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A microfluidic bioreactor based on hydrogel-entrapped E. coli: Cell viability, lysis, and intracellular enzyme reactions

机译:基于水凝胶包裹的大肠杆菌的微流生物反应器:细胞活力,裂解和细胞内酶反应

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Viable E. coli cells were entrapped in hydrogel micropatches photopolymerized within microfluidic systems. The microfluidic channels and the micropatches have sizes on the order of 100-500 mum. Small molecules, such as dyes and surfactants, present in the solution surrounding the hydrogel, are able to diffuse into the gel and encounter the cells, but the cells are sufficiently large to be retained. For example, sodium dodecyl sulfate is a lysis agent that is able to penetrate the hydrogel and disrupt the cellular membrane. Entrapment of viable cells within hydrogels, followed by lysis, could provide a convenient means for preparing biocatalysts without the need for enzyme extraction and purification. Hydrogel-immobilized cells are able to carry out chemical reactions within microfluidic channels. Specifically, a nonfluorescent dye, BCECF-AM, is able to penetrate both the hydrogel and the bacterial membrane and be converted into a fluorescent form (BCECF) by the interior cellular machinery. These results suggest that cells immobilized within microfluidic channels can act as sensors for small molecules and as bioreactors for carrying out reactions. [References: 33]
机译:将活的大肠杆菌细胞捕获在微流体系统内光聚合的水凝胶微斑中。微流体通道和微贴片具有大约100-500μm的尺寸。存在于水凝胶周围溶液中的小分子,例如染料和表面活性剂,能够扩散到凝胶中并遇到细胞,但是细胞足够大以至于可以保留。例如,十二烷基硫酸钠是能够穿透水凝胶并破坏细胞膜的裂解剂。将活细胞截留在水凝胶中,然后进行裂解,可以为制备生物催化剂提供方便的方法,而无需进行酶提取和纯化。固定有水凝胶的细胞能够在微流体通道内进行化学反应。具体而言,非荧光染料BCECF-AM能够穿透水凝胶和细菌膜,并通过内部细胞机械转换为荧光形式(BCECF)。这些结果表明,固定在微流体通道内的细胞可以充当小分子的传感器和进行反应的生物反应器。 [参考:33]

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