Formulasi Gel dan Karakterisasi Mutu Fisik Ekstrak Etanol Daun Dadap Serep (Erythrina subumbrans) dengan Variasi Gelling Agent HPMC dan Carbopol
DOI:
https://doi.org/10.55606/jikki.v6i2.11021Keywords:
Carbopol, Erythrina Subumbrans, Gel Formulation, HPMC, Physical QualityAbstract
Dadap serep leaves (Erythrina subumbrans) contain flavonoid compounds with antioxidant and anti-inflammatory activities, thus have potential to be developed as topical gel preparations. This study aimed to formulate and characterize the physical quality of ethanol extract gel of dadap serep leaves with variations of HPMC and Carbopol 940 as gelling agents and to determine the best formula. The extract was obtained by maceration method using 96% ethanol. Gels were prepared in five formulas with variations in HPMC and Carbopol 940 concentrations: F I (HPMC 2%), F II (Carbopol 0.5% + HPMC 1.5%), F III (Carbopol 2%), F IV (Carbopol 1% + HPMC 1%), and F V (Carbopol 1.5% + HPMC 0.5%). Physical quality evaluation included organoleptic, homogeneity, pH, viscosity, spreadability, and adhesion tests. Data were analyzed using one-way ANOVA followed by Tukey's post-hoc test (α=0.05). The results showed that variations in gelling agents significantly affected pH (p<0.05), viscosity (p<0.001), spreadability (p<0.05), and adhesion (p<0.001). The higher the Carbopol concentration, the viscosity and adhesion increased but spreadability decreased. All formulas had brownish-green color, characteristic extract odor, thick consistency, good homogeneity, and pH within the range of 4.5-6.5. Formula I had adhesion of 3.1 seconds which did not meet the requirement (>4 seconds). Formula II (Carbopol 0.5% + HPMC 1.5%) was selected as the best formula because it met all requirements with pH 5.62, viscosity 12,670 cPs, spreadability 6.2 cm, and adhesion 4.2 seconds, showing an optimal balance between ease of spreading and adhesive ability. Further research is recommended including long-term stability tests, pharmacological activity tests, and safety tests of the preparation.
References
Agustiani, F. R. T., Sjahid, L. R., & Nursal, F. K. (2022). Kajian literatur: Peranan berbagai jenis polimer sebagai gelling agent terhadap sifat fisik sediaan gel. Majalah Farmasetika, 7(4), 270–287. https://doi.org/10.24198/mfarmasetika.v7i4.39016
Akmal, Y., & Saputra, I. (2024). Pemanfaatan bahan alam dalam kosmetika tradisional dan keamanannya. Jurnal Tata Rias, 14(2), 49–58. https://doi.org/10.21009/jtr.14.2.04
Al-Bazzaz, F. Y., & Ismail, S. T. (2024). Topical HPMC/Carbopol 934 gel for wound healing: Formulation and in-vivo evaluation. Pharmakeftiki, 36(2).
Apriani, E. F., Shiyan, S., Hardestyariki, D., Starlista, V., & Sari, A. L. (2024). Optimization of hydroxypropyl methylcellulose (HPMC) and carbopol 940 in clindamycin HCl ethosomal gel as anti-acne. Research Journal of Pharmacy and Technology, 17(2), 603–611. https://doi.org/10.52711/0974-360X.2024.00094
Binder, L., Mazál, J., Petz, R., Klang, V., & Valenta, C. (2019). The role of viscosity on skin penetration from cellulose ether-based hydrogels. Skin Research and Technology, 25(5), 725–734. https://doi.org/10.1111/srt.12709
Fahrezi, M. A., Nopiyanti, V., & Priyanto, W. (2021). Formulasi dan uji aktivitas tabir surya gel kitosan menggunakan karbopol 940 dan HPMC K100 sebagai gelling agent. Jurnal Farmasi (Journal of Pharmacy), 10(1), 17–23. https://doi.org/10.37013/jf.v10i1.116
Ferdinand, D. N. P., Hindriani, R., & Latifah, N. (2025). Review artikel: Uji stabilitas pada sediaan gel berdasarkan formulasi dan bahan aktif. Sains Medisina, 3(5), 433–440. https://doi.org/10.63004/snsmed.v3i5.752
Firdausi, J. (2021). Uji mutu fisik gel dari sari buah nanas (Ananas comosus (L.) Merr.) sebagai pelembab kulit. Jurnal Ilmiah Farmasi Attamru (JIFA), 2(1), 20–26. https://doi.org/10.31102/attamru.v2i1.1265
Firmansyah, F., Kholifah, H., & Chabib, L. (2022). Formulasi gel hand sanitizer ekstrak buah belimbing wuluh dengan variasi karbopol 940 dan HPMC. Journal of Islamic Pharmacy, 7(1), 68–73.
Hariharaputhraayyanar, G., Arivazhagan, C., Bhuvaneshwaran, A., Dhanush, M., Jayabharath, J., & Keerthan, T. (2024). Review on formulation and evaluation of topical gel. World Journal of Pharmaceutical Research, 13.
Herlina, T., Rizaldi Akili, A. W., Nishinarizki, V., Hardianto, A., & Latip, J. B. (2025). Review on antibacterial flavonoids from genus Erythrina: Structure-activity relationship and mode of action. Heliyon, 11(1), e41395. https://doi.org/10.1016/j.heliyon.2024.e41395
Irianto, I. D. K., Purwanto, P., & Mardan, M. T. (2020). Aktivitas antibakteri dan uji sifat fisik sediaan gel dekokta sirih hijau (Piper betle L.) sebagai alternatif pengobatan mastitis sapi. Majalah Farmaseutik, 16(2), 202. https://doi.org/10.22146/farmaseutik.v16i2.53793
Karudumpala, S., Praksh, K., & Govindarajan, S. (2014). Formulation and evaluation of carisoprodol topical gel.
