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Pregled bibliografske jedinice broj: 1089348

Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds


Pjanović, Rada; Pravilović, Radoslava; Banković, Kristina; Milivojević, Milan; Šeremet, Danijela; Komes, Draženka
Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds // Proceedings of 9th International Scientific Conference on Defensive Technologies / Lisov, M. ; Radović, Lj. (ur.).
Beograd: The Military Technical Institute, 2020. str. 518-520 (ostalo, recenziran, kratko priopćenje, znanstveni)


CROSBI ID: 1089348 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds

Autori
Pjanović, Rada ; Pravilović, Radoslava ; Banković, Kristina ; Milivojević, Milan ; Šeremet, Danijela ; Komes, Draženka

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, kratko priopćenje, znanstveni

Izvornik
Proceedings of 9th International Scientific Conference on Defensive Technologies / Lisov, M. ; Radović, Lj. - Beograd : The Military Technical Institute, 2020, 518-520

Skup
9th International Scientific Conference on Defensive Technologies

Mjesto i datum
Beograd, Srbija, 15.11.2020. - 16.11.2020

Vrsta sudjelovanja
Ostalo

Vrsta recenzije
Recenziran

Ključne riječi
nanoparticles ; niosomes ; hydrogel ; diffusion

Sažetak
A niosomes are a non-ionic surfactant-based vesicle. The aim of this study was to encapsulate Niacinamide as a water-soluble compound and Caffeine as a hydrophilic but poor water-soluble compound in the hydrogel, as well as in niosomes and to monitor the release of these active components from the mentioned systems. Niosomes were prepared by thin film hydration method using Span 20 and Cholesterol in a 70:30 molar ratio and were characterized for size, stability and in vitro release of actives. Franz diffusion cell was used to monitor release of niacinamide and caffeine from investigated systems. The obtained results show that the diffusion is faster in the presence of niosomes as carriers for both actives and that these nanoparticles represent a special vector for the transfer of hydrophilic active components.

Izvorni jezik
Engleski

Znanstvena područja
Prehrambena tehnologija



POVEZANOST RADA


Ustanove:
Prehrambeno-biotehnološki fakultet, Zagreb

Profili:

Avatar Url Draženka Komes (autor)

Avatar Url Danijela Šeremet (autor)

Poveznice na cjeloviti tekst rada:

www.vti.mod.gov.rs

Citiraj ovu publikaciju:

Pjanović, Rada; Pravilović, Radoslava; Banković, Kristina; Milivojević, Milan; Šeremet, Danijela; Komes, Draženka
Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds // Proceedings of 9th International Scientific Conference on Defensive Technologies / Lisov, M. ; Radović, Lj. (ur.).
Beograd: The Military Technical Institute, 2020. str. 518-520 (ostalo, recenziran, kratko priopćenje, znanstveni)
Pjanović, R., Pravilović, R., Banković, K., Milivojević, M., Šeremet, D. & Komes, D. (2020) Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds. U: Lisov, M. & Radović, L. (ur.)Proceedings of 9th International Scientific Conference on Defensive Technologies.
@article{article, author = {Pjanovi\'{c}, Rada and Pravilovi\'{c}, Radoslava and Bankovi\'{c}, Kristina and Milivojevi\'{c}, Milan and \v{S}eremet, Danijela and Komes, Dra\v{z}enka}, year = {2020}, pages = {518-520}, keywords = {nanoparticles, niosomes, hydrogel, diffusion}, title = {Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds}, keyword = {nanoparticles, niosomes, hydrogel, diffusion}, publisher = {The Military Technical Institute}, publisherplace = {Beograd, Srbija} }
@article{article, author = {Pjanovi\'{c}, Rada and Pravilovi\'{c}, Radoslava and Bankovi\'{c}, Kristina and Milivojevi\'{c}, Milan and \v{S}eremet, Danijela and Komes, Dra\v{z}enka}, year = {2020}, pages = {518-520}, keywords = {nanoparticles, niosomes, hydrogel, diffusion}, title = {Nanoparticles niosomes as a vectors for delivery of hydrophilic compounds}, keyword = {nanoparticles, niosomes, hydrogel, diffusion}, publisher = {The Military Technical Institute}, publisherplace = {Beograd, Srbija} }




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