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使用微流控装置(MFD)在HepG2细胞中进行对乙酰氨基酚的高通量细胞毒性测试系统

High-Throughput Cytotoxicity Testing System of Acetaminophen Using a Microfluidic Device (MFD) in HepG2 Cells.

作者信息

Ju Seon Min, Jang Hyun-Jun, Kim Kyu-Bong, Kim Jeongyun

机构信息

a Department of Biomedical Science , Dankook University Graduate School, Dankook University , Cheonan , Chungnam , Republic of Korea.

b College of Pharmacy , Dankook University, Dankook University , Cheonan , Chungnam , Republic of Korea.

出版信息

J Toxicol Environ Health A. 2015;78(16):1063-72. doi: 10.1080/15287394.2015.1068650. Epub 2015 Aug 4.

Abstract

A lab-on-a-chip (LOC) is a microfluidic device (MFD) that integrates several lab functions into a single chip of only millimeters in size. LOC provides several advantages, such as low fluidic volumes consumption, faster analysis, compactness, and massive parallelization. These properties enable a microfluidic-based high-throughput drug screening (HTDS) system to acquire cell-based abundant cytotoxicity results depending on linear gradient concentration of drug with only few hundreds of microliters of the drug. Therefore, a microfluidic device was developed containing an array of eight separate microchambers for cultivating HepG2 cells to be exposed to eight different concentrations of acetaminophen (APAP) through a diffusive-mixing-based concentration gradient generator. Every chamber array with eight different concentrations (0, 5.7, 11.4, 17.1, 22.8, 28.5, 34.2, or 40 mM) APAP had four replicating cell culture chambers. Consequently, 32 experimental results were acquired with a single microfluidic device experiment. The microfluidic high-throughput cytotoxicity device (μHTCD) and 96-well culture system showed comparable cytotoxicity results with increasing APAP concentration of 0 to 40 mM. The HTDS system yields progressive concentration-dependent cytotoxicity results using minimal reagent and time. Data suggest that the HTDS system may be applicable as alternative method for cytotoxicity screening for new drugs in diverse cell types.

摘要

芯片实验室(LOC)是一种微流控设备(MFD),它将多种实验室功能集成到一个尺寸仅为几毫米的芯片中。LOC具有诸多优势,如流体体积消耗低、分析速度快、结构紧凑以及可大规模并行处理。这些特性使基于微流控的高通量药物筛选(HTDS)系统能够仅用几百微升药物,依据药物的线性梯度浓度获得基于细胞的丰富细胞毒性结果。因此,开发了一种微流控设备,它包含一个由八个独立微腔组成的阵列,用于培养HepG2细胞,通过基于扩散混合的浓度梯度发生器使细胞暴露于八种不同浓度的对乙酰氨基酚(APAP)中。每个包含八种不同浓度(0、5.7、11.4、17.1、22.8、28.5、34.2或40 mM)APAP的腔室阵列都有四个重复的细胞培养腔室。因此,通过一次微流控设备实验可获得32个实验结果。微流控高通量细胞毒性设备(μHTCD)和96孔培养系统在APAP浓度从0增加到40 mM时显示出相当的细胞毒性结果。HTDS系统使用最少的试剂和时间产生了浓度依赖性的渐进细胞毒性结果。数据表明,HTDS系统可能作为一种替代方法,用于在多种细胞类型中对新药进行细胞毒性筛选。

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