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Year 2025, Volume: 40 Issue: 4, 252 - 261, 10.10.2025
https://doi.org/10.26650/ASE.2025.1733929

Abstract

Project Number

CS-CB24-TS-01

References

  • Abd El-Gawad, E.A., El Asely, A.M., Soror, E.I., Abbass, A.A., & Austin, B. (2020). Effect of dietary Moringa oleifera leaf on the immune response and control of Aeromonas hydrophila infection in Nile tilapia (Oreochromis niloticus) fry. Aquaculture International, 28, 389–402. DOI: 10.1007/s10499-019-00469-0 google scholar
  • Abidin, Z., Huang, H.T., Liao, Z.H., Chen, B.Y., Wu, Y.S., Lin, Y.J., & Nan, F.H. (2021). Moringa oleifera leaves’ extract enhances nonspecific immune responses, resistance against Vibrio alginolyticus, and growth in white leg shrimp (Penaeus vannamei). Animals, 12(1), 42.DOI: 10.3390/ani12010042 google scholar
  • Adeshina, I., Sani, R.A., Adewale, Y.A., Tiamiyu, L.O., & Umma, S.B. (2018). Effects of dietary Moringa oleifera leaf meal as a replacement for soybean meal on growth, body composition and health status in Cyprinus carpio juveniles. Croatian Journal of Fisheries, 76(4), 174–182. DOI: 10.2478/cjf-2018-0021 google scholar
  • Ahmed, I., Reshi, Q.M., & Fazio, F. (2020). The influence of the endogenous and exogenous factors on hematological parameters in different fish species: A review. Aquaculture International, 28, 869–899. DOI: 10.1007/ s10499-019-00501-3 google scholar
  • Anh, L.V., Parks, S.E., Minh, N.H., & Roach, P.D. (2018). Improving the vanillin-sulphuric acid method for quantifying total saponins. Technologies, 6(84), 1–12. DOI: 10.3390/technologies6030084 google scholar
  • Arnold, J.E. (2005). Hematology of the sandbar shark, Carcharhinus plumbeus: Standardization of complete blood count techniques for elasmobranchs. Veterinary Clinical Pathology, 34(2), 115–123. DOI: 10.1111/ j.1939-165X.2005.tb00023.x google scholar
  • Bagheri, G., Martorell, M., Ramírez-Alarcón, K., Salehi, B., & Sharifi-Rad, J. (2020). Phytochemical screening of Moringa oleifera leaf extracts and their antimicrobial activities. Cellular and Molecular Biology, 66(1), 20-26. DOI: 10.14715/cmb/2019.66.1.3 google scholar
  • Bagheri, G., Martorell, M., Ramírez-Alarcón, K., Salehi, B., & Sharifi-Rad, J. (2020). Phytochemical screening of Moringa oleifera leaf extracts and their antimicrobial activities. Cellular and Molecular Biology, 66(1), 20–26. DOI: 10.14715/cmb/2019.66.1.3 google scholar
  • Bagul, U. S., & Sivakumar, S. M. (2016). Antibiotic susceptibility testing: A review on current practices. International Journal of Pharmacy, 6(3), 11-17. google scholar
  • Becker, K., & Siddhuraju, P. (2003). Antioxidant properties of various solvent extracts of total phenolic constituents from three different agro-climatic origins of drumstick tree (Moringa oleifera). Journal of Agricultural and Food Chemistry, 51, 2144–2155. DOI: 10.1021/jf020444+ google scholar
  • Bennett, R.N., Mellon, F.A., Foidl, N., Pratt, J.H., DuPont, M.S., Perkins, L., & Kroon, P.A. (2003). Profiling glucosinolates and phenolics in vegetative and reproductive tissues of the multi-purpose trees Moringa oleifera L. (Horseradish tree) and Moringa stenopetala L. Journal of Agricultural and Food Chemistry, 51, 3546– 3553. DOI: 10.1021/jf0211480 google scholar
  • Bhattacharya, A., Tiwari, P., Sahu, P.K., & Kumar, S. (2018). A review of the phytochemical and pharmacological characteristics of Moringa oleifera. Journal of Pharmacy & Bioallied Sciences, 10, 181–191. DOI: 10.4103/ JPBS.JPBS_126_18 google scholar
  • Biller-Takahashi, J.D., Montassier, H.J., Takahashi, L.S., & Urbinati, E.C. (2014). Proposed method for agglutinating antibody titer analysis and its use as indicator of acquired immunity in pacu, Piaractus mesopotamicus. Brazilian Journal of Biology, 74(1), 238–242. DOI: 10.1590/1519-6984.21312 google scholar
  • Brewer, M.S. (2011). Natural antioxidants: Sources, compounds, mechanisms of action, and potential applications. Comprehensive Reviews in Food Science and Food Safety, 10(4), 221–247. DOI: 10.1111/j.1541-4337.2011.00156.x google scholar
  • Burgos-Aceves, M.A., Lionetti, L., & Faggio, C. (2019). Multidisciplinary haematology as prognostic device in environmental and xenobiotic stress-induced response in fish. Science of the Total Environment, 670, 1170–1183. DOI: 10.1016/ j.scitotenv.2019.03.275 google scholar
  • Campbell, T.W. (2015). Exotic Animal Hematology and Cytology (4th ed.). John Wiley & Sons, Inc., Hoboken, NJ. DOI: 10.1002/9781118993806 google scholar
  • Carneiro, J.D.S., Nogueira, R.M., Martins, M.A., Valladão, D.M.D.S., & Pires, E.M. (2018). The oven-drying method for determination of water content in Brazil nut. Bioscience Journal, 34, 595–602. DOI: 10.14393/BJ-v34n3a2018-37726 google scholar
  • Chau, M.H., & Sam, H.V. (2021). Effect of varieties and spacing on the growth and leaf yield of moringa (Moringa oleifera). Plant Cell Biotechnology and Molecular Biology, 22, 81–92. google scholar
  • Crumlish, M., Dung, T.T., Turnbull, J.F., Ngoc, N.T.N., & Ferguson, H.W. (2002). Identification of Edwardsiella ictaluri from diseased freshwater catfish, Pangasius hypophthalmus (Sauvage), cultured in the Mekong Delta, Viet Nam. Journal of Fish Diseases, 25, 733–736. DOI: 10.1046/j.1365-2761.2002.00412.x google scholar
  • De Barros, M. C., de Souza Silva, V. C., Silva, A. G. B., Neto, J. D. C. S., de Lima Maux, J. M., Dos Santos, P. É. M., … & Paiva, P. M. G. (2025). Antioxidant activity and chemoprotective effect of Moringa oleifera Lam. leaf infusion against google scholar
  • methotrexate-induced damage in mice. Toxicology Reports, 14, 102000. DOI: 10.1016/j.toxrep.2025.102000 google scholar
  • De Silva, S.S., & Phuong, N.T. (2011). Striped catfish farming in Mekong Delta, Viet Nam: A tumultuous path to a global success. Reviews in Aquaculture, 3, 45–73. DOI: 10.1111/j.1753-5131.2011.01046.x google scholar
  • Dhakad, A.K., Ikram, M., Sharma, S., Khan, S., Pandey, V.V., & Singh, A. (2019). Biological, nutritional, and therapeutic significance of Moringa oleifera Lam. Phytotherapy Research, 33, 2870–2903. DOI: 10.1002/ptr.6475 google scholar
  • Doig, K., & Thompson, L.A. (2017). A methodical approach to interpreting the white blood cell parameters of the complete blood count. American Society for Clinical Laboratory Science, 30(3), 186–193. DOI: 10.29074/ascls.30.3.186 google scholar
  • El-Kassas, E. A., El-Saadony, M. T., El-Naggar, K., & Conte-Junior, C. A. (2022). Moringa oleifera leaf powder dietary inclusion differentially modulates the antioxidant, inflammatory, and histopathological responses of normal and Aeromonas hydrophila-infected mono-sex Nile tilapia (Oreochromis niloticus). Frontiers in Veterinary Science, 9, 918933. DOI: 10.3389/ fvets.2022.918933 google scholar
  • El-Kassas, S., Abdo, S.E., Abosheashaa, W., Mohamed, R., Moustafa, E.M., Helal, M.A., & El Naggar, K. (2020). Growth performance, serum lipid profile, intestinal morphometry, and growth and lipid indicator gene expression analysis of mono-sex Nile tilapia fed Moringa oleifera leaf powder. Aquaculture Reports, 18, 100422. DOI: 10.1016/j.aqrep.2020.100422 google scholar
