» Articles » PMID: 26953869

Development and Optimization of Boswellic Acid-loaded Proniosomal Gel

Overview
Journal Drug Deliv
Specialty Pharmacology
Date 2016 Mar 9
PMID 26953869
Citations 12
Authors
Affiliations
Soon will be listed here.
Abstract

Context: Boswellic acids (BAs) are isolated from oleo gum of Boswellia serrata and are mainly used as potential anti-inflammatory, hypolipidemic, immunomodulatory, and antitumor agents. Pharmacokinetic investigations of BAs uncover its poor bioavailability through digestive system thus creates a need for improved therapeutic responses which can possibly be achieved by developing formulations through novel delivery system.

Objective: Present study was conducted to design topical BA-loaded proniosomal gel for the management of inflammatory disorders with enhanced bioavailability.

Materials And Methods: Nonionic surfactant vesicles were prepared using the coacervation phase separation method. A central composite design was employed to statistically optimize formulation variables using Design-Expert software. Three independent variables were evaluated: amount of surfactant (X), amount of soya lecithin (X), and amount of cholesterol (X). The encapsulation efficiency percentage (Y) and particle size (Y) were selected as dependent variables.

Results And Discussion: The optimum formulation (F10) displayed spherical bi-layered vesicles under transmission electron microscopy with optimum particle size of 707.9 nm and high entrapment efficiency as 98.52%. In vitro skin permeation study demonstrated the most sustained release of 84.83 ± 0.153 mg/cm in 24 h. Anti-inflammatory activity of the gel showed a significant (p < 0.001) higher percentage inhibition as compared to the marketed gel at the same dose.

Conclusion: The present study exhibited that BA-loaded proniosomal gel was better in terms of absorption, bioavailability, and release kinetics.

Citing Articles

Plant Resin Delivery by Nanovectors as an Emerging Approach to Boost Solubility, Permeability and Bioavailability.

Truzzi E, Vanti G, Grifoni L, Maretti E, Leo E, Bilia A Pharmaceutics. 2025; 17(1).

PMID: 39861701 PMC: 11768304. DOI: 10.3390/pharmaceutics17010053.


Optimizing gefitinib nanoliposomes by Box-Behnken design and coating with chitosan: A sequential approach for enhanced drug delivery.

Rohilla S, Awasthi R, Rohilla A, Singh S, Chellappan D, Dua K ADMET DMPK. 2024; 12(4):657-677.

PMID: 39473624 PMC: 11517515. DOI: 10.5599/admet.2366.


Antimicrobial topical polymeric films loaded with Acetyl-11-keto-β-boswellic acid (AKBA), boswellic acid and silver nanoparticles: Optimization, characterization, and biological activity.

Jawad M, Bhatia S, Al-Harrasi A, Ullah S, Ahsan Halim S, Khan A Heliyon. 2024; 10(11):e31671.

PMID: 38882278 PMC: 11180321. DOI: 10.1016/j.heliyon.2024.e31671.


Development, Analytical Characterization, and Bioactivity Evaluation of Extract-Layered Double Hydroxide Hybrid Composites.

Cometa S, Busto F, Castellaneta A, Cochis A, Najmi Z, Rizzi R Molecules. 2023; 28(18).

PMID: 37764225 PMC: 10537998. DOI: 10.3390/molecules28186449.


Evaluation of the effectiveness of topical oily solution containing frankincense extract in the treatment of knee osteoarthritis: a randomized, double-blind, placebo-controlled clinical trial.

Mohsenzadeh A, Karimifar M, Soltani R, Hajhashemi V BMC Res Notes. 2023; 16(1):28.

PMID: 36869332 PMC: 9984289. DOI: 10.1186/s13104-023-06291-5.