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Dopamine-Functionalized Gold Nanoparticles for Colorimetric Detection of Histamine.
Unabia, Romnick B; Reazo, Renzo Luis D; Rivera, Rolen Brian P; Lapening, Melbagrace A; Omping, Jahor L; Lumod, Ryan M; Ruda, Archie G; Sayson, Noel Lito B; Dumancas, Gerard; Malaluan, Roberto M; Lubguban, Arnold A; Petalcorin, Gaudencio C; Capangpangan, Rey Y; Latayada, Felmer S; Alguno, Arnold C.
Affiliation
  • Unabia RB; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Reazo RLD; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Rivera RBP; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Lapening MA; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Omping JL; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Lumod RM; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Ruda AG; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Sayson NLB; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
  • Dumancas G; Department of Chemistry, Loyola Science Center, The University of Scranton, Scranton, Pennsylvania 18510, United States.
  • Malaluan RM; Center for Sustainable Polymers, MSU-Iligan Institute of Technology, Iligan City 9200, Philippines.
  • Lubguban AA; Center for Sustainable Polymers, MSU-Iligan Institute of Technology, Iligan City 9200, Philippines.
  • Petalcorin GC; Department of Mathematics and Statistics, Mindanao State University-Iligan Institute of Technology, Iligan City 9200, Philippines.
  • Capangpangan RY; Mindanao State University at Naawan Campus, Naawan Misamis Oriental 9023, Philippines.
  • Latayada FS; Caraga State University-Main Campus, Ampayon, Butuan City 8600, Philippines.
  • Alguno AC; Research Center on Energy Efficient Materials (RCEEM), Premier Research Institute in Science and Mathematics (PRISM), Mindanao State University - Iligan Institute of Technology, A. Bonifacio Avenue, Iligan City 9200, Philippines.
ACS Omega ; 9(15): 17238-17246, 2024 Apr 16.
Article in En | MEDLINE | ID: mdl-38645311
ABSTRACT
Histamine, a primary biogenic amine (BA) generated through the decarboxylation of amino acids, concentration increases in protein-rich foods during deterioration. Thus, its detection plays a crucial role in ensuring food safety and quality. This study introduces an innovative approach involving the direct integration of dopamine onto gold nanoparticles (DCt-AuNP), aiming at rapid histamine colorimetric detection. Transmission electron microscopy revealed the aggregation of uniformly distributed spherical DCt-AuNPs with 12.02 ± 2.53 nm sizes upon the addition of histamine to DCt-AuNP solution. The Fourier-transform infrared (FTIR) spectra demonstrated the disappearance of the dicarboxy acetone peak at 1710 cm-1 along with the formation of well-defined peaks at 1585 cm-1, and 1396 cm-1 associated with the N-H bending modes and the aromatic C=C bond stretching vibration in histamine molecule, respectively, confirming the ligand exchange and interactions of histamine on the surface of DCt-AuNPs. The UV-vis spectra of the DCt-AuNP solution exhibited a red shift and a reduction in surface plasmon resonance (SPR) peak intensity at 518 nm along with the emergence of the 650 nm peak, signifying aggregation DCt-AuNPs with increasing histamine concentration. Notably, color transitions from wine-red to deep blue were observed in the DCt-AuNP solution in response to histamine, providing a reliable colorimetric signal. Dynamic Light Scattering (DLS) characterization showed a significant increase in the hydrodynamic diameter, from ∼15 to ∼1690 nm, confirming the interparticle cross-linking of DCt-AuNPs in the presence of histamine. This newly developed DCt-AuNP sensor provides colorimetric results in less than a minute that exhibits a remarkable naked-eye histamine detection threshold of 1.57 µM and a calculated detection limit of 0.426 µM, making it a promising tool for the rapid and sensitive detection of histamine.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: ACS Omega Year: 2024 Document type: Article Affiliation country: Filipinas Country of publication: Estados Unidos

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: ACS Omega Year: 2024 Document type: Article Affiliation country: Filipinas Country of publication: Estados Unidos