Pluronic F127/Pluronic P123/vitamin E TPGS mixed micelles for oral delivery of mangiferin and quercetin: Mixture-design optimization, micellization, and solubilization behavior

2019 ◽  
Vol 274 ◽  
pp. 223-238 ◽  
Author(s):  
Santi Thanitwatthanasak ◽  
Leonard M.C. Sagis ◽  
Pakamon Chitprasert
2020 ◽  
Vol 146 ◽  
pp. 105277 ◽  
Author(s):  
Jiahui Sun ◽  
Jing Li ◽  
Qi Liu ◽  
Min Jiang ◽  
Mengjia Yang ◽  
...  

2000 ◽  
Vol 662 ◽  
Author(s):  
Decio Coutinho ◽  
Ying Ma ◽  
Kenneth J. Balkus

AbstractVitamin E TPGS was found to be an effective structure-directing agent for the preparation of both hexagonal all silica DAM-1 and the alumina analog, Al-DAM-1. These free flowing powders offer many advantages in the handling and oral delivery of the sticky vitamin E TPGS. Upon exposure to simulated gastric fluid, the Al-DAM-1 host molecular sieve is dissolved releasing the vitamin E TPGS. As much as 0.6 grams of vitamin E TPGS can be immobilized into 1 gram of Al-DAM-1. Vitamin E TPGS also templates highly ordered mesoporous DAM-1 with tunable morphologies such as hexagons (various lengths), gyroids, rods, spheres and discoids depending upon the temperature and gel composition. Characterization of these composites as well as a preliminary evaluation of Al-DAM-1 as an oral drug delivery system under physiological conditions is presented.


2021 ◽  
Vol 23 (1) ◽  
Author(s):  
Dina B. Mahmoud ◽  
Mohamed Mofreh Bakr ◽  
Ahmed A. Al-karmalawy ◽  
Yassmin Moatasim ◽  
Ahmed El Taweel ◽  
...  

AbstractInvestigating bicelles as an oral drug delivery system and exploiting their structural benefits can pave the way to formulate hydrophobic drugs and potentiate their activity. Herein, the ability of non-ionic surfactants (labrasol®, tween 80, cremophore EL and pluronic F127) to form curcumin loaded bicelles with phosphatidylcholine, utilizing a simple method, was investigated. Molecular docking was used to understand the mechanism of bicelles formation. The % transmittance and TEM exhibited bicelles formation with labrasol® and tween 80, while cremophor EL and pluronic F127 tended to form mixed micelles. The surfactant-based nanostructures significantly improved curcumin dissolution (99.2 ± 2.6% within 10 min in case of tween 80-based bicelles) compared to liposomes and curcumin suspension in non-sink conditions. The prepared formulations improved curcumin ex vivo permeation over liposomes and drug suspension. Further, the therapeutic antiviral activity of the formulated curcumin against SARS-CoV-2 was potentiated over drug suspension. Although both Labrasol® and tween 80 bicelles could form bicelles and enhance the oral delivery of curcumin when compared to liposomes and drug suspension, the mixed micelles formulations depicted superiority than bicelles formulations. Our findings provide promising formulations that can be utilized for further preclinical and clinical studies of curcumin as an antiviral therapy for COVID-19 patients.


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