Review: Pendekatan Formulasi Sediaan SNEDDS terhadap BCS Kelas II, III, dan IV
Isnia Sekar Sari(1), T.N. Saifullah Sulaiman(2*), Marlyn Dian Laksitorini(3)
(1) Magister Ilmu Farmasi, Fakultas Farmasi, Universitas Gadjah Mada
(2) Depatemen Farmasetika, Fakultas Farmasi, Universitas Gadjah Mada
(3) Depatemen Farmasetika, Fakultas Farmasi, Universitas Gadjah Mada
(*) Corresponding Author
Abstract
Latar Belakang: Self Nano-emulsifying Drug Delivery System (SNEDDS) dengan basis lipid yang mampu membawa zat aktif sukar larut dalam air, permeabilitas dan ketersediaan hayati yang rendah. Kombinasi komponen SNEDDS merupakan campuran isotropik yang stabil dan memberikan pengaruh pada pengujian sediaan. Karakteristik fisik dan stabilitas sediaan yang baik berbanding lurus dengan pengujian in-vitro dan in-vivo, dapat diartikan bahwa zat aktif dalam sistem SNEDDS dapat meningkatkan ketersediaan hayati oral.
Tujuan: Review artikel ini bertujuan untuk memberikan informasi terkait karakteristik fisik, ketersediaan hayati, dan stabilitas sediaan SNEDDS dengan natural oil sebagai fase minyak yang berperan secara sinergis dengan zat aktif.
Metode: Penelusuran jurnal ilmiah diambil pada laman Sciencedirect, Researchgate, dan MDPI dalam kurun waktu lima tahun terakhir. Pencarian jurnal ilmiah dengan kata kunci diantaranya bio-active, SNEDDS, stability, bioavailability, anticancer, antiinflammation, dan antioxidant.
Hasil: Jurnal ilmiah yang di-review menunjukan bahwa zat aktif berupa ekstrak hingga senyawa sintesis yang diformulasikan dalam sistem SNEDDS mampu meningkatkan ketersediaan hayati oral, stabilitas sediaan, dan karakteristik fisik.
Kesimpulan: Self Nano-emulsifying Drug Delivery System (SNEDDS) dengan komponen yang sesuai mampu meningkatkan ketersediaan hayati, mencapai target terapi yang diinginkan, dan berpotensi sebagai pilihan terapi penyakit.
Keywords
References
Abushal, A. S., Aleanizy, F. S., Alqahtani, F. Y., Shakeel, F., Iqbal, M., Haq, N., & Alsarra, I. A. (2022). Self-Nanoemulsifying Drug Delivery System (SNEDDS) of Apremilast: In Vitro Evaluation and Pharmacokinetics Studies. Molecules, 27(10), 3085. https://doi.org/10.3390/molecules27103085
Ahmad, S., & Hafeez, A. (2023). Formulation and Development of Curcumin–Piperine-Loaded S-SNEDDS for the Treatment of Alzheimer’s Disease. Molecular Neurobiology, 60(2), 1067–1082. https://doi.org/10.1007/s12035-022-03089-7
12
Ashfaq, M., Shah, S., Rasul, A., Hanif, M., Khan, H. U., Khames, A., Abdelgawad, M. A., Ghoneim, M. M., Ali, M. Y., Abourehab, M. A. S., Maheen, S., Iqbal, O., Abbas, G., & El Sisi, A. M. (2022). Enhancement of the Solubility and Bioavailability of Pitavastatin through a Self-Nanoemulsifying Drug Delivery System (SNEDDS). Pharmaceutics, 14(3), 482. https://doi.org/10.3390/pharmaceutics14030482
Baloch, J., Sohail, M. F., Sarwar, H. S., Kiani, M. H., Khan, G. M., Jahan, S., Rafay, M., Chaudhry, M. T., Yasinzai, M., & Shahnaz, G. (2019). Self-Nanoemulsifying Drug Delivery System (SNEDDS) for Improved Oral Bioavailability of Chlorpromazine: In Vitro and In Vivo Evaluation. Medicina, 55(5), 210. https://doi.org/10.3390/medicina55050210
Cardador Martínez, A., & Rodríguez García, V. M. (Ed.). (2018). Essential oils production, applications and health benefits. Nova Science Publishers.
