4.6 Article

Tetrabutylammonium-chloride-glycerol of deep eutectic solvent functionalized MnO2: a novel mimic enzyme for the quantitative and qualitative colorimetric detection of l-cysteine

Journal

ANALYST
Volume 148, Issue 1, Pages 182-190

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2an01771g

Keywords

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Funding

  1. National Natural Science Foundation of China [51864042, 22166031]
  2. Department of Education of Guizhou Province, China [QJJ[2022]092, QJJ[2022]003]
  3. Guizhou Science and Technology Department [QKHPTRC[2020]5009, QKHZC[2020]4Y043]
  4. Tongren Science and Technology Bureau [TSKY2019-3]
  5. Research Fund for the Doctoral Program of Tongren University [trxyDH2107]

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A novel method for the simultaneous quantitative and qualitative determination of l-cysteine using a colorimetric detection system is proposed. By oxidizing MnO2 nanosheets, [N-4444]Cl-G/MnO2 can detect l-cysteine concentration through inhibition of TMB oxidation, leading to a blue product. This method showed good linearity, low detection limit, and high selectivity for both quantitative and qualitative detection of l-cysteine.
l-Cysteine is a common amino acid that plays an important role in human livelihood and production. Therefore, a novel method for the simultaneous quantitative and qualitative determination of l-cysteine by a colorimetric detection system is proposed. As a viable oxidase mimic, [N-4444]Cl-G/MnO2, which consisted of MnO2 nanosheets functionalized by a tetrabutylammonium chloride-glycerol ([N-4444]Cl-G) based deep eutectic solvent (DES) was fabricated. Owing to the oxidation of MnO2 nanosheets, [N-4444]Cl-G/MnO2 could oxidize the colorless 3,3 ',5,5 '-tetramethylbenzidine (TMB) into a blue product (oxTMB) with the characteristic UV-vis spectrum absorbance at 652 nm. The oxidation of TMB by DES/MnO2 was inhibited when l-cysteine was introduced, and the absorbance decreased proportionally with the increase in l-cysteine concentration. Due to this inhibition effect, a colorimetric detection system ([N-4444]Cl-G/MnO2-TMB) was developed for the quantitative determination of l-cysteine. Under optimal conditions, the assay showed good linearity over the concentration range of 0.125-2.00 mu g mL(-1) with a low detection limit of 5.96 ng mL(-1). A study of the inhibition mechanism demonstrated that the sulfhydryl group of l-cysteine could decompose [N-4444]Cl-G/MnO2 into Mn2+, thus limiting the conversion of TMB to oxTMB. In addition, the [N-4444]Cl-G/MnO2-TMB system was used in test strips for the visual qualitative detection of l-cysteine. The selectivity and test strip results demonstrated the high selectivity, simple operation, and rapid response of the [N-4444]Cl-G/MnO2-TMB system for the qualitative detection of l-cysteine. Given the satisfying performance of the detection strategy, colorimetric sensing based on the [N-4444]Cl-G/MnO2-TMB system is considered to have prospective application value in the quantitative and qualitative detection of l-cysteine.

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