  • El-Sherbiny, G.M., Alluqmani, A.J., Elsehemy, I.A., & Kalaba, M.H. (2024). Antibacterial, antioxidant, cytotoxicity, and phytochemical screening of Moringa oleifera leaves. Scientific Reports, 14(1), 1–17. DOI: 10.1038/s41598-024-80700-y google scholar
  • Erickson, V.I., Dung, T.T., Khoi, L.M., Hounmanou, Y.M.G., Phu, T.M., & Dalsgaard, A. (2024). Genomic insights into Edwardsiella ictaluri: Molecular epidemiology and antimicrobial resistance in striped catfish (Pangasianodon hypophthalmus) aquaculture in Vietnam. Microorganisms, 12(6), 1182. DOI: 10.3390/ microorganisms12061182 google scholar
  • Fahey, J.W. (2005). Moringa oleifera: A review of the medical evidence for its nutritional, therapeutic, and prophylactic properties. Part 1. Trees for Life Journal, 1(5), 1–15. google scholar
  • FAO. (2022). The State of World Fisheries and Aquaculture 2022: Towards Blue Transformation. Rome: Food and Agriculture Organization of the United Nations. https://www.fao.org/documents/card/en/c/cc0461en (Accessed 13 March 2025) google scholar
  • FAO. (2024). Pangasius (striped catfish) – FAO Knowledge. Food and Agriculture Organization of the United Nations. https://openknowledge.fao.org/ server/api/core/bitstreams/1a688e34-1a81-4bb5-aa18-987a9af2bdb5/content (Accessed 22th August 2025) google scholar
  • Fazio, F. (2019). Fish hematology analysis as an important tool of aquaculture: A review. Aquaculture, 500, 237–242. DOI: 10.1016/j.aquaculture.2018.10.030 google scholar
  • Feldman, B. F., Zinkl, J. G., & Jain, N. C. (2000). Schalm’s veterinary haematology. USA: Lippincott Williams and Wilkins. google scholar
  • Foidl, N., Makkar, H.P.S., & Becker, K. (2001). The potential of Moringa oleifera for agricultural and industrial uses. In: Proceedings of the International Workshop: What Development Potential for Moringa Products, Dar-es-Salaam, Tanzania, pp. 47–67. google scholar
  • Gakuya, D.W., Mbugua, P.N., Kavoi, B., & Kiama, S.G. (2014). Effect of supplementation of Moringa oleifera leaf meal in broiler chicken feed. International Journal of Poultry Science, 13, 208–213. DOI: 10.3923/ijps.2014.208.213 google scholar
  • Helmiati, S., & Isnansetyo, A. (2021). The replacement of fish meal with fermented Moringa leaves meal and its effect on the immune response of red tilapia (Oreochromis sp.). IOP Conference Series: Earth and Environmental Science, 919(1), 012057. DOI: 10.1088/1755-1315/919/1/012057 google scholar
  • Jayawardana, B.C., Liyanage, R., Lalantha, N., Iddamalgoda, S., & Weththasinghe, P. (2015). Antioxidant and antimicrobial activity of drumstick (Moringa oleifera) leaves in herbal chicken sausages. Food Science and Technology, 64, 1204– 1208. DOI: 10.1016/j.lwt.2015.07.028 google scholar
  • Kaleo, I.V., Gao, Q., Liu, B., Sun, C., Zhou, Q., Zhang, H., & Song, C. (2019). Effects of Moringa oleifera leaf extract on growth performance, physiological and immune response, and related immune gene expression of Macrobrachium google scholar
  • rosenbergii with Vibrio anguillarum and ammonia stress. Fish and Shellfish Immunology, 89, 603–613. DOI: 10.1016/j.fsi.2019.03.039 google scholar
  • Kamble, M.T., Chaiyapechara, S., Salin, K.R., Bunphimpapha, P., Chavan, B.R., Bhujel, R.C., & Pirarat, N. (2024). Guava and star gooseberry leaf extracts improve growth performance, innate immunity, intestinal microbial community, and disease resistance in Nile tilapia (Oreochromis niloticus) against Aeromonas hydrophila. Aquaculture Reports, 35, 101947. DOI: 10.1016/j.aqrep.2024.101947 google scholar
  • Kamble, M.T., Gallardo, W., Salin, K.R., Pumpuang, S., Chavan, B.R., Bhujel, R.C., & Pirarat, N. (2024). Effect of Moringa oleifera leaf extract on the growth performance, hematology, innate immunity, and disease resistance of Nile tilapia (Oreochromis niloticus) against Streptococcus agalactiae Biotype 2. Animals, 14(6), 953. DOI: 10.3390/ani14060953 google scholar
  • Korni, F.M., Abo El-Ela, F.I., & Moawad, U.K. (2020). Role of Moringa oleifera leaves and aqueous extract in prevention. Journal of Aquaculture Research and Development, 11(2), 1–8. DOI: 10.1007/s10499-019-00452-9 google scholar
  • Lam, T.P., Tam, M.B., Thuy, T.T.N., Geoff, J.G., Brett, A.I., Hao, V.N., Phuong, T.N., & De Silva, S.S. (2009). Current status of farming practices of striped catfish, Pangasianodon hypophthalmus, in the Mekong Delta, Viet Nam. Aquaculture, 296, 227–236. DOI: 10.1016/j.aquaculture.2009.08.023 google scholar
  • Leone, A., Spada, A., Battezzati, A., Schiraldi, A., Aristil, J., & Bertoli, S. (2015). Cultivation, genetic, ethnopharmacology, phytochemistry and pharmacology of Moringa oleifera leaves: An overview. International Journal of Molecular Sciences, 16, 12791–12835. DOI: 10.3390/ijms160612791 google scholar
  • Lewis, T.J., & Trempe, C.L. (2017). The End of Alzheimer's (2nd ed.). Academic Press. google scholar
  • Maner, B. S., Killeen, R. B., & Moosavi, L. (2024). Mean corpuscular volume. In StatPearls, StatPearls Publishing. google scholar
  • Magaldi, S., Mata-Essayag, S., De Capriles, C.H., Pérez, C., Colella, M.T., Olaizola, C., & Ontiveros, Y. (2004). Well diffusion for antifungal susceptibility testing. International Journal of Infectious Diseases, 8(1), 39–45. DOI: 10.1016/ j.ijid.2003.03.002 google scholar
  • Magnadóttir, B. (2006). Innate immunity of fish (overview). Fish and Shellfish Immunology, 20(2), 137–151. DOI: 10.1016/j.fsi.2005.10.010 google scholar
  • Magnadóttir, B. (2010). Immunological control of fish diseases. Marine Biotechnology, 12, 361–379. DOI: 10.1007/s10126-010-9279-x google scholar
  • Mahmood, K.T., Mugal, T., & Ul Haq, I. (2010). Moringa oleifera: A natural gift – A review. Journal of Pharmaceutical Sciences and Research, 2, 775–781. google scholar
  • Makkar, H.A., & Becker, K. (1996). Nutritional value and antinutritional components of whole and ethanol extracted Moringa oleifera leaves. Animal Feed Science and Technology, 63(1–4), 211–228. DOI: 10.1016/S0377-8401(96)01023-1 google scholar
  • Mansour, A.T., Miao, L., Espinosa, C., García-Beltrán, J.M., Ceballos Francisco, D.C., & Esteban, M.Á. (2018). Effects of dietary inclusion of Moringa oleifera leaves on growth and some systemic and mucosal immune parameters of seabream. Fish Physiology and Biochemistry, 44, 1223–1240. DOI: 10.1007/s10695-018-0515-z google scholar
  • Mbokane, E.M., & Moyo, N.A.G., 2020. Effects of dietary levels of essential oil extracts from Moringa oleifera and Artemisia afra on kidney histology, haemato-immunological parameters and disease resistance in Clarias gariepinus. Aquaculture Research, 51, 410–425. DOI: 10.1111/are.14388 google scholar
  • Mokhtar, D.M., Zaccone, G., Alesci, A., Kuciel, M., Hussein, M.T., & Sayed, R.K. (2023). Main components of fish immunity: An overview of the fish immune system. Fishes, 8(2), 93. DOI: 10.3390/fishes8020093 google scholar
  • Momin, M., & Memis, D. (2023). Potential use of the miracle tree (Moringa oleifera) leaves in aquaculture: A recent update. Aquatic Science and Engineering, 38(2), 122–130. DOI: 10.26650/ASE20221225220 google scholar
  • Muhammad, H.I., Asmawi, M.Z., & Khan, N.A.K. (2016). A review on promising phytochemical, nutritional and glycemic control studies on Moringa oleifera Lam. in tropical and sub-tropical regions. Asian Pacific Journal of Tropical Biomedicine, 6(10), 896–902. DOI: 10.1016/j.apjtb.2016.08.006 google scholar
