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基于生物电阻抗细胞培养平台的药物和生物活性分子筛选

Drug and bioactive molecule screening based on a bioelectrical impedance cell culture platform.

作者信息

Ramasamy Sakthivel, Bennet Devasier, Kim Sanghyo

机构信息

Department of Bionanotechnology, Gachon University, Gyeonggi-Do, Republic of Korea.

Department of Bionanotechnology, Gachon University, Gyeonggi-Do, Republic of Korea ; Graduate Gachon Medical Research Institute, Gil Medical Center, Incheon, Republic of Korea.

出版信息

Int J Nanomedicine. 2014 Dec 10;9:5789-809. doi: 10.2147/IJN.S71128. eCollection 2014.

Abstract

This review will present a brief discussion on the recent advancements of bioelectrical impedance cell-based biosensors, especially the electric cell-substrate impedance sensing (ECIS) system for screening of various bioactive molecules. The different technical integrations of various chip types, working principles, measurement systems, and applications for drug targeting of molecules in cells are highlighted in this paper. Screening of bioactive molecules based on electric cell-substrate impedance sensing is a trial-and-error process toward the development of therapeutically active agents for drug discovery and therapeutics. In general, bioactive molecule screening can be used to identify active molecular targets for various diseases and toxicity at the cellular level with nanoscale resolution. In the innovation and screening of new drugs or bioactive molecules, the activeness, the efficacy of the compound, and safety in biological systems are the main concerns on which determination of drug candidates is based. Further, drug discovery and screening of compounds are often performed in cell-based test systems in order to reduce costs and save time. Moreover, this system can provide more relevant results in in vivo studies, as well as high-throughput drug screening for various diseases during the early stages of drug discovery. Recently, MEMS technologies and integration with image detection techniques have been employed successfully. These new technologies and their possible ongoing transformations are addressed. Select reports are outlined, and not all the work that has been performed in the field of drug screening and development is covered.

摘要

本综述将简要讨论基于生物电阻抗的细胞生物传感器的最新进展,特别是用于筛选各种生物活性分子的细胞-基质电阻抗传感(ECIS)系统。本文重点介绍了各种芯片类型、工作原理、测量系统以及细胞中分子药物靶向应用的不同技术整合。基于细胞-基质电阻抗传感筛选生物活性分子是一个反复试验的过程,旨在开发用于药物发现和治疗的治疗活性剂。一般来说,生物活性分子筛选可用于在细胞水平以纳米级分辨率识别各种疾病的活性分子靶点和毒性。在新药或生物活性分子的创新和筛选中,化合物在生物系统中的活性、功效和安全性是确定候选药物所基于的主要关注点。此外,化合物的药物发现和筛选通常在基于细胞的测试系统中进行,以降低成本和节省时间。而且,该系统可以在体内研究中提供更相关的结果,以及在药物发现的早期阶段对各种疾病进行高通量药物筛选。最近,微机电系统技术以及与图像检测技术的集成已成功应用。本文将探讨这些新技术及其可能正在进行的变革。文中概述了部分报告,并未涵盖药物筛选和开发领域已开展的所有工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6966/4266242/ba40d0ee2f62/ijn-9-5789Fig1.jpg

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