Development of carvedilol-cyclodextrin inclusion complexes using fluid-bed granulation: a novel solid-state complexation alternative with technological advantages

Author:

Alonso Ellen C P1,Riccomini Karina2,Silva Luis Antônio D1,Galter Daniela2,Lima Eliana M1,Durig Thomas3,Taveira Stephania F1,Martins Felipe Terra4,Cunha-Filho Marcílio S S5,Marreto Ricardo N1

Affiliation:

1. Laboratory of Pharmaceutical Technology, Federal University of Goiás, Goiânia, GO, Brazil

2. Pharmaceutical Application Laboratory, Ashland Specialty Ingredients, São Paulo, SP, Brazil

3. Pharmaceutical and Nutrition Specialties R&D, Ashland Specialty Ingredients, Wilmington, DE, USA

4. Chemical Institute, Federal University of Goiás, Goiânia, GO, Brazil

5. Laboratory of Food, Drug and Cosmetics (LTMAC), School of Health Sciences, University of Brasília, Brasília, DF, Brazil

Abstract

Abstract Objectives This study sought to evaluate the achievement of carvedilol (CARV) inclusion complexes with modified cyclodextrins (HPβCD and HPγCD) using fluid-bed granulation (FB). Methods The solid complexes were produced using FB and spray drying (SD) and were characterised by differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), powder X-ray diffraction, SEM, flowability and particle size analyses and in vitro dissolution. Key findings The DSC, FTIR and powder X-ray diffraction findings suggested successful CARV inclusion in the modified β- and γ-cyclodextrins, which was more evident in acidic media. The CARV dissolution rate was ~7-fold higher for complexes with both cyclodextrins prepared using SD than for raw CARV. Complexes prepared with HPβCD using FB also resulted in a significant improvement in dissolution rate (~5-fold) and presented superior flowability and larger particle size. Conclusions The findings suggested that FB is the best alternative for large-scale production of solid dosage forms containing CARV. Additionally, the results suggest that HPγCD could be considered as another option for CARV complexation because of its excellent performance in inclusion complex formation in the solid state.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

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