Huang Wen-Yen, Liu Ching-An, Fan Rong-Syuan, Lin Zhi-Da, Wang Kuan, Lee Gwo-Bin
Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan.
Graduate Institute of Nanomedicine and Medical Engineering, Taipei Medical School, Taipei 11031, Taiwan.
Biomicrofluidics. 2017 May 15;11(3):034109. doi: 10.1063/1.4983614. eCollection 2017 May.
Drug cocktails have been popular for a variety of therapies of complicated diseases. Nevertheless, it is a tediously challenging task to optimize formulations, especially using traditional methods. Hence, an automatic system capable of precise dispensing multiple drugs is of great need. Herein, a new integrated microfluidic system combined with a two-axis traverse module was developed to dispense and mix a small amount of drug combination precisely and automatically. This on-chip dispensing process could be performed with a precise and accurate manner when compared to the manual operations. The efficacy of both single and multiple drugs could be examined through the developed microfluidic system with extremely low variation of drug formulations. Analysis of cell viabilities for normal and tumor cells was also performed to verify potential drug combinations. It is envisioned that this automatic system, which is flexible to combine with standard cell analysis methods and novel drug formulation algorithm, could provide precise and high-throughput drug cocktail formulations and expedite the drug screening processes.
药物鸡尾酒疗法在多种复杂疾病的治疗中很受欢迎。然而,优化配方是一项极其具有挑战性的任务,尤其是使用传统方法时。因此,非常需要一种能够精确分配多种药物的自动系统。在此,开发了一种结合双轴横向移动模块的新型集成微流控系统,以精确、自动地分配和混合少量药物组合。与手动操作相比,这种芯片上的分配过程可以以精确和准确的方式进行。通过所开发的微流控系统,可以检测单一药物和多种药物的疗效,且药物配方的变化极小。还对正常细胞和肿瘤细胞的细胞活力进行了分析,以验证潜在的药物组合。可以设想,这种自动系统能够灵活地与标准细胞分析方法和新型药物配方算法相结合,能够提供精确且高通量的药物鸡尾酒配方,并加快药物筛选过程。