Identifikasi Interaksi Pencampuran Andrografolid dan Guaifenesin Dengan Metode Mikroskopi

Authors

  • Aris Perdana Kusuma Jurusan Farmasi, Universitas Islam Indonesia

Keywords:

Interaksi, Intermolekuler, Kristalografi, Mikroskopi

Abstract

Interaksi obat dapat terjadi dalam bentuk interaksi farmakokinetik, farmakodinamik, maupun farmasetik. Interaksi farmasetik, khususnya, terjadi dengan memengaruhi sediaan obat yang bersangkutan. Interaksi semacam itu dapat menyebabkan terjadinya pengendapan, peningkatan kelembaban atau pembentukan fase eutektik pada sediaan, bahkan hingga penurunan kadar akibat proses degradasi. Penelitian ini menganalisis model campuran bahan andrografolid dan guaifenesin. Campuran tersebut diuji untuk mengetahui adanya interaksi intermolekuler. Pengujian dilakukan dengan metode mikroskopi dimana sampelnya dilakukan pelarutan dengan etanol. Hasil uji dengan metode ini menunjukkan bahwa kedua senyawa tersebut tidak mengalami transformasi fisik berupa modifikasi bentuk kristal. Meskipun demikian, tetap diperlukan uji lanjutan seperti dengan PXRD atau DSC untuk mengkonfrmasi keamanan pencampuran dua bahan tersebut.

References

Alkrad, J. A., Abu Shmeis, R., Alshwabkeh, I., Abazid, H., dan Mohammad, M. A. (2017): Investigation of the potential application of sodium bentonite as an excipient in formulation of sustained release tablets, Asian Journal of Pharmaceutical Sciences, 12(3), 259–265. https://doi.org/10.1016/j.ajps.2017.01.004

Aronson, J. K. (2004): Classifying drug interactions, British Journal of Clinical Pharmacology, 58(4), 343–344. https://doi.org/10.1111/j.1365-2125.2004.02244.x

Barmpalexis, P., Kachrimanis, K., dan Georgarakis, E. (2011): Solid dispersions in the development of a nimodipine floating tablet formulation and optimization by artificial neural networks and genetic programming, European Journal of Pharmaceutics and Biopharmaceutics, 77(1), 122–131. https://doi.org/10.1016/j.ejpb.2010.09.017

Bentley, J., Heard, K., Collins, G., dan Chung, C. (2015): Mixing medicines: how to ensure patient safety, The Pharmaceutical Journal, 294(7859), 453–456.

Berry, D. J., Seaton, C. C., Clegg, W., Harrington, R. W., Coles, S. J., Horton, P. N., Hursthouse, M. B., Storey, R., Jones, W., Friscic, T., dan Bladgen, N. (2008): Applying Hot-Stage Microscopy to Co-Crystal Screening : A Study of Nicotinamide with Seven Active Pharmaceutical Ingredients, Crystal Growth & Design, 8(5), 1697–1712. https://doi.org/10.1021/cg800035w

Deng, H., Prusak, B., Martin, L., Vass, S., Missaghi, S., Farrell, T. P., dan Rajabi-Siahboomi, A. R. (2012): Critical Material Attributes Consideration for Extended Release Propranolol HCl Hydrophilic Matrix Tablets, AAPS.

Diniz, L. F., Souza, M. S., Carvalho, P. S., da Silva, C. C. P., D’Vries, R. F., dan Ellena, J. (2018): Novel Isoniazid cocrystals with aromatic carboxylic acids: Crystal engineering, spectroscopy and thermochemical investigations, Journal of Molecular Structure, 1153, 58–68. https://doi.org/https://doi.org/10.1016/j.molstruc.2017.09.115

Fahimi, F., Sefidani, A., Taghikhani, S., dan Saliminejad, L. (2015): The Rate of Physicochemical Incompatibilities , Administration Errors . Factors Correlating with Nurses ᾽ Errors, Iranian Journal of Pharmaceutical Research, 2015(14), 87–93.

Freedman, M. D. (1995): Drug Interactions: Classification and Systematic Approach, American Journal of Therapeutics, 2(6), 433–443.

