Pharmacognosy MagazineVol. 11 | Issue 41 | 2015 | pp. 170–175Open access
Obtainment of pellets using the standardized liquid extract of Brosimum gaudichaudii Trécul (Moraceae)
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- 1 Laboratory of Research, Development and Inovation on Bioproducts, Faculty of Pharmacy, Federal University of Goiás, Brazil.
- 2 Laboratory of Research, Development and Pharmacotechnical, Faculty of Pharmaceutical Science from Ribeirão Preto, University of São Paulo, Brazil.
Published in Pharmacognosy Magazine
Correspondence: Omar Paulino Silva Filho
Laboratory of Research, Development and Inovation on Bioproducts, Faculty of Pharmacy, Federal University of Goiás, Brazil.
Copyright: © 2015 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 21, 2015
- Received:
- Dec 19, 2013
How to cite
Filho, O. P. S., Oliveira, L. A. R., Martins, F. S., Borges, L. L., Freitas, O. D., & Conceição, E. C. D. (2015). Obtainment of pellets using the standardized liquid extract of Brosimum gaudichaudii Trécul (Moraceae). Pharmacognosy Magazine, 11(41), 170–175. https://doi.org/10.4103/0973-1296.149734
Abstract
Background: The standardized liquid extract of Brosimum gaudichaudii Trécul is an alternative for the treatment of vitiligo. There is a shortage of solid oral dosage forms developed from standardized extracts of this plant specie. Objective: This study is aimed to obtain pellets with a standardized liquid extract of B. gaudichaudii. Results: The standardized liquid extract of B. gaudichaudii was obtained through maceration and percolation with a 55% ethanol‑water solution (v/v). Pellets were obtained through a mixture of extract of 500 g of B. gaudichaudii standardized extract, 500 g of microcrystalline cellulose PH101 and 10 g of hydroxypropyl methylcellulose K100. The pellets obtained presented a homogeneity yield of 92%, aspect ratio of 1.16 ± 0.65, shape fator eR of 0.35 ± 0.09 and Feret diammeter of 0.87 ± 0.27. These pellets were coated with a suspension composed of titanium dioxide, aluminum red lacquer, ethyl cellulose, talc and magnesium stearate. Before the photostability test, the uncoated pellets showed psoralen content equal to 0.13 ± 0.01% and to the 5‑MOP was 1.40 ± 0.27%. After exposure to one level (3 J.cm‑2) of UVB irradiation the uncoated pellets presented a degradation of 2.16% of psoralen and 8.1% of 5‑MOP. After exposure to three levels (10, 20 and 30 J.cm‑2) of UVA irradiation the uncoated pellets exhibited photodegradation of 9.78, 17.64, 24.21% of psoralen and 18.95, 23.68, 28.48% for 5‑MOP. The coated pellets where unaffected after photostability test. Conclusion: Pellets were obtained with the standardized liquid extract of B. gaudichaudii and coating is a technological alternative to ensure the stability of the formula.
Keywords
Article metadata
| Title | Obtainment of pellets using the standardized liquid extract of Brosimum gaudichaudii Trécul (Moraceae) |
|---|---|
| Authors | Omar Paulino Silva Filho; Leandra Almeida Ribeiro Oliveira; Frederico Severino Martins; Leonardo Luiz Borges; Osvaldo de Freitas; Edemilson Cardoso da Conceição |
| Affiliations | Laboratory of Research, Development and Inovation on Bioproducts, Faculty of Pharmacy, Federal University of Goiás, Brazil.; Laboratory of Research, Development and Pharmacotechnical, Faculty of Pharmaceutical Science from Ribeirão Preto, University of São Paulo, Brazil. |
| Journal | Pharmacognosy Magazine |
| Volume / Issue | Vol. 11, Issue 41 (2015) |
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