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UNIVERSAL MICROCARRIERS FOR MICROFLUIDIC ASSAYS

机译:微流态分析通用微载体

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Bead and cell suspension based flow-through assays are popular for high throughput biological analysis. Several technologies incorporate a tagging scheme with beads to enable multiplexing. Modem flow-through systems such as flow cytometers and cell sorters are large, bullky and expensive; consequently, much research has been performed using microfluidics to miniaturize these systems. However, several problems remain with these systems, notably it remains difficult to perform manipulations on the beads (or cells), and in the case of multiplexed systems, it remains difficult to read the tags quickly. In this paper, we present a micromachined micro-carrier, referred to as a 'micropallet', designed to move through a microfluidic device, which helps to solve several of these problems. Micropallets are small carrier structures, micromachined out of plastic or other materials, that are used to carry attached biological or chemical samples through a microfluidic system (e.g., DNA, RNA, proteins, antibodies, adherent cells, organisms). Similar to conventional factory pallets that carry a product through an automated manufacturing line, micropallets are engineered to carry their cargo through a micro-scale system. Thus micropallets may contain shapes, structures and materials designed to interact with and work in a microfluidic system, such as for docking, sorting, manipulation and readout. Additionally, micropallets may include bar codes or other markings, and be engineered to optimally suit the cargo they carry (for example, a micropallet might contain 3-D structures and treated sections for cells, molecules or organisms to attach). Results are presented for the use of micropallets in cell assays, DNA assays and antibody assays. Micropallets may be designed to carry a sample through a microfluidic system or for use in a static assay system, enabling versatile customisation of the micropallets and flow system for design of a programmable system that interacts with the micropallets for detection, control and manipulation.
机译:基于珠子和细胞悬浮液的流通分析法在高通量生物学分析中很受欢迎。几种技术结合了带有磁珠的标记方案以实现多路复用。流式细胞仪和细胞分选仪等现代流通系统体积大,体积大且价格昂贵。因此,使用微流体技术进行了许多研究以使这些系统小型化。但是,这些系统仍然存在一些问题,尤其是在珠子(或细胞)上执行操作仍然很困难,在多路复用系统的情况下,仍然难以快速读取标签。在本文中,我们提出了一种微机械加工的微载体,称为“微托盘”,旨在移动通过微流体装置,从而有助于解决其中的一些问题。微型托盘是由塑料或其他材料进行微加工而成的小型载体结构,用于通过微流体系统(例如DNA,RNA,蛋白质,抗体,粘附细胞,生物)携带附着的生物或化学样品。与通过自动生产线运送产品的传统工厂托盘相似,微型托盘经过了工程设计,可以通过微型系统运送货物。因此,微托盘可以包含被设计成与微流体系统相互作用并在其中工作的形状,结构和材料,例如用于对接,分选,操纵和读出。另外,微托盘可以包括条形码或其他标记,并经过工程设计以最适合其运载的货物(例如,微托盘可能包含3-D结构和附着了细胞,分子或生物的已处理部分)。给出了在细胞测定,DNA测定和抗体测定中使用微托盘的结果。可以将微托盘设计成通过微流体系统携带样品或用于静态测定系统,从而实现微托盘和流动系统的通用定制,以设计与微托盘相互作用以进行检测,控制和操作的可编程系统。

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