Chime, S. A., Kenechukwu, F. C., & Attama, A. A. (2014). Nanoemulsions—Advances in Formulation, Characterization and Applications in Drug Delivery. Dalam A. D. Sezer (Ed.), Application of Nanotechnology in Drug Delivery. InTech. https://doi.org/10.5772/58673
Chong, X., Wang, L., Hu, C., & He, L. (2023). Quality control and consistency evaluation of ceftriaxone sodium for injection. Journal of Chemotherapy, 35(6), 477–490. https://doi.org/10.1080/1120009X.2022.2153314
Darna, B., & Padma Ganesh, B. S. (2020). Development and In vivo Evaluation of Pitavastatin Self-emulsifying Drug Delivery Systems. International Journal of Pharmaceutical Sciences and Drug Research, 13(03), 295–302. https://doi.org/10.25004/IJPSDR.2021.130309
Ebrahimi, S., Farhadian, N., Karimi, M., & Ebrahimi, M. (2020). Enhanced bactericidal effect of ceftriaxone drug encapsulated in nanostructured lipid carrier against gram-negative Escherichia coli bacteria: Drug formulation, optimization, and cell culture study. Antimicrobial Resistance & Infection Control, 9(1), 28. https://doi.org/10.1186/s13756-020-0690-4
Elnaggar, Y. S. R., El-Massik, M. A., & Abdallah, O. Y. (2009). Self-nanoemulsifying drug delivery systems of tamoxifen citrate: Design and optimization. International Journal of Pharmaceutics, 380(1–2), 133–141. https://doi.org/10.1016/j.ijpharm.2009.07.015
Feeney, O. M., Crum, M. F., McEvoy, C. L., Trevaskis, N. L., Williams, H. D., Pouton, C. W., Charman, W. N., Bergström, C. A. S., & Porter, C. J. H. (2016). 50 years of oral lipid-based formulations: Provenance, progress and future perspectives. Advanced Drug Delivery Reviews, 101, 167–194. https://doi.org/10.1016/j.addr.2016.04.007
Iyer, M. N. H., Sarmah, B. C., Tamuli, M. K., Das, A., & Kalita, D. (2012). Effect of dietary sunflower oil and coconut oil on adipose tissue gene expression, fatty acid composition and serum lipid profile of grower pigs. Archives of Animal Nutrition, 66(4), 271–282. https://doi.org/10.1080/1745039x.2012.683324
13
Janardhan, H. P., Jung, R., & Trivedi, C. M. (2023). Lymphatic System in Organ Development, Function, and Regeneration. Circulation Research, 132(9), 1181–1184. https://doi.org/10.1161/CIRCRESAHA.123.322867
Jimenez-Lopez, C., Carpena, M., Lourenço-Lopes, C., Gallardo-Gomez, M., Lorenzo, J. M., Barba, F. J., Prieto, M. A., & Simal-Gandara, J. (2020). Bioactive Compounds and Quality of Extra Virgin Olive Oil. Foods, 9(8), 1014. https://doi.org/10.3390/foods9081014
Kanwal, T., Kawish, M., Maharjan, R., Ghaffar, I., Ali, H. S., Imran, M., Perveen, S., Saifullah, S., Simjee, S. U., & Shah, M. R. (2019). Design and development of permeation enhancer containing self-nanoemulsifying drug delivery system (SNEDDS) for ceftriaxone sodium improved oral pharmacokinetics. Journal of Molecular Liquids, 289, 111098. https://doi.org/10.1016/j.molliq.2019.111098
Kanwal, T., Saifullah, S., Rehman, J. ur, Kawish, M., Razzak, A., Maharjan, R., Imran, M., Ali, I., Roome, T., Simjee, S. U., & Shah, M. R. (2021). Design of absorption enhancer containing self-nanoemulsifying drug delivery system (SNEDDS) for curcumin improved anti-cancer activity and oral bioavailability. Journal of Molecular Liquids, 324, 114774. https://doi.org/10.1016/j.molliq.2020.114774
Karavasili, C., Andreadis, I. I., Tsantarliotou, M. P., Taitzoglou, I. A., Chatzopoulou, P., Katsantonis, D., Zacharis, C. K., Markopoulou, C., & Fatouros, D. G. (2020). Self-Nanoemulsifying Drug Delivery Systems (SNEDDS) Containing Rice Bran Oil for Enhanced Fenofibrate Oral Delivery: In Vitro Digestion, Ex Vivo Permeability, and In Vivo Bioavailability Studies. AAPS PharmSciTech, 21(6), 208. https://doi.org/10.1208/s12249-020-01765-2
