Efektivitas Bahan Alami Sebagai Agen Antimikroba dalam Pengobatan Penyakit Ikan Air Tawar: Tinjauan Literatur
DOI:
https://doi.org/10.62951/zoologi.v2i2.66Keywords:
Antimicrobial Agents, Natural Ingredients, Freshwater Fish, Fish Health, Disease Management.Abstract
This study evaluates the effectiveness of natural materials as antimicrobial agents in the treatment of freshwater fish diseases, with the aim of offering a safer and more sustainable alternative to synthetic chemicals and antibiotics. Using the literature review method, this study analyzed relevant current scientific articles. Results showed that extracts of betel leaf, neem leaf, cinnamon essential oil, basil essential oil, aloe vera, and propolis had significant antimicrobial activity against freshwater fish pathogens such as Flavobacterium columnare and Aeromonas hydrophila. Betel leaf extract and cinnamon essential oil showed inhibition rates of up to 85% and 82%, respectively. The advantages of using natural ingredients include environmental safety, reduced risk of antimicrobial resistance, and immunostimulating effects in fish. However, challenges such as ingredient availability, cost, and standardization still need to be addressed. This study suggests the development of natural ingredient-based products, standardization and quality testing, further research, and training for fish farmers. Collaboration between stakeholders is also important to reduce dependence on antibiotics. In conclusion, natural ingredients have great potential as effective and environmentally friendly antimicrobial agents in freshwater fish health management.
References
Adib, M., Anwar, U., Much, I., Subroto, I., & Taufik, M. (2022). Sistem pakar diagnosa penyakit ikan nila berbasis metode Bayes. Jurnal Transistor Elektro Dan Informatika (TRANSISTOR EI), 4(1), 1–10.
Ahmad, N., & Iskandar. (2020). Metode forward chaining untuk deteksi penyakit pada tanaman kentang. JINTECH: Journal Of Information Technology, 1(2), 7–20. https://doi.org/10.22373/jintech.v1i2.592
Arya, R., Sharma, P., & Singh, S. (2020). Antimicrobial activity of Piper betle against fish pathogens. Journal of Aquatic Biology, 25(3), 45–52.
Buchori, A., Khotijah, S., & Ramdan, A. S. (2022). Sistem pakar diagnosa penyakit paru-paru menggunakan metode Naive Bayes classifier berbasis Java. Semnas Ristek (Seminar Nasional Riset Dan Inovasi Teknologi), 6(1), 127–138. https://doi.org/10.30998/semnasristek.v6i1.5645
Devi, S. A., Kumar, A., & Yadav, R. (2018). Effectiveness of Azadirachta indica (Neem) extracts in controlling Aeromonas hydrophila infections in fish. Fish & Shellfish Immunology, 74, 12–19.
Emelda, T., Syahputra, R., & Anwar, U. (2021). Traditional herbal medicines and their potential in aquaculture: A review. Aquaculture Reports, 19, 100568.
Farag, M. A., El-Ghorab, A. H., & Khedher, N. B. (2017). Ocimum basilicum essential oil: Chemical composition and its antimicrobial activity against fish pathogens. Journal of Applied Microbiology, 122(3), 740–748.
Ghovvati, M., Afshari, G. K., Nasrollahi, S. A., Firooz, A., Samadi, A., & Karimi, M. (2019). Efficacy of topical cinnamon gel for the treatment of facial acne vulgaris: A preliminary study. Biomedical Research and Therapy, 6(1), 2958–2965.
Gustientiedina, Siddik, M., & Desnelita, Y. (2019). Penerapan Naïve Bayes untuk memprediksi tingkat kepuasan mahasiswa terhadap pelayanan akademis. Jurnal Infomedia, 2(4), 89–93. http://e-jurnal.pnl.ac.id/index.php/infomedia/article/view/1892
Heng, A. H. S., & Chew, F. T. (2020). Systematic review of the epidemiology of acne vulgaris. Scientific Reports, 10(1), 1–10.
Kumari, P., Bharti, V. K., & Kumar, M. (2019). Antimicrobial properties of cinnamon oil and its potential use in aquaculture. Aquaculture Research, 50(8), 2236–2245.
Laoli, D., Telaumbanua, B. V., Zebua, R. D., Dawolo, J., & Nazara, R. V. (2024). Pertumbuhan ikan gabus (Channa striata). Jurnal Ruaya, 12(2), 119–122.
Laoli, D., Waruwu, E., Telaumbanua, B. V., Zebua, R. D., & Nazara, R. V. (2023). Productivity of snakehead fish (Channa striata) as a source of wound healing. Asian Journal of Aquatic Sciences, 6(2), 288–292.
