Date Received: 03-07-2025
Date Published: 03-07-2025
##submissions.doi##: https://doi.org/10.31817/tckhnnvn.2017.15.7.
Views
Downloads
How to Cite:
In Vitro Anti - Bacterial Activity of Nanodrugs (Polyme - Ag - Fe3o4 - Antibiotics) on Bacterial Strains Caused Acute Hepatopancreas Necrosis Disease (Ahpnd) in Shrimp
Keywords
AHPND, antibiotic, nanodrug, shrimp, Vibrio parahaemolyticus
Abstract
The study was carried out to determine in vitro anti-bacterial effects of nanodrugs (Polyme_Ag_Fe3O4_Antibotics) on bacterial strains caused acute hepatopancreatic necrosis disease (AHPND) in shrimp. The Vibrio parahaemolyticus strain KC12.020 was used in this study at concentration of 108 cfu/ml. Results showed that the inhibition zone against the AHPND-caused bacterial strain of the nanodug, Polyme_Ag_Fe3O4_Doxycylin, was about 17.25 mm when the tested antibiotic dose was equal to only one-half of the recommended dose of Doxycylin. The effective anti-bacterial effect of the nanodrug, Polyme_Ag_Fe3O4_Ciprofloxcin, was similar to the antibacterial activity of the Ciprofloxacin used alone (the inhibitory diameter was 16.25 mm) when the tested antibiotic dose was equal to one-fifth (1/5) of the dose of Ciprofloxacin is recommended. However, the Polyme_Ag_Fe3O4_Ciprofloxcin product will not be used for trial at farm level because its usage has recently been banned in aquaculture. Other nanodrugs, Polyme_Ag_Fe3O4_Oxytetracyclin, Polyme_Ag_Fe3O4_Doxycyclin, and Polyme_Ag_Fe3O4_Doxycyclin_Florphenicol, are needed to further study because they did not show clearly the antibacterial activities against AHPND-caused bacterial strain in this study. These results indicated the potential use of nanodrugs (Polyme_Ag_Fe3O4_Antibiotics) in treatment of AHPND in shrimp.
References
Dong, X., Wang H., Xie G., Zou P., Gou C., Liang Y., and Huang J. (2017). An isolate of Vibrio campbellii carrying the PirVP genes causes acute hepatopancreatic necrosis disease. Emerging Microbes & Infections 6, e2, doi. 10.1038/emi.2016.131.
Fenaroli, F., Westmoreland D., Benjaminsen J., Kolstad T., Skjeldal F.M., Meijer A.H. (2014). Nanoparticles as drug delivery system against tuberculosis in zebra fish embryos: direct visualization and treatment. ACS Nano, 8(7): 7014-7026.
Ha, P.T., Le T.T.H, Hoang T.M.N, Nguyen T.T., Nguyen D.T., Ha T.M.T., Pham T.B.H., Tran T.M.N., Nguyen T.Q., Pham H.N., Tran D.L., Nguyen X.P. and Duong T.Q. (2011). Fe3O4/o-Carboxymethyl chitosan/Curcumin-based Nanofrug system for chemotheraphy and fluorescence imaging in HT29 cancer cell line. Chem. Lett, 40:1264-1266.
Ha, P.T., Nguyen H.N., DDo H.D, Phan Q.T., Tran T.M.N., Nguyen X.P., Hoang T.M.N., Le M.H., Nguyen L.T., Bui T.Q., and Phan V.H. (2016). Targeted drug delivery nanosystems based on copolymer (poly-lactide)-tocopheryl polyethylene glycol succinate for cancer treatment. Adv. Nat.Sci: Nanosci. Nanotechnol., 7: 015001.
Han, J.E. (2017). Four AHPND strains identified on Latin American shrimp farms. http://advocate.gaalliance.org/four-ahpnd-strains-identified-on-latin-american-shrimp-farms/.
Hameed A.S., Rahaman, K.H., Alagan. A. and Yoganandhan, K. (2003). Antibiotic resistance in bacteria isolated from hatchery-reared larvae and post-larvae of Macrobrachium rosenbergii. Aquaculture, 217: 39-48.
Jaroenram W., Arunrut N., Kiatpathomchai W. (2012). Rapid and sensitive detection of shrimp yellow head virus using loop-mediated isothermal amplification and a colorogenic nanogold hybridization probe. J Virol Methods, 186(1): 36-42.
