Toxicity and antibacterial activity of Rhizophora apiculata mangrove using different solvent extraction Toksisitas dan aktivitas antibakteri mangrove Rhizophora apiculata dengan pelarut ekstraksi yang berbeda

Muhammad Fachriza Imanditya, Meutia Samira Ismet, Neviaty Putri Zamani, Nyoman MN Natih, Endang Sunarwati Srimariana, Rita Andini, Nurlita Putri Anggraini

Abstract

Rhizophora apiculata is a type of mangrove widely used as a traditional medicine. This potential is produced by the content of secondary metabolites that environmental conditions, age, and other factors can influence. This study aims to determine the best solvent for R. apiculata extract based on toxicity and antibacterial parameters. R. apiculata used in this study came from the Kuala Langsa area and Telaga Tujuh Island (East Aceh), with different tree diameters (2.4, 4.8, 5, 13, 23.3, & 26 cm). The samples were macerated three times for 24 hours using 99.8% methanol (MeOH) and 99.9% ethanol (EtOH) solvents. The samples were boiled for 15 minutes at a temperature of 85–90°C using aquades as the solvent. Extraction using a ratio of 10:1 (v/w) with 2 g of simplicia powder and 20 mL of solvent. The toxicity test was conducted using the brine shrimp lethality assay method and the antibacterial test using the disk diffusion assay method. Toxicity tests showed that the ethanol extract had the highest toxicity value with an LC50 value of 26.879 μg/mL. Aquadest extract produced the highest inhibition zone with a value of 11.37±0.85 mm in Escherichia coli and 17.67±1.19 mm in Staphylococcus aureus. The results of two-way ANOVA showed that the solvent had a significant effect on the bacterial inhibition zone (p<0.05), while tree diameter had no significant effect (p<0.05). Ethanol solvent extract produced the highest toxicity value, while aquadest solvent extract produced the largest inhibition zone.

References

AAT Bioquest, I. (2024). LC50 Calculator. https://www.aatbio.com/tools/lc50-calculator

Abbas, A., Naqvi, S. A. R., Rasool, M. H., Noureen, A., Mubarik, M. S., & Tareen, R. B. (2021). Phytochemical Analysis, antioxidant and antimicrobial screening of Seriphidium oliverianum plant extracts. Dose-Response, 19(1), 1–9. https://doi.org/10.1177/15593258211004739

Abeysinghe, P. D. (2010). Antibacterial activity of some medicinal mangroves against antibiotic resistant pathogenic bacteria. Indian Journal of Pharmaceutical Sciences, 72(2), 167–172. https://doi.org/10.4103/0250-474X.65019

Banti, C. N., & Hadjikakou, S. K. (2021). Evaluation of toxicity with brine shrimp assay. Bio-Protocol, 11(2), 6–12. https://doi.org/10.21769/BioProtoc.3895

Bengen, D. G. (2001). Sinopsis teknik pengambilan contoh dan analisis data biofisik sumberdaya pesisir. Pusat kajian sumberdaya pesisir dan lautan. Fakultas perikanan dan ilmu kelautan. Institut pertanian Bogor. Bogor. (Vol. 86, pp. 39–43).

Davis, W. W., & Stout, T. R. (1971). Disc plate method of microbiological antibiotic assay. II. novel procedure offering improved accuracy. Applied Microbiology, 22(4), 666–670. https://doi.org/10.1128/aem.22.4.666-670.1971

Debalke, D., Birhan, M., Kinubeh, A., & Yayeh, M. (2018). Assessments of antibacterial effects of aqueous-ethanolic extracts of sida rhombifolia’s aerial part. The Scientific World Journal, 2018(1), 8429809. https://doi.org/https://doi.org/10.1155/2018/8429809

Dewanto, D. K., Hermawan, R., Muliadin, M., Riyadi, P. H., Aisiah, S., & Tanod, W. A. (2021). Profil GC-MS dari ekstrak daun Rhizophora apiculata dari Pesisir Teluk Tomini, Sulawesi Tengah dengan aktivitas antibakteri dan antioksidan. Jurnal Kelautan: Indonesian Journal of Marine Science and Technology, 14(1), 30–42. https://doi.org/10.21107/jk.v14i1.8904

Elsharkawy, E. R., Alghanem, S. M., & Elmorsy, E. (2021). Effect of habitat variations on the chemical composition, antioxidant, and antimicrobial activities of Achillea fragrantissima (Forssk) Sch. Bip. Biotechnology Reports, 29, 1-6. https://doi.org/10.1016/j.btre.2020.e00581

Engeloch, C., Schopfer, U., Muckenschnabel, I., Le Goff, F., Mees, H., Boesch, K., & Popov, M. (2008). Stability of screening compounds in wet DMSO. Journal of Biomolecular Screening, 13(10), 999–1006. https://doi.org/10.1177/1087057108326536

