Perbedaan Teknik Ekstraksi dan Hubungannya dengan Uji Aktivitas dan Hasil Fitokimia
DOI:
https://doi.org/10.61132/jupenkifb.v1i5.631Keywords:
Biological Activity Test, Extract Yield, Modern Extraction, Natural Material Extraction, PhytochemistryAbstract
This study aims to analyze the differences between various extraction techniques and their relationship to the yield and biological activity of phytochemical compounds derived from natural materials. A systematic literature review was conducted by analyzing relevant and reliable scientific publications published within the last five years. The findings indicate that extraction methods such as maceration, soxhletation, microwave-assisted extraction (MAE), and ultrasound-assisted extraction (UAE) demonstrate varying levels of effectiveness depending on the type of material, solvent polarity, extraction temperature, and duration of the process. Modern extraction methods, particularly sonication, MAE, and UAE, have been shown to produce higher yields with enhanced biological activity while offering greater efficiency in terms of reduced time and solvent consumption. On the other hand, conventional techniques such as maceration and soxhletation remain relevant, particularly for thermolabile compounds that are sensitive to high temperatures. The selection of an appropriate extraction method plays a crucial role in obtaining high-quality extracts that can serve as potential raw materials for phytopharmaceuticals, functional foods, dietary supplements, and other natural products. This review not only highlights the advantages and limitations of each technique but also emphasizes the importance of aligning method selection with specific research objectives and compound characteristics. Overall, this study provides a theoretical foundation for future experimental research and serves as an initial guideline for determining extraction strategies based on efficiency, effectiveness, and sustainability.
References
Amyliana, N. A., & Agustini, R. (2021). Formulasi dan karakterisasi nanoenkapsulasi yeast beras hitam dengan metode sonikasi menggunakan poloxamer. Unesa Journal of Chemistry, 10(2), 184–191. https://doi.org/10.26740/ujc.v10n2.p184-191
Asnawi, I., & Kalla, R. (2024). Studi kinetika reaksi degradasi gliserol dari limbah biodiesel dengan metode sonikasi. Jurnal Cahaya Mandalika, 5(2), 950–957.
Cao, S., Liang, J., Chen, M., Xu, C., Wang, X., Qiu, L., Zhao, X., & Hu, W. (2025). Comparative analysis of extraction technologies for plant extracts and absolutes. Frontiers in Chemistry, 13, 1–16. https://doi.org/10.3389/fchem.2025.1536590
Dewi, A. D. R. (2019). Aktivitas antioksidan dan antibakteri ekstrak kulit jeruk manis (Citrus sinensis) dan aplikasinya sebagai pengawet pangan. Jurnal Teknologi dan Industri Pangan, 30(1), 83–90. https://doi.org/10.6066/jtip.2019.30.1.83
Elya, B., Forestrania, R. C., Hashim, N. M., & Triadisti, N. (2024). Dipeptidyl peptidase-4 inhibition of Peronema canescens Jack leaves and stems: Bioassay-guided fractionation, compound profiling by LC-MS/MS, and interaction mechanism. Journal of Applied Pharmaceutical Science, 14(7), 90–101. https://doi.org/10.7324/JAPS.2024.161007
Fadillah, U. F. (2024). Ekstraksi daun pulutan (Urena lobata Linn) dengan metode sonikasi dan uji aktivitas antibakterinya. Jurnal Teknologi Kimia Unimal, 13(2), 122–131. https://doi.org/10.29103/jtku.v13i2.19147
Fadiyah, I., Lestari, I., & Mahardika, R. G. (2020). Kapasitas antioksidan ekstrak buah rukam (Flacourtia rukam) menggunakan metode microwave assisted extraction (MAE). Indonesian Journal of Chemical Research, 7(2), 107–113. https://doi.org/10.30598/ijcr.2020.7-ina
Faisal, H., Chan, A., Winata, H. S., Diana, V. E., & Atika, W. (2023). Aktivitas antioksidan dan evaluasi sediaan masker peel-off ekstrak etanol rimpang kunyit putih (Curcuma zedoaria Roscoe). Jurnal Ilmiah Farmasi Farmasyifa, 6(1), 1–9. https://doi.org/10.29313/jiff.v6i1.9085
Handayani, S. S., Gunawan, E. R., Suhendra, D., & Murniati, M. (2024). Kajian pengaruh suhu pemanasan awal dan waktu sokletasi terhadap perolehan minyak biji kelor (Moringa oleifera Lam.). Jurnal Sains Teknologi & Lingkungan, 10(4), 749–754. https://doi.org/10.29303/jstl.v10i4.754
Haryani, F. R., Hambali, E., Ika, D., & Kartika, A. (2023). Pengaruh kondisi proses transesterifikasi menggunakan metode sonikasi terhadap rendemen dan mutu etil ester minyak ikan. Jurnal Teknologi Industri Pertanian, 32(1), 32–40.
