Assessing the interplay between off-target promiscuity, cytotoxicity, and tolerability in rodents to improve the safety profile of novel anti-malarial plasmepsin X inhibitors.

IF 3.4 3区 医学 Q2 TOXICOLOGY Toxicological Sciences Pub Date : 2024-07-08 DOI:10.1093/toxsci/kfae086
Helga H J Gerets, Annie Delaunois, Alvaro Cardenas, Reiner Class, Renaud Fleurance, Teresa de Haro, Benoît Laleu, Martin A Lowe, Marie-Luce Rosseels, Jean-Pierre Valentin
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Abstract

Within drug development, high off-target promiscuity as well as potent cytotoxicity, are associated with a high attrition rate. We investigated the safety profile of novel plasmepsin X (PMX) inhibitors for the treatment of malaria. In our screening cascade, a total of 249 PMX compounds were profiled in a panel of in vitro secondary pharmacology assays containing 44 targets (SafetyScreen44™ panel) and in a cytotoxicity assay in HepG2 cells using ATP as an endpoint. Six of the lead compounds were subsequently tested in a 7-day rat toxicology study, and/or in a cardiovascular study in guinea pigs. Overall, compounds with high cytotoxicity in HepG2 cells correlated with high promiscuity (off-target hit rate >20%) in the SafetyScreen44™ panel and were associated with poor tolerability in vivo (decedents, morbidity, adverse clinical signs, or severe cardiovascular effects). Some side effects observed in rats or guinea pigs could putatively be linked with hits in the secondary pharmacological profiling, such as the M1 or M2 muscarinic acetylcholine receptor, opioid µ and/or κreceptors or hERG/CaV1.2/Na+ channels, which were common to > 50% the compounds tested in vivo. In summary, compounds showing high cytotoxicity and high promiscuity are likely to be poorly tolerated in vivo. However, such associations do not necessarily imply a causal relationship. Identifying the targets that cause these undesirable effects is key for early safety risk assessment. A tiered approach, based on a set of in vitro assays, helps selecting the compounds with highest likelihood of success to proceed to in vivo toxicology studies.

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评估啮齿类动物的脱靶杂交性、细胞毒性和耐受性之间的相互作用,以改善新型抗疟疾胰蛋白酶 X 抑制剂的安全性。
在药物开发过程中,高脱靶性和强效细胞毒性与高损耗率有关。我们研究了用于治疗疟疾的新型胰蛋白酶 X(PMX)抑制剂的安全性。在我们的筛选级联中,总共有 249 种 PMX 化合物在包含 44 个靶点的体外二级药理学检测(SafetyScreen44™ 面板)和以 ATP 为终点的 HepG2 细胞细胞毒性检测中进行了分析。随后,对其中六种先导化合物进行了为期 7 天的大鼠毒理学研究和/或豚鼠心血管研究。总体而言,在 HepG2 细胞中具有高细胞毒性的化合物与 SafetyScreen44™ 面板中的高杂合性(脱靶命中率大于 20%)相关,并且与体内耐受性差(死亡、发病、不良临床症状或严重心血管影响)相关。在大鼠或豚鼠身上观察到的一些副作用可能与二级药理学特征描述中的命中点有关,如 M1 或 M2 肌肽乙酰胆碱受体、阿片类 µ 和/或 κ 受体或 hERG/CaV1.2/Na+ 通道,这些受体在体内测试的化合物中占 50%以上。总之,具有高细胞毒性和高混杂性的化合物在体内的耐受性可能很差。然而,这种关联并不一定意味着因果关系。确定导致这些不良反应的靶点是早期安全风险评估的关键。以一系列体外检测为基础的分层方法有助于选择成功可能性最高的化合物进行体内毒理学研究。
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来源期刊
Toxicological Sciences
Toxicological Sciences 医学-毒理学
CiteScore
7.70
自引率
7.90%
发文量
118
审稿时长
1.5 months
期刊介绍: The mission of Toxicological Sciences, the official journal of the Society of Toxicology, is to publish a broad spectrum of impactful research in the field of toxicology. The primary focus of Toxicological Sciences is on original research articles. The journal also provides expert insight via contemporary and systematic reviews, as well as forum articles and editorial content that addresses important topics in the field. The scope of Toxicological Sciences is focused on a broad spectrum of impactful toxicological research that will advance the multidisciplinary field of toxicology ranging from basic research to model development and application, and decision making. Submissions will include diverse technologies and approaches including, but not limited to: bioinformatics and computational biology, biochemistry, exposure science, histopathology, mass spectrometry, molecular biology, population-based sciences, tissue and cell-based systems, and whole-animal studies. Integrative approaches that combine realistic exposure scenarios with impactful analyses that move the field forward are encouraged.
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