A comparative evaluation of the flow and compaction characteristics of Psidium guajava leaf powder

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S. O. Majekodunmi
O. Ekundayo

Résumé

The dried leaf of Psidium guajava is wildly used in the treatment of diabetes, gastroenteritis, vomiting, diarrhoea, dysentery, wounds, ulcers, toothache, coughs, sore throat and inflamed gums. The objective of the present research was to study the original flowability and compressibility of Psidium guajava leaf powder and develop its tablet formulations by wet granulation and direct compression. The consolidation behaviors of drug and tablet formulations were studied by using Heckel and Leuenberger equations. Psidium guajava leaf powder showed very poor flowability and compressibility. Kawakita analysis revealed improved flowability for formulations prepared by direct compression and wet granulation techniques. The Heckel plot showed that Psidium guajava leaf powder is soft in nature, poor in die filling and deforms by initial fragmentation. Granules showed higher degree of plasticity and fragmentation than powder and direct compression formulation. The compression parameter for compact formed by direct compression and wet granulation technique indicated that the maximum crushing strength is reached faster at lower pressures of compression. From this study, it is concluded that desired flowability and compressibility of Psidium guajava leaf powder can be obtained by direct compression and wet granulation technique but wet granulation technique is comparatively better.

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Majekodunmi , S. O. ., & Ekundayo , O. . (2020). A comparative evaluation of the flow and compaction characteristics of Psidium guajava leaf powder. Nigerian Journal of Pharmaceutical and Applied Science Research, 3(1), 54–64. Consulté à l’adresse https://nijophasr.net/index.php/nijophasr/article/view/345
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Références

Banker, G. S., Anderson, N. R. (1990): Tablets: In The Theory and Practice of Industrial Pharmacy; Lachman L, Liberman HA, Kanig JL, Ed.; Varghese Publishing House.: Bombay, 294-295.

Basnet, P., Kadota, S., Pandey, R.R., Takahashi, T., Kojima, Y., Shimizu, M., Takata, Y.,

Kobayashi, M., Namba, T. (1995): Screening of traditional medicines for their hypoglycemic activity in streptozotocin (STZ)-induced diabetic rats and a detailed study on Psidium guajava. Wakan Iyakugaku Zasshi 12, 109–117.

Carson, J. W., Marinelli J. (1994): Characterize bulk solids to ensure smooth flow. Chem. Eng. 4, 78-98.

Cheng, J.T., Yang, R.S., 1983. Hypoglycemic effect of guava juice in mice and human subjects. American Journal of Chinese Medicine 11, 74–76.

Deguchi, Y., Osada, K., Uchida, K., Kimura, H., Yoshikawa, M., Kudo, T., Yasui, H., Watanuki, M., (1998): Effects of extract of guava leaves on the development of diabetes in the db/db mouse and on the postprandial blood glucose of human subjects. Nippon Nogei Kagaku Kaishi 72, 923–931.

Esezobo, S., Pilpel, N. (1976): Some formulation factors affecting the tensile strength, disintegration and dissolution of uncoated oxytetracycline tablets. J. Pharm. Pharmacol. 28, 8-16.

Fohrer C. (1996): Interparticulate attraction mechanisms. In Pharmaceutical Powder Compaction Technology; Alderborn G, Nystrom C, Ed.; Marcel Dekker, Inc.: New York, 1996; 1-15.

Joseph, B and Priya, R. M. (2011): Phytochemical and Biopharmaceutical Aspects of Psidium guajava (L) Essential Oil. Res. J. Medicinal plant, 5: 432 - 442

Ilkka J, Paronen P. (1993): Prediction of the compression behavior of powder mixtures by the Heckel equation. Int. J. Pharm. 94, 181-187.

Itiola, O. A. (1991): Compressional characteristics of three starches and the mechanical properties of their tablets. Pharm. World. J. 8, 91-94.

Iwu, M. M. (1993): Hand book of African medicinal plants. CRC Press.

Jetzer, W., Leuenberger, H., Sucker, H. (1983): The compressibility and compactibility of pharmaceutical powders. Pharm. Technol. 7, 33-39.

Karsten, H., Katharina, M. P. (2004): Evaluation of a new coprocessed compound based on lactose and maize starch for tablet formulation. AAPS Pharm. Sci. Tech., 6(2), Article 16.

Korhonen, O., Pohja, S., Peltonen, S., Suihko, E., Vidgren, M., Paronen, P., Ketolainen, J. (2002): Effect of physical properties for starch acetate powders on tableting. AAPS Pharm. Sci. Tech. 3(4), Article 34.

Leuenberger, H., Rohera, B. D. (1986): Fundamentals of powder compression. 1. The compactibility and compressibility of pharmaceutical powders. Pharm. Res. 3, 12-22.

Maruyama, Y., Matsuda, H., Matsuda, R., Kubo, M., Hatano, T., Okuda, T. (1985): Study on Psidium guajava L. (I). Antidiabetic effect and effective components of the leaf of Psidium guajava L. (Part 1). Shoyakugaku Zasshi 39, 261–269.

Mukhtar, H. M, Ansari, S. H., Naved, T., Bhat, Z. A. (2004): Hypoglycemic Activity of Psidium guajava Linn. Leaf Extract. Journal of natural remedies vol 4, issue 2.

Paronen, P., Ilkka, J. (1996): Porosity-pressure function. In Pharmaceutical Powder Compaction Technology; Alderborn G, Nystrom C, Ed.; Marcel Dekker, Inc.: New York, 55-75.

Pesonen, T., Paronen, P. (1986): Evaluation of new cellulose material as a binding agent for the direct compression of tablets. Drug. Dev. Ind. Pharm. 12, 2091-2111.

Rai, P. K., Mehta, S., Watal, G. (2010): Hypolipidaemic & hepatoprotective effects of Psidium guajava raw fruit peel inexperimental diabetes. Indian J Med Res, 131, 820-824.

Rajpal, V. (2002): Standardization of Botanicals- testing and extraction methods of medicinal herbs, Eastern Publishers, New Delhi.

Shlieout, G., Arnold, K., Muller, G. (2000): Powder and mechanical properties of microcrystalline cellulose with different degrees of polymerization. AAPS Pharm. Sci. Tech.3(2), Article 11.

Tachakittirungrod, S., Ikegami, F., Okonogi, S. (2007): Antioxidant Active Principles isolated from Psidium guajava Grown in Thailand. Scientia Pharmaceutica (Sci. Pharm.) 75, 179 – 193.

Yamashiro, M, Yuasa, Y, Kawakita, K. (1983): An experimental study on the relationships between compressibility, fluidity and cohesion of powder solids at small tapping numbers. Powder Technology. 34, 225-231.