Preparation and Characterization of Spray-Dried Inhalable Powders Containing Polymeric Micelles for Pulmonary Delivery of Paclitaxel in Lung Cancer

(2018) Preparation and Characterization of Spray-Dried Inhalable Powders Containing Polymeric Micelles for Pulmonary Delivery of Paclitaxel in Lung Cancer. Journal of Pharmacy and Pharmaceutical Sciences. 200s-214s. ISSN 1482-1826

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Abstract

Purpose: Local delivery of chemotherapeutic drugs to the lungs offers many advantages for lung cancer treatment compared to conventional systemic chemotherapy. In the present study, novel mixed polymeric micelles based on tocopheryl succinate-polyethylene glycol 1000 and 5000 Da (TPGS(1K) and TPGS(5K)) were synthesized and loaded with paclitaxel (PTX). Then, the optimized micelles were incorporated as colloidal drug delivery system into lactose carrier particles using a spray drying technique. Methods: The mixed micelles of TPGS(5K) and TPGS(1K) in different molar ratios (10:0, 7:3, 5:5, 3:7, 0:10) were prepared and physicochemical properties including: particle size, zeta potential, critical micelle concentration (CMC), drug loading, drug release rate, and in vitro cytotoxicitywere investigated in details. The optimized nanoparticles were co-spray dried with lactose carriers to produce the spherical particle morphology of the inhalable particles. Results: Particle sizes and zeta potentials of the different formulations varied in the range of 102 to 196 nm and -9.4 to -13.8 mV, respectively. The lowest CMC values were calculated for 5:5 and 7:3 combinations (16.33 and 17.89 mu M, respectively). The drug release rate from different formulations were very slow and only 30 of the drug was released during 72 h. Cytotoxicity assay demonstrated increased cytotoxic activity of PTX-loaded mixed micelles compared to the free drug. The in vitro deposition data indicated that spray drying of PTX-loaded micelles with lactose resulted in the production of inhalable powders with the high fine particle fraction (60). Conclusion: These results demonstrate that this novel PTX-loaded micelles embedded in dry powder inhalation aerosol platform has a great potential to be used in lung cancer treatment.

Item Type: Article
Keywords: vitamin-e tpgs drug-delivery co-delivery in-vitro chitosan nanoparticles multidrug-resistance plga nanoparticles vivo evaluation formulation inhalation
Divisions: Faculty of Pharmacy and Pharmaceutical Sciences > Department of Pharmaceutical Biotechnology
Faculty of Pharmacy and Pharmaceutical Sciences > Department of Pharmacotherapy
Novel Drug Delivery Systems Research Center
Page Range: 200s-214s
Journal or Publication Title: Journal of Pharmacy and Pharmaceutical Sciences
Journal Index: ISI
Volume: 21
Number: 1
ISSN: 1482-1826
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/9845

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