Review
Addressing the problem of hook effect in sandwich lateral flow immunoassay: review and impact on future solutions
Liu Shang, Ye Yabing, He Kangsong, Tang Jianbin
Published 2023-04-19
Cite as Chin J Lab Med, 2023, 46(4): 415-420. DOI: 10.3760/cma.j.cn114452-20230203-00068
Abstract
Lateral flow immunoassay (LFIA) is a rapid detection technique that allows researchers to move the antigen-antibody reaction from a test tube or laboratory vessel to a test strip. Due to the chromatographic effect of the test strip, the solution would move to a specified direction based on the test and complete the whole antigen-antibody specific reaction. A qualitative judgment can be made with the naked eye by observing the color change of the reagent strip at a specific location. Because of its advantages of being fast, simple, specific, inexpensive, and requiring no specialized personnel, LFIA is now widely used in medical testing, food quality monitoring, environmental monitoring, agriculture and animal husbandry. A major bottleneck for the development of LFIA technology is the hook effect. This paper summarizes the current methods, means and research progresses to combat the hook effect, hoping to provide a strong technical reference for researchers to design test strips, select suitable nanoparticles, and achieve quantitative LFIA detection.
Key words:
Immunoassay; Nanoparticles; Gold colloid; False negative reactions
Contributor Information
Liu Shang
Zhejiang University, College of Chemical and Biological Engineering, Institute of Bioengineering, Biology and Medicine, 2021 batch, Hangzhou 310058, China
Ye Yabing
Zhejiang University, Polytechnic Institute(Taizhou), Materials and Chemical engineering, 2020 batch, Hangzhou 310058, China
He Kangsong
Zhejiang University, College of Chemical and Biological Engineering,Institute of Bioengineering, Biochemical Engineering, 2021 batch, Hangzhou 310058, China
Tang Jianbin
Zhejiang University, College of Chemical and Biological Engineering, Institute of Bioengineering, Hangzhou 310058, China