  • Mutwedu, V. B., Nyongesa, A. W., & Ayagirwe, R. B. (2025). Moringa oleifera aqueous seed extracts and its efficacy in the management of heat stress: assessment of physiological parameters in female New Zealand White rabbits. Discover Animals, 2(1), 13. DOI: 10.1007/s44338-025-00058-x google scholar
  • National Research Council. (2011). Nutrient Requirements of Fish and Shrimp; The National Academies Press: Washington, DC, USA, p. 392. google scholar
  • Nguyen, N.P. (2014). Environmental factors affecting the pathogenesis of Edwardsiella ictaluri in striped catfish Pangasianodon hypophthalmus (Sauvage) (Master’s thesis). University of Stirling. http://hdl.handle.net/1893/20644 google scholar
  • Nhu, T.Q., Hang, B.T.B., Hue, B.T.B., Quetin-Leclercq, J., Scippo, M.L., Phuong, N.T., & Kestemont, P. (2019). Plant extract-based diets differently modulate immune responses and resistance to bacterial infection in striped catfish (Pangasianodon hypophthalmus). Fish and Shellfish Immunology, 92, 913–924. DOI: 10.1016/j.fsi.2019.07.025 google scholar
  • Olaoye, A.B., Ologunde, C.A., Molehin, O.R., & Nwankwo, I. (2021). Comparative antioxidant analysis of Moringa oleifera leaf extracts from South Western states in Nigeria. Future Journal of Pharmaceutical Sciences, 7, 1–15. DOI: 10.1186/s43094-021-00204-8 google scholar
  • Ortuño, J., Esteban, M.A., & Meseguer, J. (2003). The effect of dietary intake of vitamins C and E on the stress response of gilthead seabream (Sparus aurata L.). Fish and Shellfish Immunology, 14(2), 145–156. DOI: 10.1006/fsim.2002.0428 google scholar
  • Payne, C.J., Phuong, V.H., Phuoc, N.N., Dung, T.T., Phuoc, L.H., & Crumlish, M. (2025). Genomic diversity and evolutionary patterns of Edwardsiella ictaluri affecting farmed striped catfish (Pangasianodon hypophthalmus) in Vietnam over 20 years. Microbial Genomics, 11(2), 001368. DOI: 10.1099/mgen.0.001368 google scholar
  • Reverter, M., Bontemps, N., Lecchini, D., Banaigs, B., & Sasal, P. (2014). Use of plant extracts in fish aquaculture as an alternative to chemotherapy: Current status and future perspectives. Aquaculture, 433, 50–61. DOI: 10.1016/ j.aquaculture.2014.05.048 google scholar
  • Saini, R. K., Sivanesan, I., & Keum, Y. S. (2016). Phytochemicals of Moringa oleifera: a review of their nutritional, therapeutic and industrial significance. 3 Biotech, 6, 1-14. DOI: 10.1007/s13205-016-0526-3 google scholar
  • Sanam, M.U., Detha, A.I., & Rohi, N.K. (2022). Detection of antibacterial activity of lactic acid bacteria isolated from Sumba mare’s milk against Bacillus cereus, Staphylococcus aureus, and Escherichia coli. Journal of Advanced Veterinary and Animal Research, 9(1), 53. DOI: 10.5455/javar.2022.i568 google scholar
  • Sanchez-Martinez, J.G., Perez-Castaneda, R., Vazquez Sauceda, M.D.L.L., Rabago Castro, J., & Aguirre-Guzman, G. (2012). Rapid detection of Edwardsiella ictaluri from channel catfish tissue, water samples by PCR amplification. Journal of Animal and Veterinary Andvances, 11(20), 3823-3826. google scholar
  • Sarker, S.D., Nahar, L., & Kumarasamy, Y. (2007). Microtitre plate-based antibacterial assay incorporating resazurin as an indicator of cell growth, and its application in the in vitro antibacterial screening of phytochemicals. Methods, 42(4), 321–324. DOI: 10.1016/j.ymeth.2007.01.006 google scholar
  • Schreck, C.B., Moyle, P.B. (1990). Methods for Fish Biology. American Fisheries Society. ISBN: 091323558X. google scholar
  • Setyani, W., Murwanti, R., Sulaiman, T. N. S., & Hertiani, T. (2023). Application of Response Surface Methodology (RSM) for the optimization of ultrasound-assisted extraction (UAE) of Moringa oleifera: Extraction yield, content of bioactive compounds, and biological effects in vitro. Plants, 12(13), 2455. DOI: 10.3390/plants12132455 google scholar
  • Singleton, V.L., Orthofer, R., & Lamuela–Raventos, R.M. (1999). Analysis of total phenol and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Methods in Enzymology, 299, 152–178. DOI: 10.3177/jnsv.50.203 google scholar
  • Sonewane, K., Chouhan, S. S., Rajan, M., Chauhan, N. S., Rout, O. P., Kumar, A., … & Gupta, P. K. (2022). Pharmacological, ethnomedicinal, and evidence-based comparative review of Moringa oleifera Lam.(Shigru) and its potential role in the management of malnutrition in Tribal Regions of India, especially Chhattisgarh. World Journal of Traditional Chinese Medicine, 8(3), 314-338. DOI: 10.4103/wjtcm.wjtcm_69_21 google scholar
  • Sutthi, N., Panase, A., Chitmanat, C., Sookying, S., Ratworawong, K., & Panase, P. (2020). Effects of dietary leaf ethanolic extract of Apium graveolens L. on growth performance, serum biochemical indices, bacterial resistance and lysozyme activity in Labeo chrysophekadion (Bleeker, 1849). Aquaculture Reports, 18, 100551. DOI: 10.1016/j.aqrep.2020.100551 google scholar
  • Thangaiah, A., Gunalan, S., Velu, P., Chandirasekaran, D., Rajasekar, A., & AlSalhi, M. S., … & Malik, T. (2024). Augmenting phyto-chemical and phyto-mineral profiling of moringa leaf extract: A contrastive study of solid-liquid extraction methodologies. Heliyon, 10(24). google scholar
  • Uribe, C., Folch, H., Enríquez, R., Moran, & G.J.V.M. (2011). Innate and adaptive immunity in teleost fish: A review. Veterinary Medicine, 56(10), 486–503. DOI: 10.17221/3294-VETMED google scholar
  • Van den Berg, J., & Kuipers, S. (2022). The antibacterial action of Moringa oleifera: A systematic review. South African Journal of Botany, 151, 224–233. DOI: 10.1016/ j.sajb.2022.09.034 google scholar
  • Vergara-Jimenez, M., Almatrafi, M. M., & Fernandez, M. L. (2017). Bioactive components in Moringa oleifera leaves protect against chronic disease. Antioxidants, 6(4), 91. DOI: 10.3390/antiox6040091 google scholar
  • Verma, A.R., Vijayakumar, M., Mathela, C.S., & Rao, C.V. (2009). In vitro and in vivo antioxidant properties of different fractions of Moringa oleifera leaves. Food and Chemical Toxicology, 47(9), 2196–2201. DOI: 10.1016/j.fct.2009.06.005 google scholar
  • Viana, M. B. (2011). Anemia and infection: a complex relationship. Revista brasileira de hematologia e hemoterapia, 33, 90-92. DOI: 10.5581/1516-8484.20110024 google scholar
  • Weatherburn, M.W. (1967). Phenol-hypochlorite reaction for determination of ammonia. Analytical Chemistry, 39(8), 971–974. DOI: 10.1021/ac60252a045 google scholar
  • Xiao, X., Wang, J., Meng, C., Liang, W., Wang, T., Zhou, B., … & Zhang, L. (2020). Moringa oleifera Lam and its therapeutic effects in immune disorders. Frontiers in Pharmacology, 11, 566783. DOI: 10.3389/fphar.2020.566783 google scholar
  • Yu, Q., Li, C., Duan, Z., Liu, B., Duan, W., & Shang, F. (2017). Ultrasonic microwave-assisted extraction of polyphenols, flavonoids, triterpenoids, and vitamin C from Clinacanthus nutans. Czech Journal of Food Sciences, 35(1). DOI: 10.17221/344/2016-CJFS google scholar
  • Zhang, X., Sun, Z., Cai, J., Wang, J., Wang, G., Zhu, Z., & Cao, F. (2020). Effects of dietary fish meal replacement by fermented Moringa oleifera leaves on growth performance, nonspecific immunity and disease resistance against Aeromonas hydrophila in juvenile gibel carp (Carassius auratus gibelio var. CAS III). Fish and Shellfish Immunology, 102, 430–439. DOI: 10.1016/ j.fsi.2020.04.051. google scholar

Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection

Year 2025, Volume: 40 Issue: 4, 252 - 261, 10.10.2025
https://doi.org/10.26650/ASE.2025.1733929

Abstract

This study evaluated the antibacterial activity of aqueous extract of Drumstick tree (Moringa oleifera) (MLEA) and investigated the effect of dietary inclusion of MLAE to check the disease resistance of stripped catfish (Pangasianodon hypophthalmus) against E. ictaluri. Juvenile f ish of 13.4 ± 2.1 g were fed four groups of MLAE diets including Control (0%), T1 (1%), T2 (1.5%), and T3 (2%) for 28 days. Hematological, innate, and humoral immune responses were assessed before and after challenge with E. ictaluri. The antimicrobial activity results of MLAE showed that inhibition zones of 15.3, 15.8 and 16 mm at 50, 100 and 200 mg/ml, and bactericidal activity at MIC (Minimal inhibition concentration) = MBC (Minimal bactericidal concentration) = 6.25 mg/ml. MLAE contained 38.05 mg GAE/g polyphenols and 278.11 mg OAE/ g saponins. The dietary supplementation of 1.5% MLAE significantly improved hematological indices and immune responses in post challenged fish, leading to the highest survival rate, statistical differences (P < 0.05). These findings highlight the potential of MLAE at 1.5% as an effective dietary inclusion level for striped catfish to provide resistance against E. ictaluri.

Ethical Statement

This study was carried out in strict accordance with the recommendations of Nong Lam university, and the protocol was approved by the Local Ethical Committee for Experiments on Animals of the Nong Lam University, Vietnam (Project Number: NLU-240808, August-15th-2024)

Supporting Institution

Nong Lam University, Vietnam

Project Number

CS-CB24-TS-01

Thanks

The authors thank Nong Lam University for laboratory support.

