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Non-enzymatic lactose molecularly imprinted sensor based on disposable graphite paper electrode. | LitMetric

Non-enzymatic lactose molecularly imprinted sensor based on disposable graphite paper electrode.

Anal Chim Acta

Analytical Chemistry Department, Institute of Chemistry, São Paulo State University (UNESP), 55 Prof. Francisco Degni St., Araraquara, 14800-060, São Paulo State, Brazil; Bioenergy Research Institute (IPBEN), São Paulo State University (UNESP), 55 Prof. Francisco Degni St., Araraquara, 14800-060, São Paulo State, Brazil.

Published: January 2021

AI Article Synopsis

  • Lactose (LAC) is a crucial sugar found in milk, serving as an important quality indicator in dairy products and impacting human and animal health.
  • An innovative voltammetric sensor was developed using an electropolymerized pyrrole molecularly imprinted polymer on a graphite electrode, enhancing LAC detection capabilities.
  • The sensor demonstrated high sensitivity and selectivity in detecting LAC in various milk types, with promising analytical performance characterized by dynamic linear ranges and a low detection limit.

Article Abstract

Lactose (LAC) is a disaccharide - major sugar, present in milk and dairy products. LAC content is an important indicator of milk quality and abnormalities in food industries, as well as in human and animal health. The present study reports the development of an innovative imprinted voltammetric sensor for sensitive detection of LAC. The sensor was constructed using electropolymerized pyrrole (Py) molecularly imprinted polymer (MIP) on graphite paper electrode (PE). The MIP film was constructed through the electrosynthesis of polypyrrole (PPy) in the presence of LAC (template molecule) on PE (PPy/PE). To optimize the detection conditions, several factors affecting the PPy/PE sensor performance were assessed by multivariate methods (Plackett-Burman design and central composite design). Under optimized conditions, the proposed analytical method was applied for LAC detection in whole and LAC-free milks, where it demonstrated high sensitivity and selectivity, with two dynamic linear ranges of concentration (1.0-10 nmol L and 25-125 nmol L) and a detection limit of 0.88 nmol L. The MIP sensor showed selective molecular recognition for LAC in the presence of structurally related molecules. The proposed PPy/PE sensor exhibited good stability, as well as excellent reproducibility and repeatability. Based on the results obtained, the PPy/PE is found to be highly promising for sensitive detection of LAC.

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Source
http://dx.doi.org/10.1016/j.aca.2020.11.030DOI Listing

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