OPTIMASI FORMULA FAST DISINTEGRATING TABLET EKSTRAK DAUN JAMBU BIJI (Psidium guajava L.) DENGAN KOMBINASI BAHAN PENGIKAT POLIVINILPIROLIDON DAN PENGHANCURSODIUM STARCH GLYCOLATE
DOI:
https://doi.org/10.36387/jiis.v10i2.2276Keywords:
guava leaf extract, fast disintegrating tablet, polyvinylpyrrolidone, PVP, sodium starch glycolate, SSGAbstract
Guava leaves (Psidium guajava L.) can be used as an antidiarrheal with the presence of tannin compounds in them. One way to obtain the benefits of guava leaves is to develop them in practical and easy-to-use preparations such as Fast Disintegrating Tablets (FDT) which are very useful for pediatric and geriatric patients who have difficulty swallowing whole tablets. In addition, FDT has a faster onset of action than regular tablets. This study aims to determine the effect of the combination of Sodium Starch Glycolate (SSG) as a disintegrant and polyvinylpyrrolidone (PVP) as a binder and the optimum concentration of the combination of both that provide good physical properties of guava leaf FDT. This study was conducted using a simplex lattice experimental design. The components of the guava leaf FDT formula that were optimized were PVP and SSG, while the response used for formula optimization was the physical properties of the tablet, namely weight uniformity, hardness, fragility, and tablet disintegration time. In this study, the manufacture of guava leaf FDT was carried out using the wet granulation method. The results showed that the optimum formula was obtained at a ratio of PVP 2.947% and SSG 9.553% with a desirability value of 0.622 which resulted in a weight uniformity (coefficient of variation) of 1.20%, a hardness of 4.55 kg, a friability of 1.68%, and a disintegration time of 124.78 seconds. Verification of the predicted response of the optimum formula showed that the optimization process could predict the response well.
References
1. Czigle S, Fialová SB, Tóth J, Mučaji P, Nagy M. Treatment of Gastrointestinal Disorders—Plants and Potential Mechanisms of Action of Their Constituents. Molecules. 2022;27(9):2881.
2. Faulinza E. The Potential Treatment of Guava Leaf (Psidium guajava Linn.) For Diarrhea in Children. Eureka Herba Indones. 2022;3(1):140–4.
3. Lestari ABS, Fudholi A, Nugroho AK, Setyowati EP. Formula Optimization of Fast Disintegrating Tablet (FDT) of Centella asiatica (L.) Urb. Ethanolic Extract. J Ilmu Kefarmasian Indones. 2018;16(1):94.
4. Chauhan K, Solanki R, Sharma S. A review on fast dissolving tablet. Int J Appl Pharm. 2018;10(6):1–7.
5. Masih A, Kumar A, Singh S, Tiwari AK. Fast Dissolving Tablets: a Review. Int J Curr Pharm Res. 2017;9(2):8.
6. Putri YK, Husni P. Artikel Tinjauan: Pengaruh Bahan Pengikat Terhadap Fisik Tablet. Farmaka. 2018;16(1):33–9.
7. Cahya CAD, Priasa A, M. Br. Turnip NU. Uji Aktivitas Ekstrak Etanol Daun Labu Siam (Sechium Edule (Jacq.) Swartz) Terhadap Aktivitas Antibakteri Staphylococcus Aureus. J Farm. 2020;3(1):32–8.
8. Rowe R., Sheskey P., Quinn M. Handbook of Pharmaceutical Excipients Sixth edition. In: Remington: The Science and Practice of Pharmacy. Pharmaceutical Press and American Pharmacist Association; 2009.
9. Lestari TF, Agung Giri Samudra, Dwi Dominica. Pengaruh Variasi Konsentrasi Explotab pada Sediaan Tablet Metode Granulasi Basah Ekstrak Alga Coklat Sargassum Sp. Med Sains J Ilm Kefarmasian. 2022;7(3):653–66.
10. Voigt R. Buku Pelajaran Teknologi Farmasi. Yogyakarta: Universutas Gajah Mada; 1984.
11. United States Pharmacopeia. United States Pharmacopeia National Formulary 46 NF 41. In: 41st ed. U.S. Pharmacopeial Convention, Inc; 2023.
12. Departemen Kesehatan Republik Indonesia. Faramkope Indonesia Edisi V. Jakarta: Departemen Kesehatan Republik Indonesia; 2014. 1525 p.
13. Departemen Kesehatan Republik Indonesia. Farmakope Indonesia Edisi III. III. Jakarta: Direktorat Jendral Pengawasan Obat dan Makanan, Departemen Kesehatan Republik Indonesia; 1979.
14. Irawan W, Sulaiman TNS. Optimasi Formula Fast Disintegrating Tablet Natrium Diklofenak Terinklusi β-Siklodekstrin Dengan Superdisintegrant Crospovidone dan Filler Binder Mikrokristalin Selulosa Ph 102. Maj Farm. 2016;12(2):443–52.
15. Warnasih S, Hasanah U. Phytochemical Characterization and Tannin Stability Test From Kluwek (Pangium edule Reinw). J Sci Innovare. 2019;1(02):44–9.
16. Nofriyaldi A, Agustien GS. Pengaruh Variasi Konsenstrasi Croscarmellose Sodium terhadap Sifat Fisik Fast Disintegrating Tablet Ekstrak Etanol Biji Kapulaga (Amomum Compactum Soland. Ex Maton) sebagai Superdisintegran. Heal Tadulako J (Jurnal Kesehat Tadulako. 2020;6(3):1–95.
17. Irawan ED, Sari LORK, Cahyaningrum N. Optimasi Sodium Croscarmellose dan Pati Jagung Pregelatinasi dalam Orally Disintegrating Tablet Setirizin Dihidroklorida. JFIOnline | Print ISSN 1412-1107 | e-ISSN 2355-696X. 2022;14(2):136–46.
18. Saputri YL, Nawangsari D, Samodra G. Formulasi dan Evaluasi Tablet Hisap Ekstrak Kulit Pisang Raja (Musa X paradisiaca L.) Menggunakan Polivinil Pirolidon (PVP). J Mandala Pharmacon Indones. 2022;8(2):262–74.
19. Manzoor A. Sodium Starch glycolate as a superdisintegrant. J Contemp Pharm. 2021;5(1):33–9.
20. Hidayat IR, Zuhrotun A, Sopyan I. Design-Expert Software sebagai Alat Optimasi Formulasi Sediaan Farmasi. Maj Farmasetika. 2021 Oct;6(1):99–120.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 JIIS (Jurnal Ilmiah Ibnu Sina): Ilmu Farmasi dan Kesehatan

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
