Ma_2021_Mikrochim.Acta_188_392

Reference

Title : Point-of-care testing of butyrylcholinesterase activity through modulating the photothermal effect of cuprous oxide nanoparticles - Ma_2021_Mikrochim.Acta_188_392
Author(s) : Ma J , Ma L , Cao L , Miao Y , Dong J , Shi YE , Wang Z
Ref : Mikrochim Acta , 188 :392 , 2021
Abstract :

Butyrylcholinesterase (BChE) is an important indicator for clinical diagnosis of liver dysfunction, organophosphate toxicity, and poststroke dementia. Point-of-care testing (POCT) of BChE activity is still a challenge, which is a critical requirement for the modern clinical diagnose. A portable photothermal BChE assay is proposed through modulating the photothermal effects of Cu(2)O nanoparticles. BChE can catalyze the decomposition of butyrylcholine, producing thiocholine, which further reduce and coordinate with CuO on surface of Cu(2)O nanoparticle. This leads to higher efficiency of formation of Cu(9)S(8) nanoparticles, through the reaction between Cu(2)O nanoparticle and NaHS, together with the promotion of photothermal conversion efficiency from 3.1 to 59.0%, under the excitation of 1064 nm laser radiation. An excellent linear relationship between the temperature change and the logarithm of BChE concentration is obtained in the range 1.0 to 7.5 U/mL, with a limit of detection of 0.076 U/mL. In addition, the portable photothermal assay shows strong detection robustness, which endows the accurate detection of BChE in human serum, together with the screening and quantification of organophosphorus pesticides. Such a simple, sensitive, and robust assay shows great potential for the applications to clinical BChE detection and brings a new horizon for the development of temperature based POCT.

PubMedSearch : Ma_2021_Mikrochim.Acta_188_392
PubMedID: 34697648

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Citations formats

Ma J, Ma L, Cao L, Miao Y, Dong J, Shi YE, Wang Z (2021)
Point-of-care testing of butyrylcholinesterase activity through modulating the photothermal effect of cuprous oxide nanoparticles
Mikrochim Acta 188 :392

Ma J, Ma L, Cao L, Miao Y, Dong J, Shi YE, Wang Z (2021)
Mikrochim Acta 188 :392