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Updated: Jan 12, 2026

Preparation and Characterization of Individual and Multi-drug Loaded Physically Entrapped Polymeric Micelles
Published on: August 28, 2015
Mucoadhesive lyophilized wafers loaded with nano-spanlastic felodipine formulation: development and characterization
Ananda Kumar Chettupalli1, Sarad Pawar Naik Bukke2, Malakapogu Ravindra Babu3
1School of Pharmaceutical Technology, Department of Pharmaceutical Technology, Medical studies, Adamas University, Barbaria, West Bengal, 700126, India. ananda.chettupalli@galgotiasuniversity.edu.in.
Abstract:
Felodipine (FDP) is used to treat hypertension and angina pectoris. FDP has an oral bioavailability of approximately 15% in humans, primarily due to its poor water solubility and extensive first-pass metabolism in the liver and gut wall. The study aimed to develop and evaluate a lyophilized buccal wafer containing felodipine-loaded nano-spanlastics to enhance solubility, permeability, and therapeutic efficacy. FDP-loaded nano-Spanlastics (FDP-SL) using a 23 factorial design. The developed SL formulations were physiochemically characterized. In vitro permeation studies assessed trans-buccal delivery, while FDP-SL7 was incorporated into CMC wafers for mucoadhesive application. In vivo investigations evaluated the effects of the formulations. Histopathological assessment further contrasted the protective effects of the SL-7 wafer with those of Plendil on cardiac tissues. DLS studies of the modified SL-7 indicated particle size, PDI, and zeta potential values, followed by the assessment of EE (95.38 ± 0.96%), deformability index (12.46 ± 0.46 g), flux (28.51 ± 0.21 g/cm2/h), and stability, collectively demonstrating a 4.72-fold enhancement. The drug release data indicates Q24h values of 63-66% for SL formulations compared to the quick release of the suspension. Additionally, the ex vivo permeability results demonstrate that SL7 exhibits a flux of 28.51 ± 0.21 µg/cm2/hr, reflecting a 4.72-fold boost over the drug suspension. In vivo studies showed significant improvements in blood pressure. Encapsulating FDP in Tween 80-based SL and delivering it via mucoadhesive buccal wafers significantly enhances its bioavailability and therapeutic efficacy. This non-invasive approach offers a promising strategy for improved hypertension management.
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