药物开发中的骨毒性研究:当前和新兴技术综述。

IF 4.1 3区 医学 Q2 TOXICOLOGY
Anik Tuladhar, Magali Guffroy, Sjoerd J Finnema, Romy Christmann, Terry R Van Vleet, Shuaib Ali Khan Mayana, Stacey Fossey
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引用次数: 0

摘要

在药物开发过程中评估和表征骨毒性对确保新疗法的安全性至关重要。药物可以直接影响骨细胞或通过全身作用间接影响骨成分和质量,导致骨密度、重塑和骨折风险的改变。已知对骨骼有害的药物包括抗糖尿病药、非甾体抗炎药(NSAIDs)、抗病毒药物、化疗药物和类固醇。评估和研究骨毒性有多种方法,包括体内动物模型、体外器官培养和体外细胞培养。除了使用骨显微镜检查和临床病理参数(钙、磷和碱性磷酸酶)对体内动物模型进行常规评估外,其他工具,如骨转换的血清生物标志物、先进的成像方法和组织形态计量学分析,为骨微结构和重塑过程提供了额外的见解。新兴的体外方法,如微生理系统(器官芯片)技术,模拟骨的动态环境,为毒理学家研究药物诱导的骨毒性提供了有用的工具。硅模型越来越被认为是评估药物诱导骨毒性的关键工具,为传统的体外和体内方法提供了一种补充方法。机制模型,如药代动力学-药效学(PK-PD)框架,模拟重塑动力学,模拟药物代谢和暴露,以探索骨和软骨毒性风险,而有限元模型模拟细胞相互作用和机械应力反应,用于骨骼毒性预测。这篇综述的目的是评估骨生物学的关键特征受治疗影响的例子和描述技术评估骨毒性在药物开发过程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Bone Toxicity in Drug Development: Review of Current and Emerging Technologies.

Assessment and characterization of bone toxicity during drug development is important to ensure the safety of new therapeutics. Drugs can affect bone composition and quality either directly on bone cells or indirectly via systemic effects, leading to alterations in bone density, remodeling and fracture risk. Drug classes known to have harmful effects on bone include antidiabetics, non-steroidal anti-inflammatory drugs (NSAIDs), antivirals, chemotherapeutics, and steroids. Various methods are available to assess and investigate bone toxicity including in vivo animal models, ex vivo organ cultures, and in vitro cell cultures. In addition to routine assessment with in vivo animal models using microscopic examination of bone and clinical pathology parameters (calcium, phosphorus and alkaline phosphatase), other tools such as serum biomarkers of bone turnover, advanced imaging approaches, and histomorphometric analyses provide additional insight into bone microarchitecture and the remodeling process. Emerging in vitro methods, such as microphysiological systems (organ-on-a-chip) technologies, simulating bone's dynamic environment, offer toxicologists useful tools to study drug-induced bone toxicity. In silico models are increasingly recognized as critical tools in assessing drug-induced bone toxicity, offering a complementary approach to traditional in vitro and in vivo methods. Mechanistic models such as pharmacokinetic-pharmacodynamic (PK-PD) frameworks simulate remodeling dynamics and simulate drug metabolism and exposure to explore risk of bone and cartilage toxicity, while finite element models simulate cellular interactions and mechanical stress responses for skeletal toxicity predictions. This review aims to evaluate key features of bone biology impacted by therapeutics with examples and describe techniques for assessing bone toxicity during drug development.

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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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