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Published on: February 6, 2015
Development and optimization of apigenin-loaded transfersomal system for skin cancer delivery: in vitro evaluation
Manmohan Singh Jangdey1, Anshita Gupta1, Shailendra Saraf1
1a University Institute of Pharmacy, Pt. Ravishankar Shukla University , Raipur (C. G.) , India.
Abstract:
The aim of this work is to apply Box-Behnken design to optimize the transfersomes were formulated by modified rotary evaporation sonication technique using surfactant Tween 80. The response surface methodology was used having three-factored with three levels. The prepared formulations were characterized for vesicle shape, size, entrapment efficiency (%), stability, and in vitro permeation. The result showed that drug entrapment of 84.24% with average vesicle size of 35.41 nm and drug loading of 8.042%. Thus, optimized formulation was found good stability and is a promising approach to improve the permeability of apigenin in sustained release for prolonged period of time.