Gniado, K., Löbmann, K., Rades, T., dan Erxleben, A. (2016): The influence of co-formers on the dissolution rates of co-amorphous sulfamerazine/excipient systems, International Journal of Pharmaceutics, 504(1–2), 20–26. https://doi.org/10.1016/j.ijpharm.2016.03.023

Hanifah, S., Ball, P., dan Kennedy, R. (2018): Medication incompatibility in intravenous lines in a paediatric intensive care unit (PICU) of Indonesian hospital, Critical Care and Shock, 21(3), 118–127.

Huang, Y., Xu, H., Wang, P., Gu, R., Li, X., Xu, Y., Wang, J., Qiao, S., Shi, D., Gao, Z., dan Li, J. (2022): Identification of Guaifenesin–Andrographolide as a Novel Combinatorial Drug Therapy for Epilepsy Using Network Virtual Screening and Experimental Validation, ACS Chemical Neuroscience, 13(7), 978–986. https://doi.org/10.1021/acschemneuro.1c00774

Kusuma, A. P., Soewandhi, S. N., Mauludin, R., Suendo, V., Kurniawan, F., Pamungkas, G., dan Nugraha, Y. P. (2022): Energetics of carboxylic acid-pyridine heterosynthon revisited: A computational study of intermolecular hydrogen bond domination on phenylacetic acid-nicotinamide cocrystals, Open Chemistry, 20(1), 949–957. https://doi.org/10.1515/chem-2022-0207

Long, S., Mao, T., Chen, P., Liu, M., Parkin, S., Zhang, M., Li, T., Zhou, P., dan Yu, F. (2017): Strong Hydrogen Bond Leads to a Fifth Crystalline Form and Polymorphism of Clonixin, ChemistrySelect, 2(17), 4942–4950. https://doi.org/10.1002/slct.201700947

Maddileti, D., Swapna, B., dan Nangia, A. (2015): Tetramorphs of the antibiotic drug trimethoprim: Characterization and stability, Crystal Growth and Design, 15(4), 1745–1756. https://doi.org/10.1021/cg501772t

Manjula, S., Kalaiarasi, C., Pavan, M. S., Hathwar, V. R., dan Kumaradhas, P. (2018): Charge density and electrostatic potential of hepatitis C anti-viral agent andrographolide: an experimental and theoretical study, Acta Crystallographica Section B, diperoleh melalui situs internet: https://doi.org/10.1107/S2052520618014981, 74(6), 693–704.

Tillement, J. P., Hannaire, C., Grandidier, M., dan Albengres, E. (2000): Interactions and incompatibilities in prescription drugs. Incidents in dental surgery, Annales Pharmaceutiques Françaises, 58(4), 247–253.

Timbul, P., Soewandhi, S. N., Pambudi, J. S., dan Wikarsa, S. (2013): Identification of physical interaction between anti malarial drugs combination artesunate-amodiaquine hydrochloride, International Journal of Pharmacy and Pharmaceutical Sciences, 5(3), 206–210.

Wang, Y., Liu, L., Zhou, L., Li, M., dan Wang, J. (2005): 3-(2-Methoxy­phen­oxy)propane-1,2-diol, Acta Crystallographica Section E, 61(7), o1999–o2000. https://doi.org/https://doi.org/10.1107/S1600536805016909

Zhou, Z., Chan, H. M., Sung, H. H., Tong, H. H. Y., dan Zheng, Y. (2016): Identification of New Cocrystal Systems with Stoichiometric Diversity of Salicylic Acid Using Thermal Methods, Pharmaceutical Research, 33(4), 1030–1039. https://doi.org/10.1007/s11095-015-1849-1.

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Published

2024-04-26

How to Cite

Kusuma, A. P. (2024). Identifikasi Interaksi Pencampuran Andrografolid dan Guaifenesin Dengan Metode Mikroskopi. PROSIDING SENANTIAS: Seminar Nasional Hasil Penelitian Dan Pengabdian Kepada Masyarakat, 5(1), 150–161. Retrieved from https://openjournal.unpam.ac.id/index.php/Senan/article/view/38986