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A simple method for producing multiple copies of controlled release small molecule microarrays for cell-based screening

机译:用于生产基于细胞的筛选的控制释放小分子微阵列的多个拷贝的简单方法

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Traditional drug discovery involves the screening of lead compounds from a chemical library by using cell-based high throughput screening (HTS) procedures. This has created a demand for the development of cell-based microarray chips for HTS of compounds. Although several cell-based microarray devices and procedures for screening of chemical libraries have been reported, each has limitations in terms of simplicity, speed, and cost. Here, we sought to make a simple method for producing multiple copiesof microarray chips for the controlled release of small molecules during cell-based screening. Arrays of polytetrafluoroethylene microchannels were set in poly(dimethylsilox-ane) and were formed in a metal mold. Subsequently, a biodegradable polymer, PLGAs, with chemical compounds was injected into each channel, and the array was sliced perpendicular to the channels to create multiple copies of the microarray chip. After seeding the cells on the microarray chip, we were able to successfully control thediffusion of small molecules and locally introduce the compounds into cells. The described method enables the production of multiple copies of the chip by using an easy, rapid, and inexpensive array fabrication without any specialized devices. Moreover,screening using the microarray chip minimizes the consumption ofcells and chemicals. Both the biodegradable material and compound injected into each channel can be individually tuned for optimized performance. Therefore, we expect that this method will be useful for developing cell-based HTS assays for small chemical compounds to find drug candidates.
机译:传统的药物发现涉及通过使用基于细胞的高通量筛选(HTS)程序来筛选来自化学文库的铅化合物。这创造了对化合物HTS的基于细胞的微阵列芯片的需求。虽然已经报道了几种基于细胞的微阵列装置和筛选化学文库的程序,但每个基于细胞的微阵列装置和用于筛选化学文库的过程在简单,速度和成本方面具有局限性。在这里,我们寻求一种简单的方法,用于在基于细胞的筛选期间为小分子的受控释放产生多拷贝的微阵列芯片。聚四氟乙烯微通道阵列被设定为聚(二甲基硅酸钠-NE),并形成为金属模具。随后,将可生物降解的聚合物,用化合物注入每个通道中,并且阵列垂直于通道切割以产生微阵列芯片的多个副本。在播种微阵列芯片上的细胞后,我们能够成功地控制小分子的脊,并将化合物局部将化合物引入细胞中。所描述的方法通过使用没有任何专用设备的容易,快速和廉价的阵列制造,可以通过使用易于快速,快速和廉价的阵列制造来生产多个副本。此外,使用微阵列芯片筛选最小化Cells和化学物质的消耗。可以单独调谐到每个通道中的可生物降解的材料和化合物,以便优化性能。因此,我们预期该方法对于开发基于细胞的HTS测定对于小型化学化合物来说是有用的,以找到药物候选物。

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