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Effects of Drying Methods on the Physicochemical and Compressional Characteristics of Okra Powder and the Release Properties of its Metronidazole Tablet Formulation
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  • Effects of Drying Methods on the Physicochemical and Compressional Characteristics of Okra Powder and the Release Properties of its Metronidazole Tablet Formulation
  • Effects of Drying Methods on the Physicochemical and Compressional Characteristics of Okra Powder and the Release Properties of its Metronidazole Tablet Formulation
저자명
Bakre. L.G.,Jaiyeoba. K.T.
간행물명
Archives of pharmacal research : a publication of the Pharmaceutical Society of Korea
권/호정보
2009년|32권 2호|pp.259-267 (9 pages)
발행정보
대한약학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

A study has been made of the effects of sun and oven drying methods on the physicochemical characteristics and compressibility of Okra powder and the release properties of its metronidazole tablet formulation. Corn starch was used as the reference standard. The mechanical properties of the tablets were evaluated using crushing strength and friability, while the release properties were determined using the disintegration times and dissolution rates. The results obtained showed that sun-dried Okra powder had smaller particle size, exhibited good flow and possessed higher hydration and swelling capacities compared to the oven dried samples. The compressibility of Okra powders assessed by the indices of plasticity from Heckel (Py) and Kawakita plots (Pk) showed that sun dried Okra powders had higher Py but lower Pk values than the oven-dried Okra powder. Metronidazole tablets formulated with oven dried Okra powder formed stronger tablets than tablets containing sun dried Okra powder. Generally, tablets containing sun dried Okra powders had faster disintegration and dissolution than tablets formulated with oven-dried powder. The results suggest that the choice of drying method during the processing of pharmaceutical raw materials is critical to its physicochemical properties and the release properties of its tablet formulations.