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Microfluidic chip-based detection and intraspecies strain discrimination of Salmonella serovars derived from whole blood of septic mice

机译:基于微流控芯片的检测和种内菌株鉴别来源于化脓小鼠全血的沙门氏菌血清型

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摘要

Salmonella is a zoonotic pathogen that poses a considerable public health and economic burden in the United States and worldwide. Resultant human diseases range from enterocolitis to bacteremia to sepsis and are acutely dependent on the particular serovar of Salmonella enterica subsp. enterica, which comprises over 99 of human-pathogenic S. enterica isolates. Point-of-care methods for detection and strain discrimination of Salmonella serovars would thus have considerable benefit to medical, veterinary, and field applications that safeguard public health and reduce industry-associated losses. Here we describe a single, disposable microfluidic chip that supports isothermal amplification and sequence-specific detection and discrimination of Salmonella serovars derived from whole blood of septic mice. The integrated microfluidic electrochemical DNA (IMED) chip consists of an amplification chamber that supports loop-mediated isothermal amplification (LAMP), a rapid, single-temperature amplification method as an alternative to PCR that offers advantages in terms of sensitivity, reaction speed, and amplicon yield. The amplification chamber is connected via a microchannel to a detection chamber containing a reagentless, multiplexed (here biplex) sensing array for sequence-specific electrochemical DNA (E-DNA) detection of the LAMP products. Validation of the IMED device was assessed by the detection and discrimination of S. enterica subsp. enterica serovars Typhimurium and Choleraesuis, the causative agents of enterocolitis and sepsis in humans, respectively. IMED chips conferred rapid (under 2 h) detection and discrimination of these strains at clinically relevant levels (<1,000 CFU/ml) from whole, unprocessed blood collected from septic animals. The IMED-based chip assay shows considerable promise as a rapid, inexpensive, and portable point-of-care diagnostic platform for the detection and strain-specific discrimination of microbial pathogens.
机译:沙门氏菌是一种人畜共患病原体,在美国和全世界造成相当大的公共卫生和经济负担。由此产生的人类疾病范围从小肠结肠炎到菌血症再到败血症,并且严重依赖于肠道沙门氏菌亚种的特定血清型,该血清型占人类致病性肠链球菌分离株的 99% 以上。因此,用于检测和区分沙门氏菌血清型的即时护理方法将对医疗、兽医和现场应用有相当大的好处,以保护公众健康和减少与行业相关的损失。在这里,我们描述了一种单一的一次性微流控芯片,该芯片支持等温扩增和序列特异性检测和区分来自化脓性小鼠全血的沙门氏菌血清型。集成的微流控电化学 DNA (IMED) 芯片由一个扩增室组成,该扩增室支持环介导的等温扩增 (LAMP),这是一种快速、单温度扩增方法,可替代 PCR,在灵敏度、反应速度和扩增子产量方面具有优势。扩增室通过微通道连接到检测室,该检测室包含无试剂、多路复用(此处为双工)传感阵列,用于对 LAMP 产物进行序列特异性电化学 DNA (E-DNA) 检测。通过检测和区分 S. enterica 亚种来评估 IMED 装置的验证。鼠伤寒肠血清型和霍乱,分别是人类小肠结肠炎和败血症的病原体。IMED芯片可以从从化脓动物收集的未处理的全血中以临床相关水平(<1,000 CFU/ml)快速(2小时以下)检测和区分这些菌株。基于IMED的芯片检测作为一种快速、廉价和便携式的即时诊断平台,用于检测和区分微生物病原体的菌株特异性,显示出相当大的前景。

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