utPCR: A Strategy for the Highly Specific and Absolutely Quantitative Detection of Single Molecules within Only Minutes

Author:

Wang Rui12ORCID,Liu Ying1ORCID,Chen Shuaiwei1,Bai Linlin1,Guo Kaiming1,Pang Yanan3,Qian Feng1,Li Yongfang4,Ding Li3,Wang Yongming15ORCID

Affiliation:

1. State Key Laboratory of Genetic Engineering, School of Life Sciences, Zhongshan Hospital, Human Phenome Institute, Pudong Hospital, Fudan University, Shanghai 200438, China

2. School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA

3. Changhai Hospital, Second Military Medical University, Shanghai 200433, China

4. School of Food Science and Engineering, Foshan University, Foshan 528231, China

5. Shanghai Engineering Research Center of Industrial Microorganisms, Shanghai 200438, China

Abstract

Bloodstream infection is a major health problem worldwide, with extremely high mortality. Detecting infection in the early stage is challenging due to the extremely low concentration of bacteria in the blood. Digital PCR provides unparalleled sensitivity and can achieve absolute quantification, but it is time-consuming. Moreover, the presence of unavoidable background signals in negative controls poses a significant challenge for single-molecule detection. Here, we propose a novel strategy called “Ultrafast flexible thin tube-based droplet digital PCR (utPCR)” that can shorten the digital PCR process from 2 h to only 5 min, with primer annealing/extension time reduced from minutes to only 5 s. Importantly, the ultrafast PCR eliminates nonspecific amplification and thus enables single-molecule detection. The utPCR enabled the sensitive detection and digital quantification of E. coli O157 in the high background of a 106-fold excess of E. coli K12 cells. Moreover, this method also displayed the potential to detect rare pathogens in blood samples, and the limit of detection (LOD) could be as low as 10 CFU per mL of blood without false positive results. Considered ultrafast (<5 min) and highly sensitive (single-molecule detection), the utPCR holds excellent prospects in the next generation of molecular diagnosis.

Funder

National Natural Science Foundation of China

Special Project for Experimental Animal Research

Shanghai Rising-Star Program

Special Project for Medical Innovation Research

Publisher

MDPI AG

Subject

Clinical Biochemistry,General Medicine,Analytical Chemistry,Biotechnology,Instrumentation,Biomedical Engineering,Engineering (miscellaneous)

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