Farias, J. P., Barros, A. L. A. N., de Araújo-Nobre, A. R., Sobrinho-Júnior, E. P. C., Alves, M. M. de M., Carvalho, F. A. de A., da Franca Rodrigues, K. A., de Andrade, I. M., Silva-Filho, F. A. e., Moreira, D. C., Lima, D. F., Lucarini, M., Durazzo, A., Arcanjo, D. D. R., & de Souza de Almeida Leite, J. R. (2023). Influence of plant age on chemical composition, antimicrobial activity and cytotoxicity of Varronia curassavica Jacq. essential oil produced on an industrial scale. Agriculture (Switzerland), 13(2), 1-13. https://doi.org/10.3390/agriculture13020373

Gazali, M., Nurjanah, Ukhty, N., Nurdin, M., & Zuriat. (2020). Skrining senyawa bioaktif daun perepat (Sonneratia alba J.E. Smith) sebagai antioksidan asal Pesisir Kuala Bubon Aceh Barat. Jurnal Pengolahan Hasil Perikanan Indonesia, 23(2), 402–411. https://doi.org/10.17844/jphpi.v23i2.31684

Hanafi, I., Subhan, S., & Basri, H. (2021). Analisis vegetasi mangrove (studi kasus di hutan mangrove Pulau Telaga Tujuh Kecamatan Langsa Barat). Jurnal Ilmiah Mahasiswa Pertanian, 6(4), 740–748. https://doi.org/10.17969/jimfp.v6i4.18137

Huang, W., Long, C., & Lam, E. (2018). Roles of plant-associated microbiota in traditional herbal medicine. Trends in Plant Science, 23(7), 559–562. https://doi.org/10.1016/j.tplants.2018.05.003

Hudzicki, J. (2012). Kirby-Bauer disk diffusion susceptibility test protocol author information. https://www.asm.org/Protocols/Kirby-Bauer-Disk-Diffusion-Susceptibility-Test-Pro

Ibrahim, M. E., Bilal, N. E., & Hamid, M. E. (2012). Increased multi-drug resistant Escherichia coli from hospitals in Khartoum state, Sudan. African Health Sciences, 12(3), 368–375. https://doi.org/10.4314/ahs.v12i3.19

Jhurani, B. S., & Jadhav, B. L. (2010). Evaluation of antimicrobial properties and activity guided fractionation of mangrove species Rhizophora apiculata. Asian Journal of Microbiology, Biotechnology and Environmental Sciences, 12(4), 745–750.

Johnson, R. A., & Wichern, D. W. (2002). Applied multivariate statistical analysis. In TA - TT - (5th ed). Prentice Hall. https://doi.org/LK - https://worldcat.org/title/47091917

Karim, M. A., Islam, M. A., Islam, M. M., Rahman, M. S., Sultana, S., Biswas, S., Hosen, M. J., Mazumder, K., Rahman, M. M., & Hasan, M. N. (2020). Evaluation of antioxidant, anti-hemolytic, cytotoxic effects and anti-bacterial activity of selected mangrove plants (Bruguiera gymnorrhiza and Heritiera littoralis) in Bangladesh. Clinical Phytoscience, 6(8), 1-12. https://doi.org/10.1186/s40816-020-0152-9

Köberl, M., Schmidt, R., Ramadan, E. M., Bauer, R., & Berg, G. (2013). The microbiome of medicinal plants: diversity and importance for plant growth, quality, and health. Frontiers in Microbiology, 4(DEC), 1–9. https://doi.org/10.3389/fmicb.2013.00400

Kurniawan, R., Azis, S., Maulana, S., Ashari, A., Prasetyo, B. A., Suhartati, T., & Sukrasno, S. (2023). The cytotoxicity studies of phytosterol discovered from Rhizophora apiculata against three human cancer cell lines. Journal of Applied Pharmaceutical Science, 13(1), 156–162. https://doi.org/10.7324/JAPS.2023.130115

Kurt, Y., Calikoglu, M., & Isik, K. (2021). Relationships between bark thickness, tree age and tree diameter in Pinus brutia ten. plantations. Fresenius Environmental Bulletin, 30(4), 3122–3129.

