng Cici, Zhang Qingao, Yang Ruyu, Dong Wang, Zhao Yunxi, Zhang Guozhen, Jiang Jun, Wang Yucai, Zhu Qing
Key Laboratory of Precision and Intelligent Chemistry, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei230026, China.
Department of Radiology, The First Affiliated Hospital of University of Science and Technology of China, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei230026, China.
Natl Sci Rev. 2023 Oct 16;11(2):nwad269. doi: 10.1093/nsr/nwad269. eCollection 2024 Feb.
Hydrogen therapy shows great promise as a versatile treatment method for diseases associated with the overexpression of reactive oxygen and nitrogen species (RONS). However, developing an advanced hydrogen therapy platform that integrates controllable hydrogen release, efficient RONS elimination, and biodegradability remains a giant technical challenge. In this study, we demonstrate for the first time that the tungsten bronze phase HWO (HWO) is an exceptionally ideal hydrogen carrier, with salient features including temperature-dependent highly-reductive atomic hydrogen release and broad-spectrum RONS scavenging capability distinct from that of molecular hydrogen. Moreover, its unique pH-responsive biodegradability ensures post-therapeutic clearance at pathological sites. Treatment with HWO of diabetic wounds in an animal model indicates that the solid-state atomic H promotes vascular formation by activating M2-type macrophage polarization and anti-inflammatory cytokine production, resulting in acceleration of chronic wound healing. Our findings significantly expand the basic categories of hydrogen therapeutic materials and pave the way for investigating more physical forms of hydrogen species as efficient RONS scavengers for clinical disease treatment.
氢疗法作为一种针对与活性氧和氮物种(RONS)过表达相关疾病的通用治疗方法,显示出巨大的潜力。然而,开发一个集成可控氢释放、高效消除RONS和生物可降解性的先进氢疗法平台仍然是一项巨大的技术挑战。在本研究中,我们首次证明钨青铜相HWO是一种极其理想的氢载体,其显著特征包括温度依赖性的高还原性原子氢释放以及不同于分子氢的广谱RONS清除能力。此外,其独特的pH响应生物可降解性确保了治疗后在病理部位的清除。在动物模型中用HWO治疗糖尿病伤口表明,固态原子氢通过激活M2型巨噬细胞极化和抗炎细胞因子产生来促进血管形成,从而加速慢性伤口愈合。我们的发现显著扩展了氢治疗材料的基本类别,并为研究更多物理形式的氢物种作为临床疾病治疗中有效的RONS清除剂铺平了道路。