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铜通过产生活性氧使游离染色质失活,赋予白藜芦醇一种新的治疗特性。

Copper Imparts a New Therapeutic Property to Resveratrol by Generating ROS to Deactivate Cell-Free Chromatin.

作者信息

Khanvilkar Salooni, Mittra Indraneel

机构信息

Translational Research Laboratory, Advanced Centre for Treatment, Research and Education in Cancer, Tata Memorial Centre, Kharghar, Navi Mumbai 410210, India.

Homi Bhabha National Institute, Anushakti Nagar, Mumbai 400094, India.

出版信息

Pharmaceuticals (Basel). 2025 Jan 20;18(1):132. doi: 10.3390/ph18010132.

Abstract

Resveratrol, a bioactive phytoalexin, has been extensively studied as a pharmaceutical and nutraceutical candidate for the treatment of various diseases. Although its therapeutic effects have been largely attributed to its anti-oxidant properties, its underlying mechanisms and dose dependency are not well understood. Recent studies have shown that cell-free chromatin particles (cfChPs), which are released daily from billions of dying cells, can enter circulation and be internalized by healthy cells, wherein they trigger various damaging effects, including double-strand DNA breaks. Notably, deactivating cfChPs using a mixture of resveratrol and copper can neutralize their harmful effects. The addition of copper imparts a novel therapeutic property to resveratrol viz. the generation of reactive oxygen species (ROS), which are capable of deactivating cfChPs without damaging the genomic DNA. This perspective article discusses how the deactivation of cfChPs via the ROS generated by combining resveratrol with copper can have multiple therapeutic effects. Exploiting the damaging effects of ROS to deactivate cfChPs and ameliorate disease conditions may be a viable therapeutic approach.

摘要

白藜芦醇是一种具有生物活性的植物抗毒素,作为治疗多种疾病的药物和营养保健品候选物已得到广泛研究。尽管其治疗效果在很大程度上归因于其抗氧化特性,但其潜在机制和剂量依赖性尚不清楚。最近的研究表明,每天从数十亿个垂死细胞中释放出来的无细胞染色质颗粒(cfChPs)可以进入循环系统并被健康细胞内化,在健康细胞中它们会引发各种破坏作用,包括双链DNA断裂。值得注意的是,使用白藜芦醇和铜的混合物使cfChPs失活可以中和它们的有害影响。铜的添加赋予了白藜芦醇一种新的治疗特性,即产生活性氧(ROS),ROS能够使cfChPs失活而不损害基因组DNA。这篇观点文章讨论了通过白藜芦醇与铜结合产生的ROS使cfChPs失活如何能产生多种治疗效果。利用ROS的破坏作用使cfChPs失活并改善疾病状况可能是一种可行的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b9c/11769567/3953cf2bf423/pharmaceuticals-18-00132-g001.jpg

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