Li, Y., Kong, D., Fu, Y., Sussman, M. R., & Wu, H. (2020). The effect of developmental and environmental factors on secondary metabolites in medicinal plants. Plant Physiology and Biochemistry, 148(December 2019), 80–89. https://doi.org/10.1016/j.plaphy.2020.01.006

Lukaszkiewicz, J., & Kosmala, M. (2008). Determining the age of streetside trees with diameter at breast height-based multifactorial model. Arboriculture and Urban Forestry, 34(3), 137–143. https://doi.org/10.48044/jauf.2008.018

Malik, N. H., Zin, Z. M., Razak, S. B. A., Ibrahim, K., & Zainol, M. K. (2017). Antioxidative activities and flavonoids contents in leaves of selected mangrove species in Setiu wetlands extracted using different solvents. Journal of Sustainability Science and Management, 2017(Special Issue 3), 14–22.

Maulana, D. M. (2021). The dose effect of mangrove leaf extract (Rhizophora apiculata) on anticancer activity in HeLa cells. Journal of Stem Cell Research and Tissue Engineering, 5(1), 1-15. https://doi.org/10.20473/jscrte.v5i1.29380

Maysaroh, S., Ismet, M. S., Subhan, B., Andini, R., Sembiring, E. R., & Anggraini, N. P. (2023). Effective DNA extraction method for metagenomic analysis of rhizosphere bacteria from mangrove sediments. Depik, 12(2), 198–209. https://doi.org/10.13170/depik.12.2.32850

Maysaroh, S., Samira Ismet, M., Andini, R., Anggraini, N., & Subhan, B. (2024). High and low taxa specificity of rhizosphere bacteria communities of mangrove (Rhizophora mucronata) from Kuala Langsa and Telaga Tujuh Island, East Aceh. Jurnal Ilmiah Perikanan Dan Kelautan, SE-Research Articles, 16(2), 364-276. https://doi.org/10.20473/jipk.v16i2.55882

Meyer, B. N., Ferrigni, N. R., Putnam, J. E., Jacobsen, L. B., Nichols, D. E., & McLaughlin, J. L. (1982). Brine shrimp: a convenient general bioassay for active plant constituents. Planta Medica, 45(1), 31–34. https://doi.org/10.1055/s-2007-971236

Mutik, M. S., Sibero, M. T., Widianingsih, W., Subagiyo, S., Pribadi, R., Haryanti, D., Ambariyanto, A., & Murwani, R. (2022). Kandungan senyawa bioaktif dan aktivitas biologis ekstrak daun Rhizophora apiculata asal Perairan Teluk Awur, Jepara. Jurnal Kelautan Tropis, 25(3), 378–390. https://doi.org/10.14710/jkt.v25i3.14287

Nawaz, H., Shad, M. A., Rehman, N., Andaleeb, H., & Ullah, N. (2020). Effect of solvent polarity on extraction yield and antioxidant properties of phytochemicals from bean (Phaseolus vulgaris) seeds. Brazilian Journal of Pharmaceutical Sciences, 56, 1-9. https://doi.org/10.1590/s2175-97902019000417129

Nurany, A. (2011). Antioxidant activity etanolic extract from white mangrove leaf (Avicennia marina ) by FRAP (Ferric Reducing Antioxidant Power) method. Method. International Summit on Science Technology and Humanity, ISETH2019, 618–622.

Nurdiani, R., Firdaus, M., & Prihanto, A. A. (2012). Phytochemical screening and antibacterial activity of methanol extract of mangrove plant (Rhyzophora mucronata) from Porong River Estuary. Journal Basic Science And Technology, 1(2), 27–29.

Odey, M. O., Iwara, I. a, Udiba, U. U., Johnson, J. T., Asenye, M. E., & Victor, O. (2012). Preparation of plant extracts from indigenous medicinal plants. International Journal of Science and Technology, 1(12), 688–692.

Osman, N., & Omar, H. (2019). Brine Shrimp lethality assay (BSLA) of mixed micro algae extracts from Tilapia fish ponds. J. Algal Biomass Utln, 10(1), 8–13.

Puspitasari, D. (2019). Pengaruh metode perebusan terhadap uji fitokimia daun mangrove Excoecaria agallocha. Acta Aquatica: Aquatic Sciences Journal, 6(1), 423–428. https://doi.org/10.29103/aa.v6i1.1046

Ramalingam, V., & Rajaram, R. (2018). Enhanced antimicrobial, antioxidant and anticancer activity of Rhizophora apiculata: an experimental report. 3 Biotech, 8(4), 1-13. https://doi.org/10.1007/s13205-018-1222-2

Rasyid, M. I., Yuliani, H., Triandita, N., Angraeni, L., & Anggriawin, M. (2022, November 24). Toxicity test of laban fruits (Vitex pinnata Linn) by using brine shrimp lethality test (BSLT) Methode [Conference session]. The 4th International Conference on Sustainability Agriculture and Biosystem 24/11/2021 - 24/11/2021 Online. IOP Conference Series: Earth and Environmental Science. https://doi.org/10.1088/1755-1315/1059/1/012051

