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Antiacne Gel Containing Aloe vera and Clindamycin Phosphate: Design, Characterization, and Optimization Using Response Surface Methodology

Authors :
Tayyaba Rana
Muhammad Zaman
Mahtab Ahmed Khan
Abdul Qayyum Khan
Muhammad Jamshaid
Nehal Ahmed Talaat Nouh
Fatma M. El-Demerdash
Mohamed Kamel
Mohamed M. Abdel-Daim
Ghadeer M. Albadrani
Sumiyya Javaid
Zainab Naeem
Source :
International Journal of Polymer Science, Vol 2024 (2024)
Publication Year :
2024
Publisher :
Wiley, 2024.

Abstract

Clindamycin phosphate is a topical antibiotic agent used to treat acne vulgaris, while Aloe vera has both antimicrobial and anti-inflammatory properties. The current study is aimed at formulating an antiacne gel with antioxidant and antimicrobial effects. The antiacne gels were prepared by using polymer HPMC K15M by cold dispersion method. Unveiling the intricacies of gel design, our research harnessed the power of Design Expert 11 to optimize critical parameters—viscosity, spreadability, and permeability. In vitro characterization tests, including pH, spreadability, viscosity, permeability, antimicrobial activity, antioxidant activity, and stability of the gels, were performed. The results of in vitro characterization tests showed that the gels had a mint-like odor, a pH of 6.8, and a spreadability of 21.5 g cm/sec. The gels had a viscosity of 34.2 Pa s and drug content ranging within 90%-110%, as per USP standards. Notably, in vitro permeation assays reveal an exceptional 86% drug release, showcasing the efficacy of our formulation. The uniqueness of our study lies not only in the robust optimization process but also in the multifaceted characterization. Our gel emerges as a promising candidate, exhibiting not only desired antimicrobial and antioxidant properties against acne vulgaris but also demonstrating stability under varied conditions. As we advance toward in vivo studies, our research paves the way for a nuanced understanding of the safety and efficacy of this distinctive antiacne gel.

Subjects

Subjects :
Chemical technology
TP1-1185

Details

Language :
English
ISSN :
16879430
Volume :
2024
Database :
Directory of Open Access Journals
Journal :
International Journal of Polymer Science
Publication Type :
Academic Journal
Accession number :
edsdoj.3227339df23406295f3825b1d92724f
Document Type :
article
Full Text :
https://doi.org/10.1155/2024/3353141