References

  • Abd El-Gawad, E.A., El Asely, A.M., Soror, E.I., Abbass, A.A., & Austin, B. (2020). Effect of dietary Moringa oleifera leaf on the immune response and control of Aeromonas hydrophila infection in Nile tilapia (Oreochromis niloticus) fry. Aquaculture International, 28, 389–402. DOI: 10.1007/s10499-019-00469-0 google scholar
  • Abidin, Z., Huang, H.T., Liao, Z.H., Chen, B.Y., Wu, Y.S., Lin, Y.J., & Nan, F.H. (2021). Moringa oleifera leaves’ extract enhances nonspecific immune responses, resistance against Vibrio alginolyticus, and growth in white leg shrimp (Penaeus vannamei). Animals, 12(1), 42.DOI: 10.3390/ani12010042 google scholar
  • Adeshina, I., Sani, R.A., Adewale, Y.A., Tiamiyu, L.O., & Umma, S.B. (2018). Effects of dietary Moringa oleifera leaf meal as a replacement for soybean meal on growth, body composition and health status in Cyprinus carpio juveniles. Croatian Journal of Fisheries, 76(4), 174–182. DOI: 10.2478/cjf-2018-0021 google scholar
  • Ahmed, I., Reshi, Q.M., & Fazio, F. (2020). The influence of the endogenous and exogenous factors on hematological parameters in different fish species: A review. Aquaculture International, 28, 869–899. DOI: 10.1007/ s10499-019-00501-3 google scholar
  • Anh, L.V., Parks, S.E., Minh, N.H., & Roach, P.D. (2018). Improving the vanillin-sulphuric acid method for quantifying total saponins. Technologies, 6(84), 1–12. DOI: 10.3390/technologies6030084 google scholar
  • Arnold, J.E. (2005). Hematology of the sandbar shark, Carcharhinus plumbeus: Standardization of complete blood count techniques for elasmobranchs. Veterinary Clinical Pathology, 34(2), 115–123. DOI: 10.1111/ j.1939-165X.2005.tb00023.x google scholar
  • Bagheri, G., Martorell, M., Ramírez-Alarcón, K., Salehi, B., & Sharifi-Rad, J. (2020). Phytochemical screening of Moringa oleifera leaf extracts and their antimicrobial activities. Cellular and Molecular Biology, 66(1), 20-26. DOI: 10.14715/cmb/2019.66.1.3 google scholar
  • Bagheri, G., Martorell, M., Ramírez-Alarcón, K., Salehi, B., & Sharifi-Rad, J. (2020). Phytochemical screening of Moringa oleifera leaf extracts and their antimicrobial activities. Cellular and Molecular Biology, 66(1), 20–26. DOI: 10.14715/cmb/2019.66.1.3 google scholar
  • Bagul, U. S., & Sivakumar, S. M. (2016). Antibiotic susceptibility testing: A review on current practices. International Journal of Pharmacy, 6(3), 11-17. google scholar
  • Becker, K., & Siddhuraju, P. (2003). Antioxidant properties of various solvent extracts of total phenolic constituents from three different agro-climatic origins of drumstick tree (Moringa oleifera). Journal of Agricultural and Food Chemistry, 51, 2144–2155. DOI: 10.1021/jf020444+ google scholar
  • Bennett, R.N., Mellon, F.A., Foidl, N., Pratt, J.H., DuPont, M.S., Perkins, L., & Kroon, P.A. (2003). Profiling glucosinolates and phenolics in vegetative and reproductive tissues of the multi-purpose trees Moringa oleifera L. (Horseradish tree) and Moringa stenopetala L. Journal of Agricultural and Food Chemistry, 51, 3546– 3553. DOI: 10.1021/jf0211480 google scholar
  • Bhattacharya, A., Tiwari, P., Sahu, P.K., & Kumar, S. (2018). A review of the phytochemical and pharmacological characteristics of Moringa oleifera. Journal of Pharmacy & Bioallied Sciences, 10, 181–191. DOI: 10.4103/ JPBS.JPBS_126_18 google scholar
  • Biller-Takahashi, J.D., Montassier, H.J., Takahashi, L.S., & Urbinati, E.C. (2014). Proposed method for agglutinating antibody titer analysis and its use as indicator of acquired immunity in pacu, Piaractus mesopotamicus. Brazilian Journal of Biology, 74(1), 238–242. DOI: 10.1590/1519-6984.21312 google scholar
  • Brewer, M.S. (2011). Natural antioxidants: Sources, compounds, mechanisms of action, and potential applications. Comprehensive Reviews in Food Science and Food Safety, 10(4), 221–247. DOI: 10.1111/j.1541-4337.2011.00156.x google scholar
  • Burgos-Aceves, M.A., Lionetti, L., & Faggio, C. (2019). Multidisciplinary haematology as prognostic device in environmental and xenobiotic stress-induced response in fish. Science of the Total Environment, 670, 1170–1183. DOI: 10.1016/ j.scitotenv.2019.03.275 google scholar
  • Campbell, T.W. (2015). Exotic Animal Hematology and Cytology (4th ed.). John Wiley & Sons, Inc., Hoboken, NJ. DOI: 10.1002/9781118993806 google scholar
  • Carneiro, J.D.S., Nogueira, R.M., Martins, M.A., Valladão, D.M.D.S., & Pires, E.M. (2018). The oven-drying method for determination of water content in Brazil nut. Bioscience Journal, 34, 595–602. DOI: 10.14393/BJ-v34n3a2018-37726 google scholar
  • Chau, M.H., & Sam, H.V. (2021). Effect of varieties and spacing on the growth and leaf yield of moringa (Moringa oleifera). Plant Cell Biotechnology and Molecular Biology, 22, 81–92. google scholar
  • Crumlish, M., Dung, T.T., Turnbull, J.F., Ngoc, N.T.N., & Ferguson, H.W. (2002). Identification of Edwardsiella ictaluri from diseased freshwater catfish, Pangasius hypophthalmus (Sauvage), cultured in the Mekong Delta, Viet Nam. Journal of Fish Diseases, 25, 733–736. DOI: 10.1046/j.1365-2761.2002.00412.x google scholar
  • De Barros, M. C., de Souza Silva, V. C., Silva, A. G. B., Neto, J. D. C. S., de Lima Maux, J. M., Dos Santos, P. É. M., … & Paiva, P. M. G. (2025). Antioxidant activity and chemoprotective effect of Moringa oleifera Lam. leaf infusion against google scholar
  • methotrexate-induced damage in mice. Toxicology Reports, 14, 102000. DOI: 10.1016/j.toxrep.2025.102000 google scholar
  • De Silva, S.S., & Phuong, N.T. (2011). Striped catfish farming in Mekong Delta, Viet Nam: A tumultuous path to a global success. Reviews in Aquaculture, 3, 45–73. DOI: 10.1111/j.1753-5131.2011.01046.x google scholar
  • Dhakad, A.K., Ikram, M., Sharma, S., Khan, S., Pandey, V.V., & Singh, A. (2019). Biological, nutritional, and therapeutic significance of Moringa oleifera Lam. Phytotherapy Research, 33, 2870–2903. DOI: 10.1002/ptr.6475 google scholar
  • Doig, K., & Thompson, L.A. (2017). A methodical approach to interpreting the white blood cell parameters of the complete blood count. American Society for Clinical Laboratory Science, 30(3), 186–193. DOI: 10.29074/ascls.30.3.186 google scholar
  • El-Kassas, E. A., El-Saadony, M. T., El-Naggar, K., & Conte-Junior, C. A. (2022). Moringa oleifera leaf powder dietary inclusion differentially modulates the antioxidant, inflammatory, and histopathological responses of normal and Aeromonas hydrophila-infected mono-sex Nile tilapia (Oreochromis niloticus). Frontiers in Veterinary Science, 9, 918933. DOI: 10.3389/ fvets.2022.918933 google scholar
  • El-Kassas, S., Abdo, S.E., Abosheashaa, W., Mohamed, R., Moustafa, E.M., Helal, M.A., & El Naggar, K. (2020). Growth performance, serum lipid profile, intestinal morphometry, and growth and lipid indicator gene expression analysis of mono-sex Nile tilapia fed Moringa oleifera leaf powder. Aquaculture Reports, 18, 100422. DOI: 10.1016/j.aqrep.2020.100422 google scholar
  • El-Sherbiny, G.M., Alluqmani, A.J., Elsehemy, I.A., & Kalaba, M.H. (2024). Antibacterial, antioxidant, cytotoxicity, and phytochemical screening of Moringa oleifera leaves. Scientific Reports, 14(1), 1–17. DOI: 10.1038/s41598-024-80700-y google scholar
