Title of article :
Formulation and optimization of itraconazole polymeric lipid hybrid nanoparticles (Lipomer) using box behnken design
Author/Authors :
Gajra, Balaram Department of Pharmaceutics & Pharmaceutical Technology - Ramanbhai Patel College of Pharmacy - Charotar University of Science and Technology - CHARUSAT Campus - Changa 388 421 - Gujarat, India , Dalwadi, Chintan Department of Pharmaceutics & Pharmaceutical Technology - Ramanbhai Patel College of Pharmacy - Charotar University of Science and Technology - CHARUSAT Campus - Changa 388 421 - Gujarat, India , Patel, Ravi Department of Pharmaceutics - Indian Institute of Technology - Banaras Hindu University (IIT-BHU) - Varanasi 221 005 - UP, India
Abstract :
Background: The objective of the study was to formulate and to investigate the combined influence of 3 independent variables in the optimization of Polymeric lipid hybrid nanoparticles (PLHNs) (Lipomer) containing
hydrophobic antifungal drug Itraconazole and to improve intestinal permeability.
Method: The Polymeric lipid hybrid nanoparticle formulation was prepared by the emulsification solvent evaporation
method and 3 factor 3 level Box Behnken statistical design was used to optimize and derive a second order polynomial
equation and construct contour plots to predict responses. Biodegradable Polycaprolactone, soya lecithin and Poly vinyl
alcohol were used to prepare PLHNs. The independent variables selected were lipid to polymer ratio (X1) Concentration
of surfactant (X2) Concentration of the drug (X3).
Result: The Box-Behnken design demonstrated the role of the derived equation and contour plots in predicting the
values of dependent variables for the preparation and optimization of Itraconazole PLHNs. Itraconazole PLHNs revealed
nano size (210 ± 1.8 nm) with an entrapment efficiency of 83 ± 0.6% and negative zeta potential of −11.7 mV and also
enhance the permeability of itraconazole as the permeability coefficient (Papp) and the absorption enhancement ratio
was higher.
Conclusion: The tunable particle size, surface charge, and favourable encapsulation efficiency with a sustained drug
release profile of PLHNs suggesting that it could be promising system envisioned to increase the bioavailability by
improving intestinal permeability through lymphatic uptake, M cell of payer’s patch or paracellular pathway which was
proven by confocal microscopy.
Keywords :
Polymeric lipid hybrid nanoparticles , Box-behnken design , Entrapment efficiency , Drug loading , Optimization
Journal title :
Daru:Journal of Pharmaceutical Sciences