Kresnawati, Y., Fitrianingsih, S., & Purwaningsih, C. P. (2022). Formulasi dan uji potensi sediaan spray gel niasiamida dengan propilenglikol sebagai humektan. Cendekia Journal of Pharmacy, 6(2), 281–290. https://doi.org/10.31596/cjp.v6i2.214
Nauval, L. A. O., Wijayatri, R., & Oktaviyani, T. (2026). Identification of active compounds in dadap serep leaves (Erythrina subumbrans (Hassk.) Merr.) and their potential as antioxidants. Journal of Pharmaceutical and Sciences, 60–67. https://doi.org/10.36490/journal-jps.com.v9i1.1164
Nita, P., & Lestari, L. (2024). Formulasi dan karakterisasi nanopartikel kitosan ekstrak daun dadap serep (Erythrina subumbrans) sebagai kandidat herbal antimastitis. Jurnal Kesehatan Madani Medika, 15(1), 94–105. https://doi.org/10.36569/jmm.v15i01.357
Nurjaman, J. (2022). Aktivitas ekstrak daun dadap serep (Erythrina subumbrans) terhadap kadar adiponektin dan malondialdehid (MDA) pada obesitas (Skripsi). Universitas Bhakti Kencana.
Nurlely, N., Rahmah, A., Ratnapuri, P. H., Srikartika, V. M., & Anwar, K. (2021). Uji karakteristik fisik sediaan gel ekstrak daun kirinyuh (Chromolaena odorata L.) dengan variasi karbopol dan HPMC. Jurnal Pharmascience, 8(2), 79–89. https://doi.org/10.20527/jps.v8i2.9346
Ozon, E. A., Burloiu, A. M., Musuc, A. M., Manda, G., Anuta, V., Dinu-Pîrvu, C. E., Lupuliasa, D., Neagoe, I. V., Anastasescu, M., & Socoteanu, R. P. (2025). Cellulose-derived gels for topical delivery: HPMC as a functional matrix for porphyrinic photosensitizers. Gels, 11(10), 824. https://doi.org/10.3390/gels11100824
Özyılmaz, E. D., Mavideniz, A., & Nobavar, Z. (2024). Comparison of in vitro ibuprofen release rates from HPMC and Carbopol® gels. EMU Journal of Pharmaceutical Sciences, 7(2), 40–47. https://doi.org/10.54994/emujpharmsci.1530626
Parhi, R. (2020). Recent advances in the development of semisolid dosage forms. In Pharmaceutical drug product development and process optimization (pp. 125–189). https://doi.org/10.1201/9780367821678-6
Phukhatmuen, P., Meesakul, P., Suthiphasilp, V., Charoensup, R., Maneerat, T., Cheenpracha, S., Limtharakul, T., Pyne, S. G., & Laphookhieo, S. (2021). Antidiabetic and antimicrobial flavonoids from the twigs and roots of Erythrina subumbrans (Hassk.) Merr. Heliyon, 7(4), e06904. https://doi.org/10.1016/j.heliyon.2021.e06904
Susilawati, E., Levita, J., Susilawati, Y., & Sumiwi, S. A. (2023). Pharmacology activity, toxicity, and clinical trials of Erythrina genus plants (Fabaceae): An evidence-based review. Frontiers in Pharmacology, 14. https://doi.org/10.3389/fphar.2023.1281150
Syahputra, R. A., Sutiani, A., Silitonga, P. M., Rani, Z., & Kudadiri, A. (2021). Extraction and phytochemical screening of ethanol extract and simplicia of moringa leaf (Moringa oleifera Lam.) from Sidikalang, North Sumatera. International Journal of Science, Technology & Management, 2(6), 2072–2076. https://doi.org/10.46729/ijstm.v2i6.381
Tambunan, S., & Sulaiman, T. N. S. (2018). Formulasi gel minyak atsiri sereh dengan basis HPMC dan karbopol. Majalah Farmaseutik, 14(2), 87–95. https://doi.org/10.22146/farmaseutik.v14i2.42598
Thomas, N. A., Tungadi, R., Hiola, F., & Latif, M. S. (2023). Pengaruh konsentrasi carbopol 940 sebagai gelling agent terhadap stabilitas fisik sediaan gel lidah buaya (Aloe vera). Indonesian Journal of Pharmaceutical Education, 3(2). https://doi.org/10.37311/ijpe.v3i2.18050
Wahidah, S., Saputri, G. A. R., & Nofita, N. (2024). Formulasi dan uji stabilitas sediaan gel ekstrak etanol daun asam jawa (Tamarindus indica L.) dengan variasi gelling agent. Jurnal Mandala Pharmacon Indonesia, 10(2), 508–518. https://doi.org/10.35311/jmpi.v10i2.623
Wardani, I. G. A. A. K., Udayani, N. N. W., Cahyaningsih, E., Hokor, M. D. T., & Suena, N. M. D. S. (2023). Efektivitas sediaan krim dari ekstrak daun dadap serep (Erythrina subumbrans (Hassk.) Merr.) sebagai antiinflamasi. Jurnal Ilmiah Medicamento, 9(1), 36–41. https://doi.org/10.36733/medicamento.v9i1.5257
Widiastuti, N. K., Sandhika, I. M. G. S., & Sari, N. K. Y. (2022). Uji fitokimia ekstrak daun dadap serep (Erythrina lithosperma Miq.) dengan dua pelarut berbeda. Jurnal Media Sains, 6(2).
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Jurnal Ilmu Kedokteran dan Kesehatan Indonesia

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
_001.jpg)





