标题: 应用于微流道生物晶片之多反应物样本制备技术
Many-Reactant Sample Preparation on Flow-Based Microfluidic Biochips
作者: 彭圣严
黄俊达
Peng, Sheng-Yan
Huang, Juinn-Dar
电子研究所
关键字: 混合模型;样本制备;微流道生物晶片;成本最小化;mixing model;sample preparation;flow-based microfluidic biochip (FMFB);cost minimization
公开日期: 2016
摘要: 原始的反应试剂或生物样本藉由一连串的混合及稀释,来达到适合生化反应进行之特定浓度的液体,该特定浓度称为目标浓度(target concentration),而这整个步骤称为样本制备程序( sample preparation),它是各种生化反应中必要的步骤之一。目前大部分提出的样本制备技术皆应用在支援[1:1]混合模型的数位微流体生物晶片。在多反应物样本制备程序中,总制备成本为各别原始的反应试剂使用量乘以其试剂成本的总和。CoDOS即为针对总制备成本最小化所发展出适用于数位微流体生物晶片上的多反应物样本制备演算法,其实验成果显着地降低了总制备成本。微流道生物晶片上的混合器可以根据需求划分成多个相同大小的区段,因此微流道生物晶片支援多种混合模型。越多种的混合模型,代表有越高的可能性可以降低总制备成本。因此本论文将提出针对总制备成本最小化所发展出适用于微流道生物晶片上的多反应物样本制备演算法。此演算法将会根据混合器提供的多样混合模型,探索所有可能的混合组合。相较于CoDOS,当混合器划分成八等分且反应物数量为三和七时,此演算法皆可以减少约70%的总制备成本。
Sample preparation, which is essential to many biochemical reactions, is a process that raw reactants follow the proper mixing sequence to achieve a mixture with a specified concentration value, called target concentration. In recent years, many studies have addressed sample preparation problem on digital microfluidic biochips (DMFBs), and these studies only use the [1:1] mixing model. In the many-reactant sample preparation problem, the cost of a reactant in a dilution process is its usage multiplied by its weight, and the total dilution cost is the summation of every reactant’s cost. CoDOS is the first algorithm aiming at cost minimization in many-reactant single-target sample preparation on DMFBs, and the experimental results show that the improvement in the total dilution cost is significant. A Mixer-N, which is a circular channel divided into N equal-sized segments on flow-based microfluidic biochips (FMFBs), can provide various mixing models. The more mixing models are used in a dilution process, the higher chances to reduce the total dilution cost. Thus, we propose a volume-oriented pattern exploration (VOPE) algorithm, aiming at cost minimization for many-reactant single-target sample preparation problem on FMFBs. Compared with CoDOS, VOPE can reduce the total dilution cost by 70% if the mixer-8 is used and the number of reactants is set to 3 and 7.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070350241
http://hdl.handle.net/11536/139491
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