Development and physical evaluation of Maytenus ilicifolia effervescent granules using factorial design

Author:

Cunha-Filho Marcilio Sérgio Soares da1,Gustmann Pricila Castilho2,Garcia Felipe Sanches2,Lima Eliana Martins3,Sá-Barreto Lívia Cristina Lira de1

Affiliation:

1. University of Brasília, Brazil

2. Federal University of Mato Grosso, Brazil

3. Federal University of Goiás, Brazil

Abstract

The medicinal plant Maytenus ilicifolia is a commonly used phytomedicine for the treatment of gastritis. The high dose required and low density of these extracts make necessary a daily intake of several capsules, hindering adherence to the medication. The purpose of this work was to develop a suitable dosage form for the administration of Maytenus ilicifolia using effervescent granules. A 23 factorial design was used to study the physical characteristics of the granules (particle size distribution, repose angle, Carr index, scanning electron microscopy and disintegration time). Moisture stability was also determined. According to the experimental design, granule size is the most important factor in determining the flow characteristics of effervescent granules. In turn, the disintegration time is controlled by the content of sodium bicarbonate present in the effervescent mixture as well as the granule size. The stability of formulations when exposed to moisture is strongly influenced by the percentage of effervescent mixture present in the vegetal granules. Precautions in handling and storage should be taken to ensure the stability of these preparations. The effervescent granules produced from Maytenus ilicifolia met the pharmacopoeial quality parameters, with appropriate mechanical and physical characteristics and proved to be a promising vehicle for plant extracts.

Publisher

FapUNIFESP (SciELO)

Subject

General Pharmacology, Toxicology and Pharmaceutics

Reference22 articles.

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4. Flavonoid-rich fraction ofMaytenus ilicifoliaMart. ex. Reiss protects the gastric mucosa of rodents through inhibition of both H+,K+-ATPase activity and formation of nitric oxide;BAGGIO C.H.;J. Ethnopharmacol.,2007

5. Appendix XVII A. Particle size of powders,2012

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