Kondo H, Van P.T, Dang L.T. and Hirono I. (2015). Draft genome sequence of non-Vibrio parahaemolyticus acute hepatopancreatic necrosis disease strain KC13.17.5, isolated from diseased shrimp in Vietnam. Genome Announc., 3(5).
Li L., Lin S.L., Deng L., Liu Z.G. (2013). Potential use of chitosan nanoparticles for oral delivery of DNA vaccine in black seabream Acanthopagrus schlegelii Bleeker to protect from Vibrio parahaemolyticus. J Fish Dis., 36(12): 987-995.
Lightner, D. V. (2014). Documentation of a unique strain of Vibrio parahaemolitycus as the agent of Early Mortality Syndrome (EMS) or Acute Hepatopancreatic Necrosis Disease (AHPND) affecting Penaeid shrimp with note on the putative toxins. Paper presented at the The 9th Symposium on Diseases in Asian Aquaculture (DAA9), Ho Chi Minh city, Vietnam.
LinThong, K., Ung E.H., Thong K.L., Ye S.M., Wee W.Y., Yap K.P. (2014). An AP1, 2 and 3 PCR positive non - Vibrio parahaemolyticus bacteria with AHPND histopathology. Paper presented at the 9th symposium on disease in Asian aquaculture (DAA9), Ho Chi Minh city, Vietnam, 24-28 November, 2014.
Mahesh, B. and Satish S. (2008). Antimicrobial activity of some important medicinal plant against plant and human pathogens. World J Agric Sci., 4[S] 839-843.
Phan Thị Vân, Đặng Thị Lụa, Nguyễn Viết Khuê, Bùi Ngọc Thanh, Phạm Thế Việt, Phạm Thị Yến, Đào Xuân Trường, Nguyễn Thị Mai Phương, Nguyễn Thị Thu Hường và Nguyễn Thị Hạnh (2014). Nghiên cứu xác định nguyên nhân gây bệnh hoại tử gan tuỵ trên tôm tại phía Bắc. Báo cáo tổng kết nhiệm vụ cấp Bộ năm 2014.
Rajeshkumar S., Venkatesan C., Sarathi M., Sarathbabu V., Thomas J., Anver Basha K., Sahul Hameed A.S. (2009). Oral delivery of DNA construct using chitosan nanoparticles to protect the shrimp from white spot syndrome virus (WSSV), Fish & Shellfish Immunology, 26: 429-437.
Rather M. (2011). Nanotechnology: A Novel Tool for Aquaculture and Fisheries Development. A Prospective Mini-Review. Fisheries and Aquaculture Journal.
Saleh, M., Soliman H., Haenen O., El-Matbouli M. (2011). Antibody-coated gold nanoparticle immunoassay for direct detection of Aeromonas salmonicida in fish tissues. J Fish Dis., 34(11): 845-852.
Sarter, S., Kha, N.H.N., Hung, L.T., Lazard, J. and
Didier M. (2007). Antibiotic Resistace in Gram-negative bacteria isolated from farmed catfish. Food Control, 18: 1391-1396.
Sasiwipa, T., Jumroensri T., Janejit K., Reko N., Hidehiro K. and Hirono, I. (2014). Characterization of vỉulence factor of AHPND Vibrio parahaemolyticus, which is the causative agent of shrimp disease. Paper presented at the The 9th Symposium on Diseases in Asian Aquaculture (DAA9), Ho Chi Minh city, Vietnam.
Solanki, R. (2010). Some medicinal plants with antibacterial activity. Pharmacies Globate (IJCP), 4(10), ISSN 0976-8157.
Shaalan, M., Saleh M., El-Mahhdy M., and El-Matbouli M. (2016). Progress in applications of nanoparticles in fish medicines: A review. Nanomedicine: Nanotechnology, Biology, and Medicine, 12: 701-710.
Tian J., Sun X., Chen X., Yu J., Qu L., and Wang L. (2008). The formulation and immunization of oral poly (DL-lactide-co-glycolide) microcapsules containing a plasmid vaccine against lymphocystis disease virus in Japanese flounder (Paralichthys olivaceus). Int Immunopharmacol., 8(6): 900-908.
Tran, L., Nunan, L., Redman, R. M., Mohney, L. L., Pantoja, C. R., Fitzsimmons, K. and Lightner, D. V. (2013). Determination of the infectious nature of the agent of acute hepatopancreatic necrosis syndrome affecting penaeid shrimp. Dis. Aquat. Organ., 105: 45-55.