Jumawardi, R., Ananto, A. D., & Deccati, R. F. (2021). Aktivitas antioksidan ekstrak etanol daun pecut kuda (Stachytarpheta jamaicensis (L.) Vahl) menggunakan metode ekstraksi berbasis gelombang ultrasonik. Sasambo Journal of Pharmacy, 2(2), 80–86. https://doi.org/10.29303/sjp.v2i2.85
Karim, S. F. (2022). Formulasi dan uji aktivitas gel antiinflamasi ekstrak etanol daun pepaya (Carica papaya L.) pada mencit jantan putih (Mus musculus). Jurnal Ilmiah Farmasi Farmasyifa, 5(2), 112–121. https://doi.org/10.29313/jiff.v5i2.8970
Kurniawan, F. P., Aprilianto, V. T., & Wahyudi, B. (2023). Ekstraksi crude tanin dari kulit buah maja dengan metode sonikasi. Chempro, 2(1), 59–62. https://doi.org/10.33005/chempro.v2i1.227
Listriyani, L. W., Hudiyono, S., Zulaeha, S., & Wibisana, A. (2023). Optimization of enzyme-microwave assisted extraction, characterization and antioxidant activity of polysaccharide from Ganoderma lucidum. Bioteknologi & Biosains Indonesia, 10, 1–16. http://ejurnal.bppt.go.id/index.php/JBBI
Mahardika, M. S. P., & Putera, I. K. E. W. (2023). Kajian pengembangan metode ekstraksi soxhletasi terhadap kadar antioksidan ekstrak daun matoa (Pomitea pinnata) menggunakan spektrofotometer UV-VIS. Jurnal Rekayasa dan Manajemen Agroindustri, 11(2), 306. https://doi.org/10.24843/jrma.2023.v11.i02.p13
Mardatillah, A. (2023). Perbandingan metode sonikasi dan radiasi gelombang mikro dalam sintesis isoeugenol dengan katalis rutenium(III) klorida. Jurnal Kartika Kimia, 6(2), 102–108. https://doi.org/10.26874/jkk.v6i2.212
Niawanti, H., Yani, F., Herman, M., & Rafliansyah, H. (2023). Ekstraksi tanin dari daun Psidium guajava menggunakan metode soxhlet. DISTILAT: Jurnal Teknologi Separasi, 7(2), 353–359. https://doi.org/10.33795/distilat.v7i2.226
Nindyasari, A., & Hidayatullah, M. H. (2024). Uji aktivitas antioksidan ekstrak daun kersen (Muntingia calabura L.) hasil maserasi dan UAE (ultrasonic assisted extraction) dengan metode DPPH (2,2-difenil-1-pikrilhidrazil). Usadha Journal of Pharmacy, 3(4), 370–383. https://doi.org/10.23917/ujp.v3i4.424
Nurfahmi, M. I., Yuliawati, K. M., & Syafnir, L. (2024). Pengujian pengaruh perbedaan metode ekstraksi terhadap parameter standar mutu ekstrak daun kelor. Jurnal Riset Farmasi, 4(2), 83–90. https://doi.org/10.29313/jrf.v4i2.5198
Oktaviani, A., Muspiah, A., & Faturrahman, F. (2020). Aktivitas antibakteri dari ekstrak etanol Ganoderma sp. asal Pulau Lombok. Jurnal Sains Teknologi & Lingkungan, 6(1), 22–28. https://doi.org/10.29303/jstl.v6i1.146
Osorio-Tobón, J. F. (2020). Recent advances and comparisons of conventional and alternative extraction techniques of phenolic compounds. Journal of Food Science and Technology, 57(12), 4299–4315. https://doi.org/10.1007/s13197-020-04433-2
Özdemir, M., Yıldırım, R., Yurttaş, R., Başargan, D., & Hakcı, M. B. (2025). A review of ultrasound-assisted extraction of bioactive compounds from coffee waste. Gıda, 50(1), 56–73. https://doi.org/10.15237/gida.GD24094
Puspitaningtyas, D., Putra, G. P. G., & Suhendra, L. (2021). Pengaruh konsentrasi etanol dan waktu ekstraksi menggunakan metode microwave assisted extraction (MAE) terhadap aktivitas antioksidan ekstrak kulit buah kakao. Jurnal Rekayasa dan Manajemen Agroindustri, 9(3), 371. https://doi.org/10.24843/jrma.2021.v09.i03.p10
Qodriah, R., Simanjuntak, P., & Putri, D. A. E. (2021). Uji aktivitas antioksidan dari ekstrak daun tin (Ficus carica L.) varietas Iraqi menggunakan metode ekstraksi sonikasi. Sainstech Farma, 14(2), 114–120. https://doi.org/10.37277/sfj.v14i2.994
Rahmadevi, Hartesi, B., & Wulandari, K. (2020). Formulasi sediaan nanoemulsi dari minyak ikan (Oleum Iecoris) menggunakan metode sonikasi. Journal of Healthcare Technology and Medicine, 6(1), 248–258.
