| Literature DB >> 34936725 |
Zhicheng Jin1, Yash Mantri2, Maurice Retout1, Yong Cheng1, Jiajing Zhou1, Alec Jorns1, Pavla Fajtova3, Wonjun Yim4, Colman Moore1, Ming Xu1, Matthew N Creyer1, Raina M Borum1, Jingcheng Zhou1, Zhuohong Wu1, Tengyu He4, William F Penny5, Anthony J O'Donoghue3, Jesse V Jokerst1,4,6.
Abstract
The transmission of SARS-CoV-2 coronavirus has led to the COVID-19 pandemic. Nucleic acid testing while specific has limitations for mass surveillance. One alternative is the main protease (Mpro ) due to its functional importance in mediating the viral life cycle. Here, we describe a combination of modular substrate and gold colloids to detect Mpro via visual readout. The strategy involves zwitterionic peptide that carries opposite charges at the C-/N-terminus to exploit the specific recognition by Mpro . Autolytic cleavage releases a positively charged moiety that assembles the nanoparticles with rapid color changes (t<10 min). We determine a limit of detection for Mpro in breath condensate matrices <10 nM. We further assayed ten COVID-negative subjects and found no false-positive result. In the light of simplicity, our test for viral protease is not limited to an equipped laboratory, but also is amenable to integrating as portable point-of-care devices including those on face-coverings.Entities:
Keywords: Colorimetric analysis; Covid-19; Smart mask; Zwitterionic peptide; mpro/3clpro/nsp5
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Year: 2022 PMID: 34936725 PMCID: PMC8854333 DOI: 10.1002/anie.202112995
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336