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使用微量电化学高效液相色谱法分析磷酸盐缓冲液和人血浆中的BNP7787硫醇-二硫键交换反应。

Analysis of BNP7787 thiol-disulfide exchange reactions in phosphate buffer and human plasma using microscale electrochemical high performance liquid chromatography.

作者信息

Shanmugarajah Dakshine, Ding Daoyuan, Huang Quili, Chen Xinghai, Kochat Harry, Petluru Pavankumar N, Ayala Philippe Y, Parker Aulma R, Hausheer Frederick H

机构信息

BioNumerik Pharmaceuticals, Inc. 8122 Datapoint Drive, Suite 400, San Antonio, TX 78229, USA.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2009 Apr 1;877(10):857-66. doi: 10.1016/j.jchromb.2009.02.056. Epub 2009 Feb 28.

Abstract

BNP7787 (disodium 2,2'-dithio-bis ethane sulfonate; Tavocept) is a novel water-soluble investigational agent that is undergoing clinical development for prevention and mitigation of cisplatin-induced nephrotoxicity. BNP7787 is a disulfide that undergoes thiol-disulfide exchange reactions in vivo with physiological thiols. Mesna-disulfide heteroconjugates that form as a result of these exchange reactions may play a key role in the protection against cisplatin-induced nephrotoxicity. Although several analytical methods have been used to detect thiols and disulfides, they have notable limitations including (i) low sensitivity, (ii) interference by chemical modification by derivatization reagents, and (iii) cumbersome sample preparation. In this paper, a sensitive micro-HPLC-EC method is described that identifies BNP7787 and mesna in plasma and phosphate buffer across a broad concentration range from 500nM to 100microM. This method utilizes a dual electrochemical detector equipped with a wall-jet gold electrode. The approach described here facilitates the identification of BNP7787 and mesna down to nanomolar levels. Although we did not focus on optimizing the approach for other thiol and disulfide compounds, we believe this approach could be optimized and used in the identification of other thiols and disulfides in plasma. The assay requires significantly less sample preparation and does not involve the use of derivatizing agents (i.e., the thiol and disulfide species can be detected directly) and represents an important advance over previous methods. This method was used to detect and quantitate BNP7787 and to monitor and kinetically characterize the interactions of BNP7787 with glutathione, cysteine, cysteinyl-glycine, cysteinyl-glutamate and homocysteine.

摘要

BNP7787(2,2'-二硫代双乙烷磺酸钠;Tavocept)是一种新型水溶性研究药物,正在进行临床开发,用于预防和减轻顺铂诱导的肾毒性。BNP7787是一种二硫化物,在体内与生理硫醇发生硫醇-二硫键交换反应。这些交换反应形成的美司钠-二硫化物杂合物可能在预防顺铂诱导的肾毒性中起关键作用。尽管已经使用了几种分析方法来检测硫醇和二硫化物,但它们存在显著局限性,包括:(i)灵敏度低;(ii)衍生化试剂的化学修饰干扰;(iii)样品制备繁琐。本文描述了一种灵敏的微高效液相色谱-电化学方法,可在500 nM至100 μM的宽浓度范围内识别血浆和磷酸盐缓冲液中的BNP7787和美司钠。该方法使用配备壁喷金电极的双电化学检测器。此处描述的方法有助于将BNP7787和美司钠鉴定到纳摩尔水平。尽管我们没有专注于优化该方法以用于其他硫醇和二硫化物化合物,但我们相信该方法可以优化并用于鉴定血浆中的其他硫醇和二硫化物。该测定所需的样品制备显著减少,并且不涉及使用衍生化试剂(即硫醇和二硫化物物种可直接检测),代表了相对于先前方法的重要进展。该方法用于检测和定量BNP7787,并监测和动力学表征BNP7787与谷胱甘肽、半胱氨酸、半胱氨酰甘氨酸、半胱氨酰谷氨酸和同型半胱氨酸的相互作用。

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