{"title":"Kinetic and Mechanistic Studies of Substitution on [(H2O)(tap)2RuORu(tap)2(H2O)]2+ Ion with Uridine in Aqueous Medium","authors":"Hriday Chattopadhyay, A. K. Ghosh","doi":"10.1515/IRM.2006.6.1.9","DOIUrl":null,"url":null,"abstract":"*Corresponding author: e-mail: alakghosh2002@yahoo.co.in Platinum complexes of ruthenium, rhodium, iridium and palladium have been reported to have considerable antibacterial power [1,2]. Ruthenium complexes are an order of magnitude less toxic than cis-platin. Studies demonstrate that a number of ruthenium compounds serve as bacterial mutagens and so indicate that at least some ruthenium complexes are capable of damaging genetic material. Screening studies on a series of ruthenium complexes show that many of them do exhibit antitumor [3-6], antiherpes [7], anti-HIV [8], antiamebic [9], anticancer [10], antileucomic [11] and antifungal activity [12,13]. Ruthenium-arene organometallic compounds are postulated to interact with DNA targets, although protein interactions have also been shown. These organometallic species are more stable than inorganic metal compounds, which facilitate pharmacokinetic studies, thereby increasing the Inorganic Reaction Mechanisims, Vol. 6, pp. 9-17 © 2006 Old City Publishing, Inc. Reprints available directly from the publisher Published by license under the OCP Science imprint, Photocopying permitted by license only a member of the Old City Publishing Group.","PeriodicalId":8996,"journal":{"name":"BioInorganic Reaction Mechanisms","volume":"54 1","pages":"17 - 9"},"PeriodicalIF":0.0000,"publicationDate":"2006-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"8","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"BioInorganic Reaction Mechanisms","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1515/IRM.2006.6.1.9","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 8
尿苷取代[(H2O)(tap)2RuORu(tap)2(H2O)]2+离子的动力学和机理研究
*通讯作者:e-mail: alakghosh2002@yahoo.co.in钌、铑、铱和钯的铂配合物已被报道具有相当的抗菌能力[1,2]。钌配合物的毒性比顺铂小一个数量级。研究表明,许多钌化合物可以作为细菌诱变剂,因此表明至少一些钌复合物能够破坏遗传物质。对一系列钌配合物的筛选研究表明,许多钌配合物确实具有抗肿瘤[3-6]、抗疱疹[7]、抗hiv[8]、抗阿米巴[9]、抗癌[10]、抗白血病[11]和抗真菌活性[12,13]。钌-芳烃有机金属化合物被假定与DNA目标相互作用,尽管蛋白质相互作用也已被证明。这些有机金属化合物比无机金属化合物更稳定,有利于药代动力学研究,从而增加了无机反应机理,第6卷,第9-17页©2006 Old City Publishing, Inc.。可直接从出版商处获得重印,在OCP科学印记下通过许可出版,仅允许旧城出版集团成员的许可复印。
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