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Rapid inoculation of single bacteria into parallel picoliter fermentation chambers

机译:快速将单个细菌接种到并联的皮升发酵室中

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Microfluidic single-cell cultivation devices have been successfully utilized in a variety of biological research fields. One major obstacle to the successful implementation of high throughput single-cell cultivation technology is the requirement for a simple, fast and reliable cell inoculation procedure. In the present report, an air-bubble-based cell loading methodology is described and validated for inoculating single bacteria into multiple picoliter sized growth chambers arranged in a highly parallel manner. It is shown that the application of the injected air bubble can serve as a reproducible mechanism to modify laminar flow conditions. In this way, convective flow was temporarily induced in more than 1000 cultivation chambers simultaneously, which under normal conditions operate exclusively under diffusive mass transport. Within an inoculation time of 100 s, Corynebacterium glutamicum cells were inoculated by convection at minimal stress level and single bacteria remain successfully trapped by cell-wall interactions. The procedure is easy, fast, gentle and requires only minimal fluidic control and equipment. The technique is well suited for microbial cell loading into commonly used microfluidic growth sites arranged in parallel intended for high throughput single-cell analysis...
机译:微流体单细胞培养装置已成功应用于各种生物学研究领域。成功实施高通量单细胞培养技术的一个主要障碍是对简单,快速和可靠的细胞接种程序的要求。在本报告中,描述并验证了基于气泡的细胞加载方法,该方法可将单个细菌接种到以高度平行的方式排列的多个皮升大小的生长室中。结果表明,所注入的气泡的施加可以用作改变层流条件的可再现机制。这样,对流同时在1000个以上的培养室中暂时引起,在正常条件下,对流仅在扩散物质传输下运行。在100 s的接种时间内,通过对流以最小的应力水平接种谷氨酸棒杆菌细胞,并且单个细菌仍通过细胞壁相互作用成功捕获。该过程简单,快速,轻柔,只需要最少的流体控制和设备。该技术非常适合将微生物细胞加载到平行排列的常用微流体生长位点中,以进行高通量单细胞分析。

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