The protective role of iodine and MS-222 against stress response and bacterial infections during Nile tilapia (Oreochromis niloticus) transportation

Springer Science and Business Media LLC - Tập 31 - Trang 401-416 - 2022
Ahmed H. Sherif1, Elsayed A. Eldessouki2, Nader M. Sabry3, Nadia G. Ali3
1Fish Diseases Department, Animal Health Research Institute AHRI, Agriculture Research Centre ARC, Kafr El-Shaikh, Egypt
2Department of Fish Health and Diseases, Faculty of Fish Resources, Suez University, Suez, Egypt
3National Institute of Oceanography and Fisheries (NIOF), Cairo, Egypt

Tóm tắt

Fish transportation is a regular farming and experimental practice that mainly results in stress conditions that may extend to induce a high mortality rate. In the present experimental simulation, Oreochromis niloticus were transported for 2 h and maintained for another 6 h in transportation containers to assess the effect of tranquilization with tricaine methanesulfonate (MS-222) and/or the addition of iodine on mortality rate and restoring the normal physiological functions. Experimental fish were divided into four groups: group 1 (control) was transported in farm water without MS-222 or iodine, group (2) was transported in farm water supplemented with 40 mg/L of MS-222, fish in group (3) were transported in farm water supplemented with 40 mg/L of MS-222 + 10 ppm iodine, and fish in group (4) were transported in farm water containing 10 ppm iodine. Blood samples were collected for the determination of serum cortisol and glucose, while skin mucus was collected for assaying lysozyme, peroxidase and antibacterial activity; cumulative mortality rate; and food reflexes which were assessed at 0 h, 1 h, 6 h, 48 h, 7 days and 14 days post 2 h transportation. The results indicated that fish tranquilization with MS-222 and/or treatment with iodine mitigated the stress condition associated with transportation and accelerate restoration of the normal physiological and immunological status. So, it was recommended to use the MS-222 as a tranquillizer together with iodine as an antiseptic during transportation of O. niloticus.

