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羟脲(治疗学和机制):代谢,氨基甲酰亚硝,亚硝酰基,自由基,细胞信号转导和临床应用。

Hydroxyurea (therapeutics and mechanism): metabolism, carbamoyl nitroso, nitroxyl, radicals, cell signaling and clinical applications.

机构信息

Department of Chemistry and Biochemistry, San Diego State University, San Diego, CA 92182, USA.

出版信息

Med Hypotheses. 2011 Jan;76(1):24-31. doi: 10.1016/j.mehy.2010.08.023. Epub 2010 Sep 15.

Abstract

During a century, hydroxyurea has received much attention in relation to its physiological properties. This review mainly deals with the metabolism, mechanism, cell signaling, therapeutic properties, bioactivity, receptors, and toxicity. Metabolism provides insight concerning the mechanism. Carbamoyl nitroso is an intermediate, based on ease of oxidation of the parent and subsequent formation of nitroxyl and nitric oxide. Carbamoyl nitroso bears structural and electrochemical similarity to acyl nitroso from hydroxamic acids, to the phenylhydroxylamine-nitrosobenzene couple, and to α-dicarbonyls. Carbamoyl nitroso may be involved in electron transfer, reactive oxygen species formation, and oxidative stress. Cell signaling plays a significant role in the biological action. The therapeutic properties are discussed with emphasis on cancer, sickle cell disease, HIV, skin, and genes. Promise as a practical medicine is indicated by clinical trials. Toxicity is also included. Carbamoyl nitroso, nitroxyl, nitric oxide, and metal complexes of the parent drug are designated the main actors in the physiological effects. The mechanistic theme is in keeping with prior reports in Medical Hypotheses.

摘要

在一个世纪的时间里,羟基脲因其生理特性而受到广泛关注。本综述主要涉及代谢、机制、细胞信号转导、治疗特性、生物活性、受体和毒性。代谢为机制提供了深入了解。基于母体易氧化和随后形成亚硝酰基和一氧化氮的事实,碳酰胺亚硝酰基是一种中间体。碳酰胺亚硝酰基与来自羟肟酸的酰基亚硝酰基、苯羟胺-亚硝基苯偶联物和α-二羰基化合物具有结构和电化学相似性。碳酰胺亚硝酰基可能参与电子转移、活性氧物质的形成和氧化应激。细胞信号转导在生物学作用中起着重要的作用。治疗特性的讨论重点是癌症、镰状细胞病、HIV、皮肤和基因。临床试验表明羟基脲具有实际应用的潜力。毒性也包括在内。碳酰胺亚硝酰基、亚硝酰基、一氧化氮和母体药物的金属配合物被指定为生理效应的主要作用因子。这一机制主题与《医学假说》之前的报告保持一致。

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