Please use this identifier to cite or link to this item: http://ricaxcan.uaz.edu.mx/jspui/handle/20.500.11845/3483
Title: Quasi-spherical silver nanoparticles for human prolactin detection by surface-enhanced Raman spectroscopy
Authors: Ortiz Dosal, Alejandra
Rodríguez Aranda, M. C.
Ortiz Dosal, Luis Carlos
Núñez Leyva, Juan Manuel
Rivera Pérez, Emmanuel
Cuellar Camacho, José Luis
Ávila Delgadillo, Julián Rosendo
Kolosovas Machuca, Eleazar Samuel
Issue Date: 27-Feb-2024
Publisher: Royal Society of Chemistry
Abstract: Prolactin is a polypeptide hormone made of 199 amino acids; 50% of the amino acid chain forms helices, and the rest forms loops. This hormone is typically related to initiating and maintaining lactation, although it is also elevated in various pathological conditions. Serum prolactin levels of 2 to 18 ng ml−1 in men, up to 30 ng ml−1 in women, and 10 to 210 ng ml−1 in pregnant women are considered normal. Immunoassay techniques used for detection are susceptible to error in different clinical conditions. Surface-enhanced Raman spectroscopy (SERS) is a technique that allows for obtaining the protein spectrum in a simple, fast, and reproducible manner. Nonetheless, proper characterization of human prolactin's Raman/SERS spectrum at different concentrations has so far not been deeply discussed. This study aims to characterize the Raman spectrum of human prolactin at physiological concentrations using silver nanoparticles (AgNPs) as the SERS substrate. The Raman spectrum of prolactin at 20 ng ul−1 was acquired. Quasi-spherical AgNPs were obtained using chemical synthesis. For SERS characterization, decreasing dilutions of the protein were made by adding deionized water and then a 1 : 1 volume of the AgNPs colloid. For each mixture, the Raman spectrum was determined. The spectrum of prolactin by SERS was obtained with a concentration of up to 0.1 ng ml−1. It showed characteristic bands corresponding to the side chains of aromatic amino acids in the protein's primary structure and the alpha helices of the secondary structure of prolactin. In conclusion, using quasi-spherical silver nanoparticles as the SERS substrate, the Raman spectrum of human prolactin at physiological concentration was determined.
URI: http://ricaxcan.uaz.edu.mx/jspui/handle/20.500.11845/3483
http://dx.doi.org/10.48779/ricaxcan-314
ISSN: 2046-2069
Other Identifiers: info:eu-repo/semantics/publishedVersion
Appears in Collections:*Documentos Académicos*-- M. en C. e Ing. de los Materiales

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