Publications by authors named "Unmesh Desai"

This paper serves as a Part II follow-up of our research investigations performed on the molecular structures of silver(I)-fluoride (SF) and diammine-silver(I) fluoride (SDF) complexes in solution-based commercial products for clinical application, their precise chemical compositions, and their nature in aqueous solution, the latter including rapid fluoride-exchange processes at the silver(I) ion centre monitored by F NMR analysis (Part I). Part I of this series also explores the mechanisms of action (MoA) of these complexes, and is therefore largely focused on their chemical reactions with constituents of human saliva, which has access to their sites of application. Such reactions were found to slowly promote the generation of potentially physiologically-active Ag/AgCl nanoparticles from primarily-generated discoloured silver(I) chloride (AgCl) precipitates, a process involving salivary electron-donors such as thiocyanate and L-cysteine.

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Article Synopsis
  • The study investigates the molecular structure, composition, and interactions of silver(I)-diammine fluoride (SDF) and silver(I)-fluoride (SF) solutions, which are used in treating dental caries, highlighting the lack of prior research in this area.
  • Advanced techniques such as high-resolution NMR spectroscopy and SEM analyses revealed differences in the fluoride exchange dynamics of SDF and SF, along with the generation of silver chloride nanoparticles (CSNPs) when treated with human saliva.
  • Results suggest that the SDF product contains high levels of fluoride and ammonia, and that CSNPs formed from the interaction of these solutions with saliva incorporate various biomolecules, indicating a complex interplay when used in dental treatment.
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Endothelial dysfunction (ED), secondary to diminished nitric oxide (NO) production and oxidative stress, is an early subclinical marker of atherosclerosis. Reduced NO bioavailability enhances the adhesion of monocytes to endothelial cells and promotes atherosclerosis. Elderberry extract (EB) is known to contain high levels of anthocyanins which could exert vascular protective effects.

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