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Programmable, Pneumatically Actuated Microfluidic Device with an Integrated Nanochannel Array To Track Development of Individual Bacteria

机译:具有集成纳米通道阵列的可编程气动气动微流体装置,可跟踪单个细菌的发育

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We describe a microfluidic device with an integrated nanochannel array to trap individual bacteria and monitor growth and reproduction of lineages over multiple generations. Our poly(dimethylsiloxane) device comprises a pneumatically actuated nanochannel array that includes 1280 channels with widths from 600 to 1000 nm to actively trap diverse bacteria. Integrated pumps and valves perform on-chip fluid and cell manipulations that provide dynamic control of cell loading and nutrient flow, permitting chemostatic growth for extended periods of time (typically 12 to 20 h). Nanochannels confine bacterial growth to a single dimension, facilitating high-resolution, time-lapse imaging and tracking of individual cells. We use the device to monitor the growth of single bacterial cells that undergo symmetric (Bacillus subtilis) and asymmetric (Caulobacter crescentus) division and reconstruct their lineages to correlate growth measurements through time and among related cells. Furthermore, we monitor the motility state of single B. subtilis cells across multiple generations by the expression of a fluorescent reporter protein and observe that the state of the epigenetic switch is correlated over five generations. Our device allows imaging of cellular lineages with high spatiotemporal resolution to facilitate the analysis of biological processes spanning multiple generations.
机译:我们描述了一种具有集成纳米通道阵列的微流控设备,可捕获单个细菌并监控多代人的谱系生长和繁殖。我们的聚(二甲基硅氧烷)设备包括一个气动纳米通道阵列,该阵列包括1280个宽度从600到1000 nm的通道,以主动捕获各种细菌。集成的泵和阀执行芯片上的流体和细胞操作,可动态控制细胞的负载和营养液流动,从而使化学抑制剂的生长时间延长(通常为12到20小时)。纳米通道将细菌的生长限制在一个维度上,以促进高分辨率,延时成像和单个细胞的跟踪。我们使用该设备监视经历对称(枯草芽孢杆菌)和不对称(新月形杆菌)分裂的单个细菌细胞的生长,并重建它们的谱系,以关联通过时间和相关细胞之间的生长测量值。此外,我们通过荧光报告蛋白的表达监测了多代中单个枯草芽孢杆菌细胞的运动状态,并观察到表观遗传开关的状态在五代之间是相关的。我们的设备允许以高时空分辨率对细胞谱系进行成像,以促进跨多代生物过程的分析。

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