Salsabila, K., Raharjo, D., & Ardiyantoro, B. (2024). Optimasi metode microwave-assisted extraction (MAE) untuk menentukan kadar flavonoid total ekstrak etanol kulit pisang kepok (Musa paradisiaca L.). OBAT: Jurnal Riset Ilmu Farmasi dan Kesehatan, 2(6), 133–160. https://doi.org/10.61132/obat.v2i6.814
Sholikhah, K. P., Riyanti, S., & Wahyono, W. (2023). Potensi antioksidan alami rempah bunga honje hutan (Etlingera hemisphaerica (Blume) R. M. Sm.) dan isolasi senyawa aktifnya. Jurnal Ilmiah Farmasi Farmasyifa, 6(2), 137–149. https://doi.org/10.29313/jiff.v6i2.11225
Sulastri, S., Purnamasari, D. K., & Sumiati, S. (2023). Pemanfaatan kompor listrik rumah tangga sebagai pengganti penangas air pada analisis kadar lemak metode soxhlet. Jurnal Sains Teknologi & Lingkungan, 9(1), 105–112. https://doi.org/10.29303/jstl.v9i1.414
Surtina, S., Sari, R. P., Zulita, Z., Rani, R., Roanisca, O., & Mahardika, R. G. (2020). Potensi antibakteri ekstrak daging buah kelubi (Eleiodoxa conferta) Bangka Belitung menggunakan microwave-assisted extraction (MAE). Indonesian Journal of Chemical Research, 7(2), 177–182. https://doi.org/10.30598/ijcr.2020.7-sur
Swara, I. M. A. B., Puspawati, G. A. K. D., & Widarta, I. W. R. (2023). Pengaruh waktu ekstraksi dengan metode microwave assisted extraction (MAE) terhadap aktivitas antioksidan ekstrak daun belimbing wuluh (Averrhoa bilimbi L.). Jurnal Ilmu dan Teknologi Pangan (ITEPA), 12(4), 939. https://doi.org/10.24843/itepa.2023.v12.i04.p14
Triadisti, N., Elya, B., Hanafi, M., & Hashim, N. M. (2025). Bioactive chromatographic fractions from Uncaria sclerophylla (W. Hunter) Roxb. leaves on dipeptidyl peptidase-4 inhibition and antioxidant capacity, phytochemicals, and compound profiling using UPLC-ESI-QToF-MS/MS. Journal of Pharmacy and Pharmacognosy Research, 13(1), 58–85. https://doi.org/10.56499/jppres24.2022_13.1.58
Triadisti, N., Elya, B., Hanafi, M., Hashim, N. M., & Illahi, A. D. (2025). α-Glucosidase inhibitor compounds of Uncaria sclerophylla leaves’ most active chromatography fraction: In vitro, in silico, and ADMET analysis. Journal of Applied Pharmaceutical Science, 15(3), 228–240. https://doi.org/10.7324/JAPS.2025.215871
Triyanti, S. B., Lestari, F. P., Fitriana, P. A. N., Rostiana, H. R., Silalahi, D. D., Syalsabina, T. D., Putri, R. Y., & Saputra, I. S. (2025). Pengaruh metode ekstraksi maserasi, sonikasi, dan sokletasi terhadap nilai rendemen sampel kulit buah naga (Hylocereus polyrhizus). Jurnal Sains dan Edukasi Sains, 8(1), 71–78. https://doi.org/10.24246/juses.v8i1p71-78
Wahyuni, Y. A. T., Puspawati, G. A. K. D., & Putra, I. N. K. (2021). Pengaruh jenis pelarut pada metode microwave assisted extraction (MAE) terhadap karakteristik ekstrak daun singkong (Manihot utilissima Pohl.). Jurnal Ilmu dan Teknologi Pangan (ITEPA), 10(4), 566–578. https://doi.org/10.24843/itepa.2021.v10.i04.p03
Wijaya, H., Jubaidah, S., & Rukayyah, R. (2022). Perbandingan metode ekstraksi terhadap rendemen ekstrak batang turi (Sesbania grandiflora L.) dengan menggunakan metode maserasi dan soxhletasi. Indonesian Journal of Pharmacy and Natural Product, 5(1), 1–11. https://doi.org/10.35473/ijpnp.v5i1.1469
Yasacaxena, L. N., Defi, M. N., Kandari, V. P., Weru, P. T. R., Papilaya, F. E., Oktafera, M., & Setyaningsih, D. (2023). Review: Extraction of Curcuma xanthorrhiza Roxb. rhizome and activity as antibacterial. Jurnal Jamu Indonesia, 8(1), 10–17. https://doi.org/10.29244/jji.v8i1.265
Yurisna, V. C., Nabila, F. S., Radhityaningtyas, D., Listyaningrum, F., & Aini, N. (2022). Potensi bunga telang (Clitoria ternatea L.) sebagai antibakteri pada produk pangan. JITIPARI: Jurnal Ilmiah Teknologi dan Industri Pangan UNISRI, 7(1), 68–77. https://doi.org/10.33061/jitipari.v7i1.5738
Zukhri, S., Dewi, K. M. S., & Hidayati, N. (2020). Uji sifat fisik dan antibakteri salep ekstrak daun katuk (Sauropus androgynus (L.) Merr.). Jurnal Ilmiah Kesehatan, 11(1), 307.
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