Allisson Benatti Justino , Phelipe Augusto Borba Martins Peres , Natieli Saito , Vinicius Prado Bittar , Iasmin Aparecida Cunha Araújo , Arthur Franco Demétrio , Lucas Correia Peres , Neide Maria da Silva , Foued Salmen Espindola , Anielle Christine Almeida Silva
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引用次数: 0
Abstract
Engineered nanomaterials (ENMs) based on Simonkolleite (SK) exhibit promising theranostic applications. The functionalization of ENMs with polyphenols holds the potential to facilitate manipulation and enhance stability, activity, and bioaccessibility. In this study, nanohybrids of SK composed of gold (Au) and quercetin were synthesized. The successful synthesis was confirmed through ultraviolet-visible, Fourier-transform infrared, Raman spectroscopy, and scanning electron microscopy. The investigation aimed to elucidate the modulation of antioxidant and oxidative parameters by these ENMs and assess their cytotoxicity and antimicrobial properties. SK nanohybrids incorporating quercetin demonstrated antioxidant properties through ORAC and DPPH evaluations, confirming the presence of the biomolecule in the inorganic matrix. SK induced ROS production and lipid peroxidation, while functionalization with Au and quercetin normalized these oxidative parameters. However, quercetin-conjugated SK promoted protein oxidation. SK and its nanocomposites diminished the viability of fibroblasts, whereas Au-doped SK and its hybrid with quercetin were cytotoxic for macrophages only at elevated concentrations (≥ 250 µg/mL). Additionally, the quercetin-conjugated ENMs exhibited antibacterial efficacy against Salmonella strains, particularly targeting S. Gallinarum and S. Enteritidis. This study demonstrated how SK nanoparticles, when functionalized with quercetin, can modulate antioxidant and oxidative mechanisms, while also showcasing their notable antibacterial activity against Salmonella strains. These findings underscore the significant role of such criteria in understanding the primary biological responses induced by ZnO-based ENMs.
期刊介绍:
The journal provides the reader with a thorough description of theoretical and applied aspects of trace elements in medicine and biology and is devoted to the advancement of scientific knowledge about trace elements and trace element species. Trace elements play essential roles in the maintenance of physiological processes. During the last decades there has been a great deal of scientific investigation about the function and binding of trace elements. The Journal of Trace Elements in Medicine and Biology focuses on the description and dissemination of scientific results concerning the role of trace elements with respect to their mode of action in health and disease and nutritional importance. Progress in the knowledge of the biological role of trace elements depends, however, on advances in trace elements chemistry. Thus the Journal of Trace Elements in Medicine and Biology will include only those papers that base their results on proven analytical methods.
Also, we only publish those articles in which the quality assurance regarding the execution of experiments and achievement of results is guaranteed.