  • Erickson, V.I., Dung, T.T., Khoi, L.M., Hounmanou, Y.M.G., Phu, T.M., & Dalsgaard, A. (2024). Genomic insights into Edwardsiella ictaluri: Molecular epidemiology and antimicrobial resistance in striped catfish (Pangasianodon hypophthalmus) aquaculture in Vietnam. Microorganisms, 12(6), 1182. DOI: 10.3390/ microorganisms12061182 google scholar
  • Fahey, J.W. (2005). Moringa oleifera: A review of the medical evidence for its nutritional, therapeutic, and prophylactic properties. Part 1. Trees for Life Journal, 1(5), 1–15. google scholar
  • FAO. (2022). The State of World Fisheries and Aquaculture 2022: Towards Blue Transformation. Rome: Food and Agriculture Organization of the United Nations. https://www.fao.org/documents/card/en/c/cc0461en (Accessed 13 March 2025) google scholar
  • FAO. (2024). Pangasius (striped catfish) – FAO Knowledge. Food and Agriculture Organization of the United Nations. https://openknowledge.fao.org/ server/api/core/bitstreams/1a688e34-1a81-4bb5-aa18-987a9af2bdb5/content (Accessed 22th August 2025) google scholar
  • Fazio, F. (2019). Fish hematology analysis as an important tool of aquaculture: A review. Aquaculture, 500, 237–242. DOI: 10.1016/j.aquaculture.2018.10.030 google scholar
  • Feldman, B. F., Zinkl, J. G., & Jain, N. C. (2000). Schalm’s veterinary haematology. USA: Lippincott Williams and Wilkins. google scholar
  • Foidl, N., Makkar, H.P.S., & Becker, K. (2001). The potential of Moringa oleifera for agricultural and industrial uses. In: Proceedings of the International Workshop: What Development Potential for Moringa Products, Dar-es-Salaam, Tanzania, pp. 47–67. google scholar
  • Gakuya, D.W., Mbugua, P.N., Kavoi, B., & Kiama, S.G. (2014). Effect of supplementation of Moringa oleifera leaf meal in broiler chicken feed. International Journal of Poultry Science, 13, 208–213. DOI: 10.3923/ijps.2014.208.213 google scholar
  • Helmiati, S., & Isnansetyo, A. (2021). The replacement of fish meal with fermented Moringa leaves meal and its effect on the immune response of red tilapia (Oreochromis sp.). IOP Conference Series: Earth and Environmental Science, 919(1), 012057. DOI: 10.1088/1755-1315/919/1/012057 google scholar
  • Jayawardana, B.C., Liyanage, R., Lalantha, N., Iddamalgoda, S., & Weththasinghe, P. (2015). Antioxidant and antimicrobial activity of drumstick (Moringa oleifera) leaves in herbal chicken sausages. Food Science and Technology, 64, 1204– 1208. DOI: 10.1016/j.lwt.2015.07.028 google scholar
  • Kaleo, I.V., Gao, Q., Liu, B., Sun, C., Zhou, Q., Zhang, H., & Song, C. (2019). Effects of Moringa oleifera leaf extract on growth performance, physiological and immune response, and related immune gene expression of Macrobrachium google scholar
  • rosenbergii with Vibrio anguillarum and ammonia stress. Fish and Shellfish Immunology, 89, 603–613. DOI: 10.1016/j.fsi.2019.03.039 google scholar
  • Kamble, M.T., Chaiyapechara, S., Salin, K.R., Bunphimpapha, P., Chavan, B.R., Bhujel, R.C., & Pirarat, N. (2024). Guava and star gooseberry leaf extracts improve growth performance, innate immunity, intestinal microbial community, and disease resistance in Nile tilapia (Oreochromis niloticus) against Aeromonas hydrophila. Aquaculture Reports, 35, 101947. DOI: 10.1016/j.aqrep.2024.101947 google scholar
  • Kamble, M.T., Gallardo, W., Salin, K.R., Pumpuang, S., Chavan, B.R., Bhujel, R.C., & Pirarat, N. (2024). Effect of Moringa oleifera leaf extract on the growth performance, hematology, innate immunity, and disease resistance of Nile tilapia (Oreochromis niloticus) against Streptococcus agalactiae Biotype 2. Animals, 14(6), 953. DOI: 10.3390/ani14060953 google scholar
  • Korni, F.M., Abo El-Ela, F.I., & Moawad, U.K. (2020). Role of Moringa oleifera leaves and aqueous extract in prevention. Journal of Aquaculture Research and Development, 11(2), 1–8. DOI: 10.1007/s10499-019-00452-9 google scholar
  • Lam, T.P., Tam, M.B., Thuy, T.T.N., Geoff, J.G., Brett, A.I., Hao, V.N., Phuong, T.N., & De Silva, S.S. (2009). Current status of farming practices of striped catfish, Pangasianodon hypophthalmus, in the Mekong Delta, Viet Nam. Aquaculture, 296, 227–236. DOI: 10.1016/j.aquaculture.2009.08.023 google scholar
  • Leone, A., Spada, A., Battezzati, A., Schiraldi, A., Aristil, J., & Bertoli, S. (2015). Cultivation, genetic, ethnopharmacology, phytochemistry and pharmacology of Moringa oleifera leaves: An overview. International Journal of Molecular Sciences, 16, 12791–12835. DOI: 10.3390/ijms160612791 google scholar
  • Lewis, T.J., & Trempe, C.L. (2017). The End of Alzheimer's (2nd ed.). Academic Press. google scholar
  • Maner, B. S., Killeen, R. B., & Moosavi, L. (2024). Mean corpuscular volume. In StatPearls, StatPearls Publishing. google scholar
  • Magaldi, S., Mata-Essayag, S., De Capriles, C.H., Pérez, C., Colella, M.T., Olaizola, C., & Ontiveros, Y. (2004). Well diffusion for antifungal susceptibility testing. International Journal of Infectious Diseases, 8(1), 39–45. DOI: 10.1016/ j.ijid.2003.03.002 google scholar
  • Magnadóttir, B. (2006). Innate immunity of fish (overview). Fish and Shellfish Immunology, 20(2), 137–151. DOI: 10.1016/j.fsi.2005.10.010 google scholar
  • Magnadóttir, B. (2010). Immunological control of fish diseases. Marine Biotechnology, 12, 361–379. DOI: 10.1007/s10126-010-9279-x google scholar
  • Mahmood, K.T., Mugal, T., & Ul Haq, I. (2010). Moringa oleifera: A natural gift – A review. Journal of Pharmaceutical Sciences and Research, 2, 775–781. google scholar
  • Makkar, H.A., & Becker, K. (1996). Nutritional value and antinutritional components of whole and ethanol extracted Moringa oleifera leaves. Animal Feed Science and Technology, 63(1–4), 211–228. DOI: 10.1016/S0377-8401(96)01023-1 google scholar
  • Mansour, A.T., Miao, L., Espinosa, C., García-Beltrán, J.M., Ceballos Francisco, D.C., & Esteban, M.Á. (2018). Effects of dietary inclusion of Moringa oleifera leaves on growth and some systemic and mucosal immune parameters of seabream. Fish Physiology and Biochemistry, 44, 1223–1240. DOI: 10.1007/s10695-018-0515-z google scholar
  • Mbokane, E.M., & Moyo, N.A.G., 2020. Effects of dietary levels of essential oil extracts from Moringa oleifera and Artemisia afra on kidney histology, haemato-immunological parameters and disease resistance in Clarias gariepinus. Aquaculture Research, 51, 410–425. DOI: 10.1111/are.14388 google scholar
  • Mokhtar, D.M., Zaccone, G., Alesci, A., Kuciel, M., Hussein, M.T., & Sayed, R.K. (2023). Main components of fish immunity: An overview of the fish immune system. Fishes, 8(2), 93. DOI: 10.3390/fishes8020093 google scholar
  • Momin, M., & Memis, D. (2023). Potential use of the miracle tree (Moringa oleifera) leaves in aquaculture: A recent update. Aquatic Science and Engineering, 38(2), 122–130. DOI: 10.26650/ASE20221225220 google scholar
  • Muhammad, H.I., Asmawi, M.Z., & Khan, N.A.K. (2016). A review on promising phytochemical, nutritional and glycemic control studies on Moringa oleifera Lam. in tropical and sub-tropical regions. Asian Pacific Journal of Tropical Biomedicine, 6(10), 896–902. DOI: 10.1016/j.apjtb.2016.08.006 google scholar