Kassem, A. A., Abd El-Alim, S. H., Salman, A. M., Mohammed, M. A., Hassan, N. S., & El-Gengaihi, S. E. (2020). Improved hepatoprotective activity of Beta vulgaris L. leaf extract loaded self-nanoemulsifying drug delivery system (SNEDDS): In vitro and in vivo evaluation. Drug Development and Industrial Pharmacy, 46(10), 1589–1603. https://doi.org/10.1080/03639045.2020.1811303
Kazi, M., A. Nasr, F., Noman, O., Alharbi, A., Alqahtani, M. S., & Alanazi, F. K. (2020). Development, Characterization Optimization, and Assessment of Curcumin-Loaded Bioactive Self-Nanoemulsifying Formulations and Their Inhibitory Effects on Human Breast Cancer MCF-7 Cells. Pharmaceutics, 12(11), 1107. https://doi.org/10.3390/pharmaceutics12111107
Kazi, M., Alhajri, A., Alshehri, S. M., Elzayat, E. M., Al Meanazel, O. T., Shakeel, F., Noman, O., Altamimi, M. A., & Alanazi, F. K. (2020). Enhancing Oral Bioavailability of Apigenin Using a Bioactive Self-Nanoemulsifying Drug Delivery System (Bio-SNEDDS): In Vitro, In Vivo and Stability Evaluations. Pharmaceutics, 12(8), 749. https://doi.org/10.3390/pharmaceutics12080749
Kazi, M., Alqahtani, A., Ahmad, A., Noman, O. M., Aldughaim, M. S., Alqahtani, A. S., & Alanazi, F. K. (2021). Development and optimization of sitagliptin and dapagliflozin loaded oral self-nanoemulsifying formulation against type 2 diabetes mellitus. Drug Delivery, 28(1), 100–114. https://doi.org/10.1080/10717544.2020.1859001
14
Krstić, M., Medarević, Đ., Đuriš, J., & Ibrić, S. (2018). Self-nanoemulsifying drug delivery systems (SNEDDS) and self-microemulsifying drug delivery systems (SMEDDS) as lipid nanocarriers for improving dissolution rate and bioavailability of poorly soluble drugs. Dalam Lipid Nanocarriers for Drug Targeting (hlm. 473–508). Elsevier. https://doi.org/10.1016/B978-0-12-813687-4.00012-8
Kumar, M., Bishnoi, R. S., Shukla, A. K., & Jain, C. P. (2019). Techniques for Formulation of Nanoemulsion Drug Delivery System: A Review. Preventive Nutrition and Food Science, 24(3), 225–234. https://doi.org/10.3746/pnf.2019.24.3.225
Kumar, R., Khursheed, R., Kumar, R., Awasthi, A., Sharma, N., Khurana, S., Kapoor, B., Khurana, N., Singh, S. K., Gowthamarajan, K., & Wadhwani, A. (2019). Self-nanoemulsifying drug delivery system of fisetin: Formulation, optimization, characterization and cytotoxicity assessment. Journal of Drug Delivery Science and Technology, 54, 101252. https://doi.org/10.1016/j.jddst.2019.101252
Li, P., Nielsen, H. M., & Müllertz, A. (2016). Impact of Lipid-Based Drug Delivery Systems on the Transport and Uptake of Insulin Across Caco-2 Cell Monolayers. Journal of Pharmaceutical Sciences, 105(9), 2743–2751. https://doi.org/10.1016/j.xphs.2016.01.006
Liu, C., Wang, R., He, S., Cheng, C., & Ma, Y. (2020). The stability and gastro-intestinal digestion of curcumin emulsion stabilized with soybean oil bodies. LWT, 131, 109663. https://doi.org/10.1016/j.lwt.2020.109663
Mahmoudi, A., Kesharwani, P., Majeed, M., Teng, Y., & Sahebkar, A. (2022). Recent advances in nanogold as a promising nanocarrier for curcumin delivery. Colloids and Surfaces B: Biointerfaces, 215, 112481. https://doi.org/10.1016/j.colsurfb.2022.112481
Marwat, S. K., Rehman, F., Khan, E. A., Baloch, M. S., Sadiq, M., Ullah, I., Javaria, S., & Shaheen, S. (2017). Review—Ricinus cmmunis—Ethnomedicinal uses and pharmacological activities. Pakistan Journal of Pharmaceutical Sciences, 30(5), 1815–1827.
