...
首页> 外文期刊>Antioxidants and redox signalling >Novel Angiogenic Activity and Molecular Mechanisms of ZYZ-803, a Slow-Releasing Hydrogen Sulfide-Nitric Oxide Hybrid Molecule
【24h】

Novel Angiogenic Activity and Molecular Mechanisms of ZYZ-803, a Slow-Releasing Hydrogen Sulfide-Nitric Oxide Hybrid Molecule

机译:缓释硫化氢-一氧化氮杂化分子ZYZ-803的新血管生成活性和分子机理

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Aims: Revascularization strategies and gene therapy for treatment of ischemic diseases remain to be fully optimized for use in human and veterinary clinical medicine. The continued evolution of such strategies must take into consideration two compounds, which act as critical effectors of angiogenesis by endothelial cells. Nevertheless, the nature of interaction between hydrogen sulfide (H2S) and nitric oxide (NO) remained undefined at the time of this writing. Results: The present study uses ZYZ-803, a novel synthetic H2S-NO hybrid molecule, which, under physiological conditions, slowly decomposes to release H2S and NO. This is observed to dose dependently mediate cell proliferation, migration, and tube-like structure formation in vitro along with increased angiogenesis in rat aortic rings, Matrigel plug in vivo, and a murine ischemic hind limb model. The effects of ZYZ-803 exhibited significantly greater potency than those of H2S and/or NO donor alone. The compound stimulated cystathionine g-lyase (CSE) expression and endothelial NO synthase (eNOS) activity to produce H2S and NO. Blocking CSE and/or eNOS suppressed both H2S and NO generation as well as the proangiogenic effect of ZYZ-803. Sirtuin-1 (SIRT1), CSE, and/or eNOS small interfering RNA (siRNA) suppressed the angiogenic effect of ZYZ-803-induced SIRT1 expression, VEGF, and cyclic guanosine 5-monophosphate (cGMP) levels. These gasotransmitters cooperatively regulated angiogenesis through an SIRT1/VEGF/cGMP pathway. Innovation and Conclusion: H2S and NO exert mutual influence on biological functions mediated by both compounds. Functional convergence occurs in the SIRT1-dependent proangiogenic processes. These two gasotransmitters are mutually required for physiological regulation of endothelial homeostasis. These ongoing characterizations of mechanisms by which ZYZ-803 influences angiogenesis provide expanding insight into strategies for treatment of ischemic diseases.
机译:目的:血运重建策略和基因治疗缺血性疾病的治疗方法仍需充分优化,以用于人类和兽医临床医学。这种策略的持续发展必须考虑两种化合物,它们起着内皮细胞血管生成的关键效应器的作用。然而,在撰写本文时,硫化氢(H2S)和一氧化氮(NO)之间相互作用的性质仍不确定。结果:本研究使用新型合成的H2S-NO杂合分子ZYZ-803,该分子在生理条件下会缓慢分解以释放H2S和NO。观察到这在体外剂量依赖性地介导细胞增殖,迁移和管状结构形成以及大鼠主动脉环,体内基质胶和小鼠缺血性后肢模型中血管生成的增加。 ZYZ-803的功效比单独使用H2S和/或NO供体的功效显着更高。该化合物刺激了胱硫醚g-裂合酶(CSE)的表达和内皮一氧化氮合酶(eNOS)的活性,从而产生H2S和NO。阻断CSE和/或eNOS既抑制了H2S和NO的生成,又抑制了ZYZ-803的促血管生成作用。 Sirtuin-1(SIRT1),CSE和/或eNOS小干扰RNA(siRNA)抑制了ZYZ-803诱导的SIRT1表达,VEGF和环状鸟苷5一磷酸(cGMP)水平的血管生成作用。这些气体递质通过SIRT1 / VEGF / cGMP途径协同调节血管生成。创新与结论:H2S和NO对这两种化合物介导的生物学功能产生相互影响。功能收敛发生在依赖SIRT1的促血管生成过程中。这两种气体递质是内皮稳态的生理调节所必需的。 ZYZ-803影响血管生成的机制的这些正在进行的表征提供了对缺血性疾病治疗策略的深入了解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号