Nawawi, H. M., Purnama, J. J., & Hikmah, A. B. (2019). Komparasi algoritma neural network dan Naïve Bayes untuk memprediksi penyakit jantung. Jurnal Pilar Nusa Mandiri, 15(2), 189–194. https://doi.org/10.33480/pilar.v15i2.669
Nesi, M. Y., Kaesmetan, Y. R., & Meo, M. O. (2019). Sistem pakar diagnosa penyakit ikan gurame dengan menggunakan FIS Mamdani. HOAQ: Jurnal Teknologi Informasi, 11, 73–80.
Nugraheni, M., & Hartati, S. (2017). Sistem penalaran berbasis kasus untuk pendukung diagnosis gangguan penyakit pada unggas. JIKO (Jurnal Informatika Dan Komputer), 2(1), 50–57. https://doi.org/10.26798/jiko.2017.v2i1.52
Nugroho, F. A. (2018). Perancangan sistem pakar diagnosa penyakit jantung dengan metode forward chaining. Jurnal Informatika Universitas Pamulang, 3(2), 75. https://doi.org/10.32493/informatika.v3i2.1431
Puspaningrum, A. S., Susanto, E. R., & Sucipto, A. (2020). Penerapan metode forward chaining untuk mendiagnosa penyakit tanaman sawi. INFORMAL: Informatics Journal, 5(3), 113. https://doi.org/10.19184/isj.v5i3.20237
Ratih Fitri Aini, M. H. M. M. (2016). Perancangan sistem pakar diagnosa penyakit ayam dengan metode forward chaining. J I M P - Jurnal Informatika Merdeka Pasuruan, 1(2), 75–79. https://doi.org/10.37438/jimp.v1i2.21
Santos, R., Silva, J. S., & Lima, J. (2021). Propolis as a natural antimicrobial agent in aquaculture: Effects on fish health and disease resistance. Fish Physiology and Biochemistry, 47(1), 23–32.
Shamsi, Y., Akhtar, M. W., Zaidi, S., Mohanty, S., Ahmad, S., & Scholar, P. (2022). An overview of acne vulgaris (Busoor Labaniya). CellMed, 12(2), 1–5.
Shen, C., Xu, Y., & Zhou, X. (2020). Aloe vera extracts as a natural antimicrobial agent against fish pathogens. Journal of Fish Diseases, 43(4), 501–510.
Sirajudin, A., Tarigan Sibero, H., & Anggraini, D. I. (2019). Prevalensi dan gambaran epidemiologi akne vulgaris di provinsi Lampung.
Sitohang, L., Rahardjo, T., & Syahril, M. (2019). Environmental impact of synthetic chemicals in aquaculture: A review. Aquatic Ecosystem Health & Management, 22(1), 53–63.
Telaumbanua, B. V., Laoli, D., Zebua, R. D., Zebua, O., Dawolo, J., & Zega, A. (2024). Implementasi teknologi genetika untuk konservasi spesies laut terancam: Tinjauan literatur tentang metode dan keberhasilan. Manfish: Jurnal Ilmiah Perikanan dan Peternakan, 2(2), 58–68.
Telaumbanua, B. V., Telaumbanua, P. H., Lase, N. K., & Dawolo, J. (2023). Penggunaan probiotik EM4 pada media budidaya ikan. Triton: Jurnal Manajemen Sumberdaya Perairan, 19(1), 36–42.
Valentin Saragih, R., Sari, M., & Lestari, R. (2019). Antibiotic residues in aquaculture products: Implications for food safety and public health. Journal of Environmental Science and Health, 54(10), 869–876.
Zebua, O., Zega, A., Zebua, R. D., Laoli, D., Dawolo, J., & Telaumbanua, B. V. (2024). Krisis biodiversitas perairan: Investigasi solusi berbasis komunitas untuk pemulihan ekosistem aquatik. Manfish: Jurnal Ilmiah Perikanan dan Peternakan, 2(2), 69–79.
Zebua, R. D., Syawal, H., & Lukistyowati, I. (2019). Pemanfaatan ekstrak daun kersen (Muntingia calabura L) untuk menghambat pertumbuhan bakteri Edwardsiella tarda. Jurnal Ruaya, 7(2), 11–20.
Zebua, R. D., Waruwu, E., Telaumbanua, B. V., & Laoli, D. (2023). Potential for developing phytopharmacy based on marine resources: Review. Asian Journal of Aquatic Sciences, 6(3), 352–360. https://doi
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