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Universal microbial diagnostics using random DNA probes

机译:使用随机DNA探针进行通用微生物诊断

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Early identification of pathogens is essential for limiting development of therapy-resistant pathogens and mitigating infectious disease outbreaks. Most bacterial detection schemes use target-specific probes to differentiate pathogen species, creating time and cost inefficiencies in identifying newly discovered organisms. We present a novel universal microbial diagnostics (UMD) platform to screen for microbial organisms in an infectious sample, using a small number of random DNA probes that are agnostic to the target DNA sequences. Our platform leverages the theory of sparse signal recovery (compressive sensing) to identify the composition of a microbial sample that potentially contains novel or mutant species. We validated the UMD platform in vitro using five random probes to recover 11 pathogenic bacteria. We further demonstrated in silico that UMD can be generalized to screen for common human pathogens in different taxonomy levels. UMD’s unorthodox sensing approach opens the door to more efficient and universal molecular diagnostics.
机译:对病原体的早期识别对于限制对治疗有抵抗力的病原体的发展和减轻传染病暴发至关重要。大多数细菌检测方案都使用目标特异性探针来区分病原体种类,从而在识别新发现的生物时造成时间和成本的低效率。我们提出了一种新颖的通用微生物诊断(UMD)平台,使用少量与目标DNA序列无关的随机DNA探针筛选感染性样品中的微生物。我们的平台利用稀疏信号恢复(压缩感测)理论来识别可能包含新型或突变物种的微生物样品的成分。我们使用五种随机探针在体外验证了UMD平台,以回收11种病原细菌。我们进一步在计算机上证明了UMD可以被普遍用于筛选不同分类标准中常见的人类病原体。 UMD非常规的传感方法为更高效,更通用的分子诊断打开了大门。

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