1 Scholar, Department of Pharmaceutics, K.D.C College of Pharmacy, Mathura.
2 Associate Professor, Department of Pharmaceutics, K.D.C College of Pharmacy, Mathura.
World Journal of Biology Pharmacy and Health Sciences, 2026, 26(02),171-180
Article DOI: 10.30574/wjbphs.2026.26.2.0245
Received on 28 March 2026; revised on 06 May 2026; accepted on 09 May 2026
Transdermal drug delivery systems have become one of the new methods of enhancing the bioavailability and compliance of drugs in patients. The current research is dedicated to creating and testing herbal transdermal patches with Aloe vera extract by the solvent casting technique. Different polymers, such as hydroxypropyl methylcellulose (HPMC), polyvinyl alcohol (PVA), and chitosan were used to prepare various formulations with the help of appropriate plasticizers and permeation enhancers. The patches that were prepared were tested in terms of physicochemical parameters, i.e. thickness (0.21-0.29 mm), weight change (109-118 mg), folding strength (>250), surface pH (6.2-6.8), moisture content (3.8-5.1%), and uniform drug content (96.2-98.7%). The in vitro drug release test showed sustained release properties of up to 12 hours, with the highest release of the HPMC+PVA formulation (92.3%). The release kinetics was based on Higuchi diffusion model, which implies a controlled release of drugs. These findings indicate that the transdermal patches made of Aloe vera are a good platform of long-term drug delivery with a high degree of stability and adherence. The optimized formulation exhibited better performance of mechanical strength and drug release, which indicate its potentials in pharmaceutical use.
Aloe Vera; Controlled Release; Herbal Drug Delivery; Polymer Matrix; Transdermal Patch
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KM Chanchal Chahar and Netra Pal Singh. Development and characterization of aloe vera–based herbal transdermal therapeutic systems for enhanced skin delivery. World Journal of Biology Pharmacy and Health Sciences, 2026, 26(02), 171-180. Article DOI: https://doi.org/10.30574/wjbphs.2026.26.2.0245