  • Mutwedu, V. B., Nyongesa, A. W., & Ayagirwe, R. B. (2025). Moringa oleifera aqueous seed extracts and its efficacy in the management of heat stress: assessment of physiological parameters in female New Zealand White rabbits. Discover Animals, 2(1), 13. DOI: 10.1007/s44338-025-00058-x google scholar
  • National Research Council. (2011). Nutrient Requirements of Fish and Shrimp; The National Academies Press: Washington, DC, USA, p. 392. google scholar
  • Nguyen, N.P. (2014). Environmental factors affecting the pathogenesis of Edwardsiella ictaluri in striped catfish Pangasianodon hypophthalmus (Sauvage) (Master’s thesis). University of Stirling. http://hdl.handle.net/1893/20644 google scholar
  • Nhu, T.Q., Hang, B.T.B., Hue, B.T.B., Quetin-Leclercq, J., Scippo, M.L., Phuong, N.T., & Kestemont, P. (2019). Plant extract-based diets differently modulate immune responses and resistance to bacterial infection in striped catfish (Pangasianodon hypophthalmus). Fish and Shellfish Immunology, 92, 913–924. DOI: 10.1016/j.fsi.2019.07.025 google scholar
  • Olaoye, A.B., Ologunde, C.A., Molehin, O.R., & Nwankwo, I. (2021). Comparative antioxidant analysis of Moringa oleifera leaf extracts from South Western states in Nigeria. Future Journal of Pharmaceutical Sciences, 7, 1–15. DOI: 10.1186/s43094-021-00204-8 google scholar
  • Ortuño, J., Esteban, M.A., & Meseguer, J. (2003). The effect of dietary intake of vitamins C and E on the stress response of gilthead seabream (Sparus aurata L.). Fish and Shellfish Immunology, 14(2), 145–156. DOI: 10.1006/fsim.2002.0428 google scholar
  • Payne, C.J., Phuong, V.H., Phuoc, N.N., Dung, T.T., Phuoc, L.H., & Crumlish, M. (2025). Genomic diversity and evolutionary patterns of Edwardsiella ictaluri affecting farmed striped catfish (Pangasianodon hypophthalmus) in Vietnam over 20 years. Microbial Genomics, 11(2), 001368. DOI: 10.1099/mgen.0.001368 google scholar
  • Reverter, M., Bontemps, N., Lecchini, D., Banaigs, B., & Sasal, P. (2014). Use of plant extracts in fish aquaculture as an alternative to chemotherapy: Current status and future perspectives. Aquaculture, 433, 50–61. DOI: 10.1016/ j.aquaculture.2014.05.048 google scholar
  • Saini, R. K., Sivanesan, I., & Keum, Y. S. (2016). Phytochemicals of Moringa oleifera: a review of their nutritional, therapeutic and industrial significance. 3 Biotech, 6, 1-14. DOI: 10.1007/s13205-016-0526-3 google scholar
  • Sanam, M.U., Detha, A.I., & Rohi, N.K. (2022). Detection of antibacterial activity of lactic acid bacteria isolated from Sumba mare’s milk against Bacillus cereus, Staphylococcus aureus, and Escherichia coli. Journal of Advanced Veterinary and Animal Research, 9(1), 53. DOI: 10.5455/javar.2022.i568 google scholar
  • Sanchez-Martinez, J.G., Perez-Castaneda, R., Vazquez Sauceda, M.D.L.L., Rabago Castro, J., & Aguirre-Guzman, G. (2012). Rapid detection of Edwardsiella ictaluri from channel catfish tissue, water samples by PCR amplification. Journal of Animal and Veterinary Andvances, 11(20), 3823-3826. google scholar
  • Sarker, S.D., Nahar, L., & Kumarasamy, Y. (2007). Microtitre plate-based antibacterial assay incorporating resazurin as an indicator of cell growth, and its application in the in vitro antibacterial screening of phytochemicals. Methods, 42(4), 321–324. DOI: 10.1016/j.ymeth.2007.01.006 google scholar
  • Schreck, C.B., Moyle, P.B. (1990). Methods for Fish Biology. American Fisheries Society. ISBN: 091323558X. google scholar
  • Setyani, W., Murwanti, R., Sulaiman, T. N. S., & Hertiani, T. (2023). Application of Response Surface Methodology (RSM) for the optimization of ultrasound-assisted extraction (UAE) of Moringa oleifera: Extraction yield, content of bioactive compounds, and biological effects in vitro. Plants, 12(13), 2455. DOI: 10.3390/plants12132455 google scholar
  • Singleton, V.L., Orthofer, R., & Lamuela–Raventos, R.M. (1999). Analysis of total phenol and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Methods in Enzymology, 299, 152–178. DOI: 10.3177/jnsv.50.203 google scholar
  • Sonewane, K., Chouhan, S. S., Rajan, M., Chauhan, N. S., Rout, O. P., Kumar, A., … & Gupta, P. K. (2022). Pharmacological, ethnomedicinal, and evidence-based comparative review of Moringa oleifera Lam.(Shigru) and its potential role in the management of malnutrition in Tribal Regions of India, especially Chhattisgarh. World Journal of Traditional Chinese Medicine, 8(3), 314-338. DOI: 10.4103/wjtcm.wjtcm_69_21 google scholar
  • Sutthi, N., Panase, A., Chitmanat, C., Sookying, S., Ratworawong, K., & Panase, P. (2020). Effects of dietary leaf ethanolic extract of Apium graveolens L. on growth performance, serum biochemical indices, bacterial resistance and lysozyme activity in Labeo chrysophekadion (Bleeker, 1849). Aquaculture Reports, 18, 100551. DOI: 10.1016/j.aqrep.2020.100551 google scholar
  • Thangaiah, A., Gunalan, S., Velu, P., Chandirasekaran, D., Rajasekar, A., & AlSalhi, M. S., … & Malik, T. (2024). Augmenting phyto-chemical and phyto-mineral profiling of moringa leaf extract: A contrastive study of solid-liquid extraction methodologies. Heliyon, 10(24). google scholar
  • Uribe, C., Folch, H., Enríquez, R., Moran, & G.J.V.M. (2011). Innate and adaptive immunity in teleost fish: A review. Veterinary Medicine, 56(10), 486–503. DOI: 10.17221/3294-VETMED google scholar
  • Van den Berg, J., & Kuipers, S. (2022). The antibacterial action of Moringa oleifera: A systematic review. South African Journal of Botany, 151, 224–233. DOI: 10.1016/ j.sajb.2022.09.034 google scholar
  • Vergara-Jimenez, M., Almatrafi, M. M., & Fernandez, M. L. (2017). Bioactive components in Moringa oleifera leaves protect against chronic disease. Antioxidants, 6(4), 91. DOI: 10.3390/antiox6040091 google scholar
  • Verma, A.R., Vijayakumar, M., Mathela, C.S., & Rao, C.V. (2009). In vitro and in vivo antioxidant properties of different fractions of Moringa oleifera leaves. Food and Chemical Toxicology, 47(9), 2196–2201. DOI: 10.1016/j.fct.2009.06.005 google scholar
  • Viana, M. B. (2011). Anemia and infection: a complex relationship. Revista brasileira de hematologia e hemoterapia, 33, 90-92. DOI: 10.5581/1516-8484.20110024 google scholar
  • Weatherburn, M.W. (1967). Phenol-hypochlorite reaction for determination of ammonia. Analytical Chemistry, 39(8), 971–974. DOI: 10.1021/ac60252a045 google scholar
  • Xiao, X., Wang, J., Meng, C., Liang, W., Wang, T., Zhou, B., … & Zhang, L. (2020). Moringa oleifera Lam and its therapeutic effects in immune disorders. Frontiers in Pharmacology, 11, 566783. DOI: 10.3389/fphar.2020.566783 google scholar
  • Yu, Q., Li, C., Duan, Z., Liu, B., Duan, W., & Shang, F. (2017). Ultrasonic microwave-assisted extraction of polyphenols, flavonoids, triterpenoids, and vitamin C from Clinacanthus nutans. Czech Journal of Food Sciences, 35(1). DOI: 10.17221/344/2016-CJFS google scholar
  • Zhang, X., Sun, Z., Cai, J., Wang, J., Wang, G., Zhu, Z., & Cao, F. (2020). Effects of dietary fish meal replacement by fermented Moringa oleifera leaves on growth performance, nonspecific immunity and disease resistance against Aeromonas hydrophila in juvenile gibel carp (Carassius auratus gibelio var. CAS III). Fish and Shellfish Immunology, 102, 430–439. DOI: 10.1016/ j.fsi.2020.04.051. google scholar
There are 83 citations in total.

