Best practice considerations for nonclinical in vivo cardiovascular telemetry studies in non-rodent species: Delivering high quality QTc data to support ICH E14/S7B Q&As

QT间期 赫尔格 安全药理学 医学 指南 协议(科学) 协调 药理学 临床实习 药品 内科学 麻醉 替代医学 家庭医学 病理 物理 钾通道 声学
作者
Eric I. Rossman,Todd Wisialowski,Hugo M. Vargas,Jean‐Pierre Valentin,Michael G. Rolf,Brian Roche,Steve Riley,Michael K. Pugsley,Jill V. Nichols,Dingzhou Li,Derek J. Leishman,Robert Kleiman,Andrea Greiter‐Wilke,Gary A. Gintant,Michael J. Engwall,Annie Delaunois,Simon Authier
出处
期刊:Journal of Pharmacological and Toxicological Methods [Elsevier BV]
卷期号:123: 107270-107270 被引量:32
标识
DOI:10.1016/j.vascn.2023.107270
摘要

The ICH E14/S7B Questions and Answers (Q&As) guideline introduces the concept of a "double negative" nonclinical scenario (negative hERG assay and negative in vivo QTc study) to demonstrate that a drug does not produce a clinically relevant QT prolongation (i.e., no QT liability). This nonclinical "double negative" data package, along with negative Phase 1 clinical QTc data, may be sufficient to substitute for a clinical Thorough QT (TQT) study in some specific cases. While standalone GLP in vivo cardiovascular studies in non-rodent species are standard practice during nonclinical drug development for small molecule programs, a variety of approaches to the design, conduct, analysis and interpretation are utilized across pharmaceutical companies and contract research organizations (CROs) that may, in some cases, negatively impact the stringent sensitivity needed to fulfill the new Q&As. Subject matter experts from both Pharma and CROs have collaborated to recommend best practices for more robust nonclinical cardiovascular telemetry studies in non-rodent species, with input from clinical and regulatory experts. The aim was to increase consistency and harmonization across the industry and to ensure delivery of high quality nonclinical QTc data to meet the proposed sensitivities defined within the revised ICH E14/S7B Q&As guideline (Q&As 5.1 and 6.1). The detailed best practice recommendations presented here cover the design and execution of the safety pharmacology cardiovascular study, including optimal methods for acquiring, analyzing, reporting, and interpreting the resulting QTc and pharmacokinetic data to allow for direct comparison to clinical exposures and assessment of safety margin for QTc prolongation.
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