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Miniaturized bead-beatieg device to automate Ml DNA sample preparation processes for Gram-positive bacteria

机译:小型化微珠搅拌装置,可自动进行革兰氏阳性细菌的Ml DNA样品制备过程

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We have developed a miniaturized bead-beating device to automate nucleic acids extraction from Gram-positive bacteria for molecular diagnostics. The microfluidic device was fabricated by sandwiching a monolithic flexible polydimethylsiloxane (PDMS) membrane between two glass wafers (i.e., glass-PDMS-glass), which acted as an actuator for bead collision via its pneumatic vibration without additional lysis equipment. The Gram-positive bacteria, S. aureus and methicillin-resistant S. aureus, were captured on surface-modified glass beads from 1 mL of initial sample solution and in situ lyzed by bead-beating operation. Then, 10 μL or 20 μL of bacterial DNA solution was eluted and amplified successfully by real-time PCR. It was found that liquid volume fraction played a crucial role in determining the cell lysis efficiency in a confined chamber by facilitating membrane deflection and bead motion. The miniaturized bead-beating operation disrupted most of S. aureus within 3 min, which turned out to be as efficient as the conventional benchtop vortexing machine or the enzyme-based lysis technique. The effective cell concentration was significantly enhanced with the reduction of initial sample volume by 50 or 100 times. Combination of such analyte enrichment and in situ bead-beating lysis provided an excellent PCR detection sensitivity amounting to ca. 46 CFU even for the Gram-positive bacteria. The proposed bead-beating microdevice is potentially useful as a nucleic acid extraction method toward a PCR-based sample-to-answer system.
机译:我们已经开发出一种小型化的珠击设备,可以自动从革兰氏阳性细菌中提取核酸,用于分子诊断。该微流体装置是通过在两个玻璃晶片(即玻璃-PDMS-玻璃)之间夹有单块柔性聚二甲基硅氧烷(PDMS)膜而制成的,该玻璃晶片通过其气动振动充当珠子碰撞的致动器,而无需额外的裂解设备。将革兰氏阳性细菌金黄色葡萄球菌和耐甲氧西林的金黄色葡萄球菌从1 mL初始样品溶液中捕获到经过表面修饰的玻璃珠上,并通过打珠操作原位裂解。然后,洗脱10μL或20μL细菌DNA溶液,并通过实时PCR成功扩增。已经发现,液体体积分数通过促进膜的偏转和珠子运动在确定密闭室中的细胞裂解效率中起着至关重要的作用。小型化的打珠操作在3分钟内破坏了大多数金黄色葡萄球菌,其效率与常规台式涡旋机或基于酶的裂解技术一样。有效细胞浓度随着初始样品体积减少50或100倍而显着提高。此类分析物富集和原位磁珠敲打裂解相结合,可提供极佳的PCR检测灵敏度,总计约为。 46 CFU甚至用于革兰氏阳性菌。所提出的敲珠微设备潜在地可用作朝基于PCR的样品到答案系统的核酸提取方法。

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