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SBA-15- and SBA-16-Functionalized Silicas as New Carriers of Niacinamide. | LitMetric

SBA-15- and SBA-16-Functionalized Silicas as New Carriers of Niacinamide.

Int J Mol Sci

Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.

Published: December 2023

AI Article Synopsis

  • Amorphous silica (E 551) is used as a food additive for its anti-caking abilities and as a carrier in functional foods, dietary supplements, and drugs due to its unique physicochemical properties.
  • This study examines hybrid ordered mesoporous silicas (SBA-15/SBA-16) modified with amino groups to enhance their effectiveness as carriers for niacinamide (vitamin B3).
  • Results show that unmodified SBA-15 achieved the highest niacinamide loading at 16 wt.%, while functionalized SBA-15 demonstrated a faster release rate of 60% after 24 hours due to the influence of amino groups.

Article Abstract

Amorphous silica as a food additive (E 551) is used in food materials (e.g., sweeteners, dairy products) for its anti-caking properties. The physicochemical properties of SiO also make it suitable to serve as a carrier of active substances in functional foods, dietary supplements, and drugs. Deficiency of niacinamide (vitamin B3, niacin) leads to several pathologies in the nervous system and causes one of the nutritional diseases called pellagra. The present study focuses on the use of hybrid ordered mesoporous silicas (SBA-15/SBA-16) functionalized with amino groups introduced through grafting or co-condensation with (N-vinylbenzyl)aminoethylaminopropyltrimethoxysilane (Z-6032) as novel carriers of niacinamide. They combine the characteristics of a relatively stable and chemically inert amorphous silica matrix with well-defined structural/textural parameters and organic functional groups that give specific chemical properties. The highest degree of carrier loading with niacinamide (16 wt.%) was recorded for the unmodified SBA-15. On the other hand, the highest degree of niacinamide release characterizes the functionalized SBA-15 sample (60% after 24 h), indicating that the presence of amino groups affects the release profile of niacinamide from the structure of the mesoporous silica.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10743396PMC
http://dx.doi.org/10.3390/ijms242417567DOI Listing

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