Details

Primary Language English
Subjects Ecology (Other)
Journal Section Research Article
Authors

Ho Thi Truong Thy 0009-0002-5220-477X

Ong Moc Quy 0009-0005-8376-4552

Ravi Fotedar 0000-0002-4548-3064

Vo Van Tuan 0000-0009-9927-7453

Nguyen Thao Suong 0009-0005-5740-836X

Project Number CS-CB24-TS-01
Publication Date October 10, 2025
Submission Date July 7, 2025
Acceptance Date September 8, 2025
Published in Issue Year 2025 Volume: 40 Issue: 4

Cite

APA Truong Thy, H. T., Quy, O. M., Fotedar, R., … Tuan, V. V. (2025). Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection. Aquatic Sciences and Engineering, 40(4), 252-261. https://doi.org/10.26650/ASE.2025.1733929
AMA Truong Thy HT, Quy OM, Fotedar R, Tuan VV, Thao Suong N. Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection. Aqua Sci Eng. October 2025;40(4):252-261. doi:10.26650/ASE.2025.1733929
Chicago Truong Thy, Ho Thi, Ong Moc Quy, Ravi Fotedar, Vo Van Tuan, and Nguyen Thao Suong. “Antibacterial Activity and Effects of Drumstick Tree (Moringa Oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon Hypophthalmus) Against Edwardsiella Ictaluri Infection”. Aquatic Sciences and Engineering 40, no. 4 (October 2025): 252-61. https://doi.org/10.26650/ASE.2025.1733929.
EndNote Truong Thy HT, Quy OM, Fotedar R, Tuan VV, Thao Suong N (October 1, 2025) Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection. Aquatic Sciences and Engineering 40 4 252–261.
IEEE H. T. Truong Thy, O. M. Quy, R. Fotedar, V. V. Tuan, and N. Thao Suong, “Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection”, Aqua Sci Eng, vol. 40, no. 4, pp. 252–261, 2025, doi: 10.26650/ASE.2025.1733929.
ISNAD Truong Thy, Ho Thi et al. “Antibacterial Activity and Effects of Drumstick Tree (Moringa Oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon Hypophthalmus) Against Edwardsiella Ictaluri Infection”. Aquatic Sciences and Engineering 40/4 (October2025), 252-261. https://doi.org/10.26650/ASE.2025.1733929.
JAMA Truong Thy HT, Quy OM, Fotedar R, Tuan VV, Thao Suong N. Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection. Aqua Sci Eng. 2025;40:252–261.
MLA Truong Thy, Ho Thi et al. “Antibacterial Activity and Effects of Drumstick Tree (Moringa Oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon Hypophthalmus) Against Edwardsiella Ictaluri Infection”. Aquatic Sciences and Engineering, vol. 40, no. 4, 2025, pp. 252-61, doi:10.26650/ASE.2025.1733929.
Vancouver Truong Thy HT, Quy OM, Fotedar R, Tuan VV, Thao Suong N. Antibacterial Activity and Effects of Drumstick tree (Moringa oleifera) Leaf Aqueous Extract on Disease Resistance of Striped Catfish (Pangasianodon hypophthalmus) Against Edwardsiella ictaluri Infection. Aqua Sci Eng. 2025;40(4):252-61.

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