Optimasi Co-processed Disintegrant Sodium Starch Glycolate dan Pati Kacang Merah (Phaseolus vulgaris L.) sebagai Bahan Penghancur Fast-Disintegrating Tablet Ondansetron Hydrochloride

Rina Suciati(1), Gunawan Setiyadi(2*)

(1) Fakultas Farmasi, Universitas Muhammadiyah Surakarta, Jl. A. Yani Tromol Pos I Pabelan Sukoharjo 57162, Indonesia
(2) Laboratorium Farmasetika Fakultas Farmasi Universitas Muhammadiyah Surakarta
(*) Corresponding Author

Abstract

Ondansetron HCl is a drug that can block serotonin sites that cause nausea and vomiting. Ondansetron administered in fast disintegrating tablet preparations is expected to make it easier for patients to swallow it since it dissolves quickly with the help of saliva. Red bean starch has a moisture content of 9.14% and amylose content of 44.83±1.56% which is useful as a tablet crusher. Sodium starch glycolate (SSG) is a good disintegrant because it has a swelling ability of 300% in water. In this research, co-processed method is used which can reduce the water content and shorten the tablet crushing time effectively. The purpose of this study was to determine the effect of the different ratios of SSG with red bean starch in co-processed disintegrant on the physical properties of Ondansetron FDT, especially disintegration time, friability and dissolution of tablets and to determine the effect of using co-processed disintegrant SSG-red bean starch in the ondansetron FDT formula with formulas that use non-co-processed disintegrants. The optimization method used in this study was the simplex lattice design with components optimized being SSG and red bean starch in a ratio of 0.5:0.5 (FI), 0.75: 0.25 (FII), 0:1 (FIII), 0.25:0.75 (FIV), and 1:0 (FV). The responses used in the optimization were the physical properties of tablets in the form of friability, disintegration time and tablet dissolution. The optimum formula obtained from the experiment was a formula with a ratio of SSG and red bean starch 0.208:0.792. The predicted response of the optimum formula and the response of the verification formula were 0.61% and (0.66 ± 0.08) % friability, respectively, 37.98 seconds of disintegration and (39.90 ± 0.72) seconds and 97 dissolution 88% and (97.45 ± 0.66) %. The response of the verification formula was within the confidence interval of the prediction response, which indicates that the optimization produces a good prediction. The response of the optimum formula was then compared with the response of the same formula but containing a combination of non-co-processed SSG and red bean starch using a t test with a 95% confidence level. The results of the analysis showed that the P-value for friability was 0.127>0.05 and dissolution was 0.059>0.05, with no significant difference between the two. Meanwhile, the P-value for disintegration time was 0.006 <0.05, which means that there was a significant difference between the co-processed and non-co-processed optimum formulas.

Keywords: red bean starch, sodium starch glycolate, simplex lattice design, Ondansetron HCl and fast disintegrating tablet.

Keywords

red bean starch; sodium starch glycolate; simplex lattice design; Ondansetron HCl; fast disintegrating tablet.

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References

Berlian, A.V. and Subarnas A., 2018. Review Mekanisme, Karakterisasi dan Aplikasi Sodium Starch Glycolate (SSG) dalam Bidang Farmasetik. Farmaka, 16, 556–563.

Bhowmik, D., Chiranjib, B., and Chandira, R.M., 2009. Fast Dissolving Tablet : An Overview, 1 (1), 163–177.

Departemen Kesehatan Republik Indonesia, 1979. Farmakope Indonesia edisi III, III., Jakarta.

Edityaningrum, D., 2018, Optimasi Formula Fast Disintegrating Tablet Ekstrak Daun Belimbing Wuluh (Averrhoa bilimbi L) dengan Kombinasi Superdisintegrant Crospovidone dan Croscarmellose Sodium. Traditional Medicine Journal, 23 (April), 62–69.

Elisabeth, V., YamLea,n P.V., and Suprapti, H.S., 2018. Formulasi Sediaan Granul dengan Bahan Pengikat Pati Kulit Pisang Goroho (Musa acuminafe L.) dan Pengaruhnya Pada Sifar Fisik Granul. Pharmacon, 7 (4), 1–11.

Hana, N., 2010, Formulasi Tablet Hisap Ekstrak Etanol Gambir (Uncaria gambir Roxb) dengan Variasi Konsentrasi Polyvinyl Pyrrolidone (PVP) Sebagai Pengikat Dan Pengaruhnya Terhadap Kadar Cd4 Dalam Darah. Skripsi, Universitas Islam Negeri Syarif Hidayatullah.

