Identification of human metabolites of fast skeletal troponin activators Tirasemtiv and Reldesemtiv for doping control purposes.

IF 2.6 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Drug Testing and Analysis Pub Date : 2024-08-13 DOI:10.1002/dta.3786
Luisa Euler, Kim Deinert, Felicitas Wagener, Katja Walpurgis, Mario Thevis
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Abstract

The fast skeletal troponin activators (FSTAs) Reldesemtiv and Tirasemtiv were developed for patients suffering from neuro-degenerative diseases of the motor nervous system, e.g. amyotrophic lateral sclerosis (ALS). The drug candidates can increase the sensitivity of troponin C to calcium by selectively activating the troponin complex resulting in increased skeletal muscle contraction. Although the development of the drug candidates is currently discontinued because of missed end points in phase III clinical studies with patients with ALS, phase I clinical trials showed an increase in muscle contraction force in healthy humans. This effect could be abused by athletes to enhance performance in sports. As the substances are listed on the 2024 edition of the World Anti-Doping Agency's Prohibited List, the aim of this study was to identify and characterize metabolites of Reldesemtiv and Tirasemtiv to ensure their reliable identification in doping control analyses. The biotransformation of the drug candidates was studied in vitro using pooled human liver microsomes and 3D cultivated human hepatic cells of the cell line HepaRG, yielding a total of 11 metabolites of Reldesemtiv and eight of Tirasemtiv. In addition, a human elimination study was conducted to investigate the metabolism and elimination profile of Tirasemtiv and Reldesemtiv in vivo, suggesting the N-glucuronide of Tirasemtiv and hydroxylated 3-fluoro-2-(3-fluoro-1-methylcyclobutyl)pyridine as well as its glucuronide as suitable target analytes for routine doping controls. Applying a validating HPLC-MS/MS method, optimized to detect Reldesemtiv and Tirasemtiv in human urine, microdosing (50 μg) of each substance was traceable for 24-72 h.

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为兴奋剂控制目的鉴定快速骨骼肌钙蛋白激活剂 Tirasemtiv 和 Reldesemtiv 的人体代谢物。
快速骨骼肌钙蛋白激活剂(FSTA)Reldesemtiv 和 Tirasemtiv 是专为运动神经系统神经退行性疾病(如肌萎缩性脊髓侧索硬化症)患者开发的。候选药物可通过选择性激活肌钙蛋白复合物,提高肌钙蛋白 C 对钙的敏感性,从而增强骨骼肌的收缩力。虽然候选药物的开发工作目前因 ALS 患者的 III 期临床研究未达到终点而中止,但 I 期临床试验显示,健康人的肌肉收缩力有所增加。运动员可以滥用这种效果来提高运动成绩。由于这两种物质已被列入 2024 年版的世界反兴奋剂机构禁用清单,因此本研究的目的是对 Reldesemtiv 和 Tirasemtiv 的代谢物进行鉴定和表征,以确保在兴奋剂控制分析中可靠地识别这两种物质。利用汇集的人类肝脏微粒体和三维培养的细胞系 HepaRG 人类肝细胞,对候选药物的生物转化进行了体外研究,结果发现 Reldesemtiv 共有 11 种代谢物,Tirasemtiv 共有 8 种代谢物。此外,还进行了一项人体消除研究,以调查 Tirasemtiv 和 Reldesemtiv 在体内的代谢和消除情况,结果表明 Tirasemtiv 的 N-葡萄糖醛酸苷和羟化的 3-氟-2-(3-氟-1-甲基环丁基)吡啶及其葡萄糖醛酸苷适合作为常规兴奋剂检测的目标分析物。采用经过优化的 HPLC-MS/MS 验证方法检测人体尿液中的 Reldesemtiv 和 Tirasemtiv,每种物质的微量剂量(50 μg)可追溯 24-72 小时。
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来源期刊
Drug Testing and Analysis
Drug Testing and Analysis BIOCHEMICAL RESEARCH METHODS-CHEMISTRY, ANALYTICAL
CiteScore
5.90
自引率
24.10%
发文量
191
审稿时长
2.3 months
期刊介绍: As the incidence of drugs escalates in 21st century living, their detection and analysis have become increasingly important. Sport, the workplace, crime investigation, homeland security, the pharmaceutical industry and the environment are just some of the high profile arenas in which analytical testing has provided an important investigative tool for uncovering the presence of extraneous substances. In addition to the usual publishing fare of primary research articles, case reports and letters, Drug Testing and Analysis offers a unique combination of; ‘How to’ material such as ‘Tutorials’ and ‘Reviews’, Speculative pieces (‘Commentaries’ and ‘Perspectives'', providing a broader scientific and social context to the aspects of analytical testing), ‘Annual banned substance reviews’ (delivering a critical evaluation of the methods used in the characterization of established and newly outlawed compounds). Rather than focus on the application of a single technique, Drug Testing and Analysis employs a unique multidisciplinary approach to the field of controversial compound determination. Papers discussing chromatography, mass spectrometry, immunological approaches, 1D/2D gel electrophoresis, to name just a few select methods, are welcomed where their application is related to any of the six key topics listed below.
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