4.1 Article

Pharmaceutical films made from the waste material from the preparation of propolis extracts: development and characterization

期刊

出版社

UNIV SAO PAULO, CONJUNTO QUIMICAS
DOI: 10.1590/S1984-82502015000400011

关键词

Propolis/byproducts; Propolis/use of waste material/films development; Films/propolis byproducts/physicochemical properties; Polymers; Ethylcellulose; Gelatin

资金

  1. CNPq (Conselho Nacional de Pesquisa/National Research Council)
  2. CAPES (Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior/Coordination for the Improvement of Higher Education)
  3. FINEP (Financiadora de Estudos e Projetos/Financier of Studies and Projects)

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This study investigated the development and characterized the physicochemical properties of films obtained from by-products (BP) from the preparation of propolis extracts. Films were produced in the presence and absence of a polymeric adjuvant (gelatin or ethylcellulose) and propylene glycol by a solvent casting method. Density, surface topography by scanning electron microscopy, mechanical properties (folding endurance, tensile strength and percentage elongation), water vapour permeability (WVP), moisture uptake capacity, thermogravimetry, differential scanning calorimetry and Fourier transform infrared spectroscopy (FTIR) were determined. The films were a transparent, light greenish-yellow colour, with a uniform surface, and were flexible and easy to handle. The thickness and density of the preparations indicated that the compounds were homogeneously dispersed throughout the film. Mechanical properties were influenced by the film composition; films containing gelatin were more resistant to stress, while those containing ethylcellulose were more flexible. Increasing the adjuvant concentration decreased the elasticity and the rupture resistance, but increased the moisture uptake capacity and WVP of the formulations. BP was thermally stable as were the films. FTIR tests suggested interactions between BP and the adjuvants. This work could contribute to the utilization of BP to prepare films for food and pharmaceutical uses

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