Toxicology Division, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology (Govt. of India), Poojapura, Trivandrum 695012, Kerala, India.
Toxicology Division, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology (Govt. of India), Poojapura, Trivandrum 695012, Kerala, India.
J Pharm Sci. 2022 Jan;111(1):18-31. doi: 10.1016/j.xphs.2021.07.014. Epub 2021 Jul 26.
The expeditious advancement in the organ on chip technology provided a phase change to the conventional in vitro tests used to evaluate absorption, distribution, metabolism, excretion (ADME) studies and toxicity assessments. The demand for an accurate predictive model for assessing toxicity and reducing the potential risk factors became the prime area of any drug delivery process. Researchers around the globe are welcoming the incorporation of organ-on-a-chips for ADME and toxicity evaluation. Organ-on-a-chip (OOC) is an interdisciplinary technology that evolved as a contemporary in vitro model for the pharmacokinetics and pharmacodynamics (PK-PD) studies of a proposed drug candidate in the pre-clinical phases of drug development. The OOC provides a platform that mimics the physiological functions occurring in the human body. The precise flow control systems and the rapid sample processing makes OOC more advanced than the conventional two-dimensional (2D) culture systems. The integration of various organs as in the multi organs-on-a-chip provides more significant ideas about the time and dose dependant effects occurring in the body when a new drug molecule is administered as part of the pre-clinical times. This review outlines the comprehensive development in the organ-on-a-chip technology, various OOC models and its drug development applications, toxicity evaluation and efficacy studies.
器官芯片技术的迅速发展改变了传统的用于评估吸收、分布、代谢、排泄(ADME)研究和毒性评估的体外测试方法。人们需要建立一种准确的预测模型来评估毒性并降低潜在的风险因素,这成为药物输送过程的主要关注点。全球的研究人员都欢迎将器官芯片技术用于 ADME 和毒性评估。器官芯片(OOC)是一种跨学科技术,作为一种用于药物开发临床前阶段候选药物药代动力学和药效学(PK-PD)研究的现代体外模型而发展起来。OOC 提供了一个模拟人体生理功能的平台。精确的流量控制系统和快速的样品处理使得 OOC 比传统的二维(2D)培养系统更先进。各种器官的整合,如多器官芯片,提供了更多关于新药物分子作为临床前时间的一部分给药时,体内发生的时间和剂量依赖性影响的重要信息。本综述概述了器官芯片技术、各种 OOC 模型及其在药物开发中的应用、毒性评估和疗效研究的全面发展。