Mošovská, S., Petáková, P., Kaliňák, M., & Mikulajová, A. (2016). Antioxidant properties of curcuminoids isolated from Curcuma longa L. Acta Chimica Slovaca, 9(2), 130–135. https://doi.org/10.1515/acs-2016-0022
Nandi, U., Ajiboye, A. L., Patel, P., Douroumis, D., & Trivedi, V. (2021). Preparation of Solid Dispersions of Simvastatin and Soluplus Using a Single-Step Organic Solvent-Free Supercritical Fluid Process for the Drug Solubility and Dissolution Rate Enhancement. Pharmaceuticals, 14(9), 846. https://doi.org/10.3390/ph14090846
Nasr, A., Gardouh, A., & Ghorab, M. (2016). Novel Solid Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) for Oral Delivery of Olmesartan Medoxomil: Design, Formulation, Pharmacokinetic and Bioavailability Evaluation. Pharmaceutics, 8(3), 20. https://doi.org/10.3390/pharmaceutics8030020
Shan, X., Gong, X., Li, J., Wen, J., Li, Y., & Zhang, Z. (2022). Current approaches of nanomedicines in the market and various stage of clinical translation. Acta Pharmaceutica Sinica B, 12(7), 3028–3048. https://doi.org/10.1016/j.apsb.2022.02.025
15
Sokkula, S. R., & Gande, S. (2020). A Comprehensive Review on Self-Nano Emulsifying Drug Delivery Systems: Advancements & Applications. International Journal of Pharmaceutical Sciences and Drug Research, 576–583. https://doi.org/10.25004/IJPSDR.2020.120522
Soni, M. G. C., Prajapati, S. K., & Chaudhri, N. (t.t.). SELF NANOEMULSION: ADVANCE FORM OF DRUG DELIVERY SYSTEM. World Journal of Pharmacy and Pharmaceutical Sciences, 3(10).
Wang, L., Mu, R.-J., Li, Y., Lin, L., Lin, Z., & Pang, J. (2019). Characterization and antibacterial activity evaluation of curcumin loaded konjac glucomannan and zein nanofibril films. LWT, 113, 108293. https://doi.org/10.1016/j.lwt.2019.108293
Wickramasinghe Mudiyanselage, D. R., & Wickramasinghe, I. (2023). Comparison of physicochemical characteristics of virgin coconut oils from traditional and hybrid coconut varieties. Journal of Agriculture and Food Research, 12, 100554. https://doi.org/10.1016/j.jafr.2023.100554
Xu, Q., Wang, L., Li, W., Xing, Y., Zhang, P., Wang, Q., Li, H., Liu, H., Yang, H., Liu, X., & Ma, Y. (2019). Scented Tartary Buckwheat Tea: Aroma Components and Antioxidant Activity. Molecules, 24(23), 4368. https://doi.org/10.3390/molecules24234368
Yadav, P., Rastogi, V., & Verma, A. (2020). Application of Box–Behnken design and desirability function in the development and optimization of self-nanoemulsifying drug delivery system for enhanced dissolution of ezetimibe. Future Journal of Pharmaceutical Sciences, 6(1), 7. https://doi.org/10.1186/s43094-020-00023-3
Zhao, Z., Cui, X., Ma, X., & Wang, Z. (2020). Preparation, characterization, and evaluation of antioxidant activity and bioavailability of a self-nanoemulsifying drug delivery system (SNEDDS) for buckwheat flavonoids. Acta Biochimica et Biophysica Sinica, 52(11), 1265–1274. https://doi.org/10.1093/abbs/gmaa124
Zhou, X.-L., Chen, Z.-D., Zhou, Y.-M., Shi, R.-H., & Li, Z.-J. (2019). The Effect of Tartary Buckwheat Flavonoids in Inhibiting the Proliferation of MGC80-3 Cells during Seed Germination. Molecules, 24(17), 3092. https://doi.org/10.3390/molecules24173092
Zhu, H., Xu, T., Qiu, C., Wu, B., Zhang, Y., Chen, L., Xia, Q., Li, C., Zhou, B., Liu, Z., & Liang, G. (2016). Synthesis and optimization of novel allylated mono-carbonyl analogs of curcumin (MACs) act as potent anti-inflammatory agents against LPS-induced acute lung injury (ALI) in rats. European Journal of Medicinal Chemistry, 121, 181–193. https://doi.org/10.1016/j.ejmech.2016.05.041
Zielińska, M., Dereń, K., Polak-Szczybyło, E., & Stępień, A. E. (2021). The Role of Bioactive Compounds of Nigella sativa in Rheumatoid Arthritis Therapy—Current Reports. Nutrients, 13(10), 3369. https://doi.org/10.3390/nu13103369
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Universitas Gadjah Mada