Karti, E., Nurismanto, R. and Suharfiyanti, E., 2018. Kajian Proporsi Kacang Merah (Phaseolus vulgaris L.) dan Ubi Jalar Ungu (Ipomoe batatas) Pada Pembuatan Yoghurt, Jurnal Teknologi Pangan, 12 (2), 72–81.

Kementerian Kesehatan Republik Indonesia, 2020. Farmakope Indonesia edisi VI, VI., Jakarta.

Lutfhfiani, H., Ardana, M. and Fadraersada, J., 2020. Pengaruh Penambahan Ekstrak Umbi Bawang Tiwai (Eleutherine palmifolia (L.) Merr) Terhadap Sifat Alir Beberapa Jenis Bahan Pengisi. Mulawarman Pharmaceutical Conference, 41–47.

Maghfiroh N., Ermawati D.E. and Rohmani S., 2018, Optimasi Kombinasi Pati Umbi Gembili (Dioscorea esculenta (Lour.) Burk) dan Pati Umbi Ganyong (Canna edulis Ker.) Sebagai Bahan Pengisi Tablet Ibuprofen dengan Metode Simplex Lattice Design. JPSCR : Journal of Pharmaceutical Science and Clinical Research, 3 (2), 104.

Mulagada, S. and Baratam, S.R., 2017. Design and Evaluation of Ondansetron Fast Disintegrating Tablets Using Natural Polymers and Modified Starches as Super Disintegrants for The Enhancement of Dissolution. Journal of Young Pharmacists, 9 (4), 519–524.

Nagendrakumar, D., Raju S.A., Shirsand, S.B. and Para, M.S., 2010. Design of Fast Dissolving Granisetron HCl Tablets Using Novel Co -processed Suprdisintegrants. International Journal of Pharmaceutical Sciences Review and Research, 1 (1), 58–62.

Nawangsari, D., 2019. Pengaruh Bahan Pengisi Terhadap Massa Cetak Tablet Vitamin C. Jurnal Kesehatan,Kebidanan dan keperawatan Viva Medika, 11 (2), 27–36.

Pharmacopeia United States, 2011. USP General Chapter 〈711〉 Dissolution. US Pharmacopeial Convention, United Book Press, 1, 1–8.

Purnamasari, N.A.D., and Saputra P.A., 2019. Formulasi Orally Disintegrating Tablet (ODT) Hasil Pembentukan Kompleks Inklusi Nifedipin- β -siklodekstrin dengan Metode Kneading, Majalah Farmaseutik, 15 (1), 22–27.

Ratnaningsih, N., 2013. Artikel Publikasi Penelitian Hibah Bersaing Karakteristik Fisikokimia Pati Kacang Merah dan Pati Kacang Koro Pedang, November: 1–13.

Rowe, R.C., Sheskey, P.J. and Quinn, M.E., 2015. Handbook of Pharmaceutical Excipients, sixth edit., Washington DC.

Salunkhe, S.S., Bhatia, N.M., Kulkarni, P.A., Kale, A.S., Pagar, U.E., and Bhatia, M.S., 2013. Impact of Formulation Parameters on Fast Dissolving Tablet of Ondansetron Hydrochloride Prepared by Pressurized Homogenization Technique. World Journal of Pharmacy and Pharmaceutical Sciences, 2 (6), 5654–5666.

Sharma, D., Kumar, D., Singh, M., Singh, G. and Rathore, M.S., 2012. Fast Disintegrating Tablets: A New Era In Novel Drug Delivery System and New Market Opportunities. Journal of Drug Delivery and Therapeutics, 2 (3), 74–86.

Siregar, L.N.S., Harum, N. and Rahmayuni, R., 2017. Pemanfaatan Tepung Kacang Merah dan Salak Padang Sidimpuan (Salacca sumatrana R.) dalam Pembuatan Snack Bar. JOM Faperta UR, 4 (1), 1–10.

United States Pharmacopeia, 2010, Ondansetron, Orally Disintegrating Tablet, Healthline, 1–2.

United State Pharmacopoeia, 2012, Tablet Breaking Force, USP 35, (c), 2011–2013.

United States Pharmacopeia, 2016, USP Powder Flow, Stage 6 Harmonization, 30(60) (6), 7.

Wiranata, I.G.A.G., Puspaningrum, D.H.D. and Kusumawati, I.G.A.W., 2017. Formulasi dan Karakteristik Nutrimat Bar Berbasis Tepung Kacang Kedelai (Glycine max. L) dan Tepung Kacang Merah (Phaseolus vulgaris. L) sebagai Makanan Pasien Kemoterapi. Jurnal Gizi Indonesia, 5 (2), 133.

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