Author:
Rockwell Sara,Liu Yanfeng,Seow Helen A.,Ishiguro Kimiko,Baumann Raymond P.,Penketh Philip G.,Shyam Krishnamurthy,Akintujoye Oluwatoyin M.,Glazer Peter M.,Sartorelli Alan C.
Subject
Radiology, Nuclear Medicine and imaging,Radiological and Ultrasound Technology
Cited by
8 articles.
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1. Antitumor effect of infrared whole-body hyperthermia with curcumin in breast Cancer;Multimedia Tools and Applications;2022-09-07
2. pH-dependent general base catalyzed activation rather than isocyanate liberation may explain the superior anticancer efficacy of laromustine compared to related 1,2-bis(methylsulfonyl)-1-(2-chloroethyl)hydrazine prodrugs;Chemical Biology & Drug Design;2017-07-17
3. Antitumor Sulfonylhydrazines: Design, Structure–Activity Relationships, Resistance Mechanisms, and Strategies for Improving Therapeutic Utility;Journal of Medicinal Chemistry;2015-02-09
4. Influence of Glutathione and Glutathione S-transferases on DNA Interstrand Cross-Link Formation by 1,2-Bis(methylsulfonyl)-1-(2-chloroethyl)hydrazine, the Active Anticancer Moiety Generated by Laromustine;Chemical Research in Toxicology;2014-07-17
5. Influence of Phosphate and Phosphoesters on the Decomposition Pathway of 1,2-Bis(methylsulfonyl)-1-(2-chloroethyhydrazine (90CE), the Active Anticancer Moiety Generated by Laromustine, KS119, and KS119W;Chemical Research in Toxicology;2014-03-24