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Microfluidics for Single Molecule Detection and Material Processing

机译:用于单分子检测和材料处理的微流体

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摘要

In the cancer research, it is important to understand protein dynamics which are involved in cell signaling. Therefore, particular protein detection and analysis of target protein behavior are indispensable for current basic cancer research. However, it usually performed by conventional biochemical approaches, which require long process time and a large amount of samples. We have been developed the new applications based on microfluidics and Raster image Correlation spectroscopy (RICS) techniques. A simple microfluidic 3D hydrodynamic flow focusing device has been developed for quantitative determinations of target protein concentrations. The analyte stream was pinched not only horizontally, but also vertically by two sheath streams by introducing step depth cross junction structure. As a result, a triangular cross-sectional flow profile was formed and the laser was focused on the top of the triangular shaped analyte stream. Through this approach, the target protein concentration was successfully determined in cell lysate samples. The RICS technique has been applied to characterize the dynamics of protein 53 (p53) in living cells before and after the treatment with DNA damaging agents. P53 tagged with Green Fluores-cent Protein (GFP) were incubated with and without DNA damaging agents, cisplatin or eptoposide. Then, the diffusion coefficient of GFP-p53 was determined by RICS and it was significantly reduced after the drug treatment while that of the one without drug treatment was not. It is suggested that the drugs induced the interaction of p53 with either other proteins or DNA. This result demonstrates that RICS is able to detect protein-protein or protein-DNA interactions in living cells and it may be useful for the drug screening.As another application of microfluidics, an integrated microfluidic platform was developed for generating collagen microspheres with encapsulation of viable cells. The platform integrated four automated functions on a microfluidic chip, (1) collagen solution cooling system, (2) cell-in-collagen microdroplet generation, (3) collagen microdroplet polymerization, and (4) incubation and extraction of the microspheres. This platform provided a high throughput and easy way to generate uniform dimensions of collagen microspheres encapsulating viable cells that were able to proliferate for more than 1 week.
机译:在癌症研究中,重要的是了解细胞信号传导中涉及的蛋白质动力学。因此,对于当前的基础癌症研究,特定的蛋白质检测和靶蛋白质行为的分析是必不可少的。然而,它通常通过常规的生化方法进行,这需要较长的处理时间和大量的样品。我们已经开发了基于微流体技术和光栅图像相关光谱技术(RICS)的新应用程序。已经开发了一种简单的微流体3D流体动力聚焦装置,用于定量测定目标蛋白质浓度。通过引入台阶深度交叉连接结构,分析物流不仅在水平方向而且在垂直方向上被两条鞘流夹住。结果,形成了三角形的横截面流动轮廓,并且将激光聚焦在三角形的分析物流的顶部。通过这种方法,成功地确定了细胞裂解液样品中的目标蛋白浓度。 RICS技术已被用于表征DNA破坏剂处理前后活细胞中蛋白质53(p53)的动力学。将标记有绿色荧光蛋白(GFP)的P53与和不与DNA破坏剂,顺铂或肽苷一起孵育。然后,通过RICS确定GFP-p53的扩散系数,并且在药物处理后其显着降低,而未进行药物处理的则没有。提示该药物可诱导p53与其他蛋白质或DNA相互作用。该结果表明,RICS能够检测活细胞中的蛋白质-蛋白质或蛋白质-DNA相互作用,并且可能对药物筛选有用。作为微流体的另一种应用,开发了一种集成的微流体平台,该平台用于产生胶原蛋白微球并包裹活菌。细胞。该平台在微流控芯片上集成了四个自动化功能,(1)胶原蛋白溶液冷却系统,(2)胶原蛋白细胞内微滴生成,(3)胶原蛋白微滴聚合,以及(4)微球的孵育和提取。该平台提供了高通量和简便的方法来生成均匀尺寸的胶原蛋白微球,其中包囊了能够存活超过1周的活细胞。

著录项

  • 作者

    Hong Sung Min;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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