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◆ ACS omega2026-05-19

Tucuma Fat-Based Nanostructured Lipid Carriers: Physical Stability and Antifungal Activity.

Antônio Taylon Aguiar Gomes, Rayanne Rocha Pereira, Lindalva Maria de Meneses Costa Ferreira, Naila Ferreira da Cruz, Desireé Gyles Lynch, Patrícia Fagundes da Costa, Claudio Guedes Salgado, José Otávio Carréra Silva-Júnior, Roseane Maria Ribeiro-Costa

原始摘要(英文原文)· Original abstract
This study aimed to obtain and characterize NLCs from tucuma fat and evaluate them against fungal cultures. The NLCs were obtained by high-pressure homogenization of tucuma fat and carnauba wax as the oil phase and were evaluated for encapsulation efficiency (EE), drug loading (DL), zeta potential, particle size, and in vitro release kinetics over a 70-day period. Four formulations (NLC1, NLC2, NLC3, and NLC4) were prepared, showing particle size variation between 109.7 and 241.1 nm, PDI ranging from 0.16 to 0.41, and zeta potential between -12.7 mW and -27.5 mW. Only two of the four formulations were loaded with ketoconazole, presenting encapsulation efficiencies between 43.55% (NLC3) and 80.97% (NLC4), while drug loading values ranged from 2.18% (NLC3) to 4.03% (NLC4). After 70 days of storage at 8 and 28 °C, they maintained their physical characteristics (particle size, zeta potential, and PDI). The release kinetics of NLC3 and NLC4 were explained by the Korsmeyer-Peppas mathematical model. Finally, the antifungal activity of ketoconazole was improved 8-fold in NLC3 and NLC4. Finally, tucuma NLCs showed physical stability and biological efficacy.
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Tucuma Fat-Based Nanostructured Lipid Carriers: Physical Stability and Antifungal Activity. — 科研速览 Science Skim