Seepana, R., Perumal, K., Kada, N. M., Chatragadda, R., Raju, M., & Annamalai, V. (2016). Evaluation of antimicrobial properties from the mangrove Rhizophora apiculata and Bruguiera gymnorrhiza of Burmanallah coast, South Andaman, India. Journal of Coastal Life Medicine, 4(6), 475–478. https://doi.org/10.12980/jclm.4.2016j6-52

Senduk, T. W., Montolalu, L. A. D. Y., & Dotulong, V. (2020). The rendement of boiled water extract of mature leaves of mangrove Sonneratia alba. Jurnal Perikanan Dan Kelautan Tropis, 11(1), 9–15. https://doi.org/10.35800/jpkt.11.1.2020.28659

Shivanand, Vidya, & Divya. (2018). The current concepts in the use of antibiotics in dental practice. International Journal of Applied Engineering Research, 13(5), 2659–2964.

Sonola, V. S., Misinzo, G., & Matee, M. I. (2021). Occurrence of multidrug-resistant Staphylococcus aureus among humans, rodents, chickens, and household soils in karatu, northern tanzania. International Journal of Environmental Research and Public Health, 18(16), 8496. https://doi.org/10.3390/ijerph18168496

Sormin, R. B. D., Nendissa, D. M., Mailoa, M. N., Rieuwpassa, F., & Wenno, M. R. (2021, December 12). Antibacterial activity of Rhizophora apiculata extract originated from Inner Ambon Bay against selected pathogen bacteria [Conference session]. International Conference on Small Islands Community: Momentum of Transformation of Small Islands Community in New Normal Era 12th December 2020, Maluku, Indonesia. IOP Conference Series: Earth and Environmental Science, 797(1), 1-9. https://doi.org/10.1088/1755-1315/797/1/012017

Subayu, N., Andayani, S., Fadjar, M., & Fahrurrozi, A. (2021). Analysis of the content of secondary metabolites using uv-vis and FTIR spectrophotometry from the methanol extract of Rhizophora mucronata leaves. Eco. Env. & Cons., 27, 76–78.

Syawal, H., Yuharmen, Y., & Kurniawan, R. (2019). Sensitivitas ekstrak daun Rhizophora apiculata menghambat pertumbuhan bakteri Aeromonas hydrophila. Jurnal Ruaya : Jurnal Penelitian Dan Kajian Ilmu Perikanan Dan Kelautan, 7(2), 34–38. https://doi.org/10.29406/jr.v7i2.1467

Usman, U. (2018). Phytochemical test and antibacterial test of Rhizopora apiculata mangrove-root against Escherichia coli and Staphylococcus aureus bacteria. JKPK (Jurnal Kimia Dan Pendidikan Kimia), 2(3), 169–177. https://doi.org/10.20961/jkpk.v2i3.11850

Wardina, A. M., Mustofa, S., & Malarangeng, A. N. T. A. (2023). Review Article: Potensi Rhizophora apiculata sebagai fitofarmaka. Medula, 13(2), 137–146.

Wu, X., Zhou, S., Xu, A., & Chen, B. (2019). Passive measurement method of tree diameter at breast height using a smartphone. Computers and Electronics in Agriculture, 163, 1-11. https://doi.org/https://doi.org/10.1016/j.compag.2019.104875

Yang, L., Wen, K. S., Ruan, X., Zhao, Y. X., Wei, F., & Wang, Q. (2018). Response of plant secondary metabolites to environmental factors. Molecules, 23(4), 1–26. https://doi.org/10.3390/molecules23040762

Yuniarti, T., Sipahutar, Y., Ramli, H. K., & Lita, N. P. S. N. (2020). Pemanfaatan ekstrak buah mangrove untuk menghambat pembentukan melanosis pada udang vanamei (Litopenaeus vannamei). Jurnal Pengolahan Hasil Perikanan Indonesia, 23(1), 67-76. https://doi.org/10.17844/jphpi.v23i1.30862

Authors

Muhammad Fachriza Imanditya
Meutia Samira Ismet
meutiais@apps.ipb.ac.id (Primary Contact)
Neviaty Putri Zamani
Nyoman MN Natih
Endang Sunarwati Srimariana
Rita Andini
Nurlita Putri Anggraini
Imanditya M. F., Ismet M. S., Zamani N. P., Natih N. M., Srimariana E. S., Andini R., & Anggraini N. P. (2025). Toxicity and antibacterial activity of Rhizophora apiculata mangrove using different solvent extraction : Toksisitas dan aktivitas antibakteri mangrove Rhizophora apiculata dengan pelarut ekstraksi yang berbeda. Jurnal Pengolahan Hasil Perikanan Indonesia, 28(1). https://doi.org/10.17844/jphpi.v28i1.60031

Article Details