Medicine

Ryan AminiLi, Zijie ZhangLi, Jiuxing LiLi, Jimmy Gu, J. Brennan, Yingfu Li

2022.4.20Analysis & Sensing

DOI: 10.1002/anse.202200012

tlooto Summary

Over the past two years, many labs around the world have rushed to create diverse aptamers that target two important structural proteins of SARS‐CoV‐2: the spike (S) protein and nucleocapsid (N) protein, which have led to the identification of many aptamer that show real promise for the development of diagnostic tests and therapeutic agents for Sars‐Co V‐2.

Abstract

Abstract The SARS‐CoV‐2 virus and COVID‐19 pandemic continue to demand effective diagnostic and therapeutic solutions. Finding these solutions requires highly functional molecular recognition elements. Nucleic acid aptamers represent a possible solution. Characterized by their high affinity and specificity, aptamers can be rapidly identified from random‐sequence nucleic acid libraries. Over the past two years, many labs around the world have rushed to create diverse aptamers that target two important structural proteins of SARS‐CoV‐2: the spike (S) protein and nucleocapsid (N) protein. These have led to the identification of many aptamers that show real promise for the development of diagnostic tests and therapeutic agents for SARS‐CoV‐2. Herein we review all these developments, with a special focus on the development of diverse aptasensors for detecting SARS‐CoV‐2. These include electrochemical and optical sensors, lateral flow devices, and aptamer‐linked immobilized sorbent assays.

Citation format

AMINILI, Ryan, et al. Aptamers for sars‐cov‐2: Isolation, characterization, and diagnostic and therapeutic developments. Analysis & Sensing, 2022, 2.