...
首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >A new SOD mimic, Mn(III) ortho N-butoxyethylpyridylporphyrin, combines superb potency and lipophilicity with low toxicity
【24h】

A new SOD mimic, Mn(III) ortho N-butoxyethylpyridylporphyrin, combines superb potency and lipophilicity with low toxicity

机译:一种新的SOD模拟物Mn(III)邻N-丁氧基乙基吡啶基卟啉,兼具超强的效力和亲脂性且毒性低

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

The Mn porphyrins of k cat(O 2 .-) as high as that of a superoxide dismutase enzyme and of optimized lipophilicity have already been synthesized. Their exceptional in vivo potency is at least in part due to their ability to mimic the site and location of mitochondrial superoxide dismutase, MnSOD. MnTnHex-2-PyP 5+ is the most studied among lipophilic Mn porphyrins. It is of remarkable efficacy in animal models of oxidative stress injuries and particularly in central nervous system diseases. However, when used at high single and multiple doses it becomes toxic. The toxicity of MnTnHex-2-PyP 5+ has been in part attributed to its micellar properties, i.e., the presence of polar cationic nitrogens and hydrophobic alkyl chains. The replacement of a CH 2 group by an oxygen atom in each of the four alkyl chains was meant to disrupt the porphyrin micellar character. When such modification occurs at the end of long alkyl chains, the oxygens become heavily solvated, which leads to a significant drop in the lipophilicity of porphyrin. However, when the oxygen atoms are buried deeper within the long heptyl chains, their excessive solvation is precluded and the lipophilicity preserved. The presence of oxygens and the high lipophilicity bestow the exceptional chemical and physical properties to Mn(III) meso-tetrakis(N-n-butoxyethylpyridinium-2-yl)porphyrin, MnTnBuOE-2-PyP 5+. The high SOD-like activity is preserved and even enhanced: log k cat(O 2 .-) = 7.83 vs 7.48 and 7.65 for MnTnHex-2-PyP 5+ and MnTnHep-2-PyP 5+, respectively. MnTnBuOE-2-PyP 5+ was tested in an O 2 .- -specific in vivo assay, aerobic growth of SOD-deficient yeast, Saccharomyces cerevisiae, where it was fully protective in the range of 5-30 μM. MnTnHep-2-PyP 5+ was already toxic at 5 μM, and MnTnHex-2-PyP 5+ became toxic at 30 μM. In a mouse toxicity study, MnTnBuOE-2-PyP 5+ was several-fold less toxic than either MnTnHex-2-PyP 5+ or MnTnHep-2-PyP 5+.
机译:已经合成了与超氧化物歧化酶一样高的k cat(O 2 .-)的Mn卟啉,并且具有最佳的亲脂性。它们出色的体内功效至少部分是由于它们能够模拟线粒体超氧化物歧化酶MnSOD的位点和位置。在亲脂性锰卟啉中研究最多的是MnTnHex-2-PyP 5+。在氧化应激损伤的动物模型中,特别是在中枢神经系统疾病中,它具有显着的功效。但是,当以高单剂量和多剂量使用时,它会变得有毒。 MnTnHex-2-PyP 5+的毒性部分归因于其胶束特性,即极性阳离子氮和疏水性烷基链的存在。在四个烷基链的每一个中,CH 2基团被氧原子取代意味着破坏卟啉的胶束特性。当这种修饰发生在长烷基链的末端时,氧将被高度溶剂化,从而导致卟啉的亲脂性显着下降。然而,当氧原子被更深地掩埋在长庚链内时,它们的过度溶剂化被排除,并且保持了亲脂性。氧的存在和高亲脂性赋予Mn(III)中四(N-正丁氧基乙基吡啶-2-基)卟啉MnTnBuOE-2-PyP 5+优异的化学和物理性质。高SOD样活性得以保留甚至增强:MnTnHex-2-PyP 5+和MnTnHep-2-PyP 5+的log k cat(O 2 .-)= 7.83对7.48和7.65。 MnTnBuOE-2-PyP 5+在O 2 .-特异性体内测定中进行了测试,这是SOD缺陷型酵母酿酒酵母的有氧生长,在5-30μM的范围内具有完全的保护作用。 MnTnHep-2-PyP 5+在5μM时已经有毒,而MnTnHex-2-PyP 5+在30μM时有毒。在小鼠毒性研究中,MnTnBuOE-2-PyP 5+的毒性比MnTnHex-2-PyP 5+或MnTnHep-2-PyP 5+低几倍。

著录项

相似文献

  • 外文文献
  • 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