Tài liệu tham khảo

Aboyadak IM, Ali NG, Abdel-Aziz MM, Gado MS, El-Shazly KA (2016) Role of some antibacterial drugs in control Streptococcus iniae infection in Oreochromis niloticus. Int J Pharm Clin Res 1(5):555573. https://doi.org/10.19080/JPCR.2016.01.555573 Ali NGM, Aboyadak IM, El-Sayed HS (2019) Chemotherapeutic control of Gram-positive infection in white sea bream (Diplodus sargus, Linnaeus 1758) broodstock. Vet World 12(2):316–324. https://doi.org/10.14202/vetworld.2019.316-324 Barham WT, Caiger KM, Visser JGJ (1979) The use of benzocaine hydrochloride as fish tranquillizer and anaesthetic in saline waters. Afr J Aquat Sci 5(2):94–96 Brinchmann MF (2016) Immune relevant molecules identified in the skin mucus of fish using-omics technologies. Mol Biosyst 12(7):2056–2063 Cao J, Wang Q, Qiu W, Mei J, Xie J (2021) Transport and recovery of turbot (Scophthalmus maximus) sedated with MS-222 and eugenol: effects on intermediary metabolism and osmoregulation. Animals 11(8):2228 Cao X, Wang Y, Yu N, Le Q, Hu J, Yang Y, ... Yan X (2019) Transcriptome analysis reveals the influence of anaesthetic stress on the immune system of crucian carp (Carassius auratus) under the process of treatment and low concentration transport by MS‐222 and Eugenol. Aquac Res 50(11): 3138–3153 Carda-Diéguez M, Ghai R, Rodríguez-Valera F, Amaro C (2017) Wild eel microbiome reveals that skin mucus of fish could be a natural niche for aquatic mucosal pathogen evolution. Microbiome 5(1):1–15. https://doi.org/10.1186/s40168-017-0376-1 Chatchawanchonteera A, Kitcharoenpunya R, Nasri T, Chaichana T, Ronkhakulpipat N, Rattanapratumchai C (2015) In vitro study on efficacy of disinfectants against Streptococcus agalactiae. The 6th Hat Yai National Conference. Hat Yai University, Hat Yai, Thailand, pp 1535–1543 Chen X, Lai C, Wang Y, Wei L, Zhong Q (2018) Disinfection effect of povidone-iodine in aquaculture water of swamp eel (Monopterus albus). Peer J 6:e5523. https://doi.org/10.7717/peerj.5523 Chen SW, Liu CH, Hu SY (2019) Dietary administration of probiotic Paenibacillus ehimensis NPUST1 with bacteriocin-like activity improves growth performance and immunity against Aeromonas hydrophila and Streptococcus iniae in Nile tilapia (Oreochromis niloticus). Fish Shellfish Immunol 84:695–703. https://doi.org/10.1016/j.fsi.2018.10.059 Debuf Y (1991) The veterinary formulary handbook of medicines used in veterinary practice. J S Afr Vet Assoc 62(4):181 Duncan DB (1955) Multiple range and multiple -F test. Biometrics 11:10 Esteban MÁ (2012) A review: An overview of the immunological defenses in fish skin. ISRN Immunol 1–29. https://doi.org/10.5402/2012/853470 FAO (2018) Food and Agriculture Organization, The State of World Fisheries and Aquaculture 2018-Meeting the Sustainable Development Goals. Italy, FAO, Rome Faulmann E, Cuchens MA, Lobb CJ, Miller NW, Clem LW (1983) An effective culture system for studying in vitro mitogenic responses of channel catfish lymphocytes. Trans Am Fish Soc 112(5):673–679. https://doi.org/10.1577/1548-8659(1983)112%3c673:AECSFS%3e2.0.CO;2 Félix L, Correia R, Sequeira R, Ribeiro C, Monteiro S, Antunes L, ... Valentim A (2021) MS-222 and propofol sedation during and after the simulated transport of Nile tilapia (Oreochromis niloticus). Biology 10(12):1309 Fernandes MO, Volpato GL (1993) Estresse social ecrescimento em peixes. Anais De Etologia 11:129–141 Goes ESR, de Lara AF, Gasparino E, Goes MD, Zuanazzi JSG, Lopera-Barrero NM, Rodriguez MPR, Castro PL, Ribeiro RP (2017) Effects of transportation stress on quality and sensory profiles of Nile tilapia fillets. Scientia Agricola 75(4):321–328. https://doi.org/10.1590/1678-992X-2016-0387 Gomes LC, Chippari-Gomes AR, Lopes NP, Roubach R, Araújo Lima CAR (2001) Efficacy of benzocaine as an anesthetic in juvenile tambaqui Colossoma macropomum. J World Aquac Soc 32(1):426–431 Gomes LC, Roubach R, Araujo-Lima CA, Chippari-Gomes AR, Lopes NP, Urbinati EC (2003) Effect of fish density during transportation on stress and mortality of juvenile tambaqui Colossoma macropomum. J World Aquac Soc 34(1):76–84. https://doi.org/10.1111/j.1749-7345.2003.tb00041.x Guardiola FA, Cuesta A, Arizcun M, Meseguer J, Esteban MA (2014) Comparative skin mucus and serum humoral defence mechanisms in the teleost gilthead seabream (Sparus aurata). Fish Shellfish Immunol 36(2):545–551 Heiner JD, Hile DC, Demons ST, Wedmore IS (2010) 10% Povidone-iodine may be a practical field water disinfectant. Wilderness Environ Med 21:332–336. https://doi.org/10.1016/j.wem.2010.09.008 Hoseinifar SH, Sohrabi A, Paknejad H, Jafari V, Paolucci M, Van Doan H (2019) Enrichment of common carp (Cyprinus carpio) fingerlings diet with Psidium guajava: the effects on cutaneous mucosal and serum immune parameters and immune related genes expression. Fish Shellfish Immunol 86:688–694. https://doi.org/10.1016/j.fsi.2018.12.001 Kenter LW, Gunn MA, Berlinsky DL (2019) Transport stress mitigation and the effects of preanesthesia on striped bass. N Am J Aquac 81(1):67–73. https://doi.org/10.1002/naaq.10072 Kuo T, McQueen A, Chen TC, Wang JC (2018) Regulation of glucose homeostasis by glucocorticoids. Adv Exp Med Biol 872:99–126. https://doi.org/10.1007/978-1-4939-2895-8_5 Kumari S, Tyor AK, Bhatnagar A (2019) Evaluation of the antibacterial activity of skin mucus of three carp species. Int Aquat Res. 11:225–239. https://doi.org/10.1007/s40071-019-0231-z Mainous ME, Smith SA, Kuhn DD (2010) Effect of common aquaculture chemicals against Edwardsiella ictaluri and E. tarda. J Aquat Anim Health 22:224–228. https://doi.org/10.1577/H10-020.1 Martínez-Porchas M, Martínez-Córdova LR, Ramos-Enriquez R (2009) Cortisol and glucose: reliable indicators of fish stress. Pan-Am J Aquat Sci 4(2):158–178 Mattson NS, Ripple TH (1989) Metomidate, a better anesthetic for cod (Gadus morhua) in comparison with benzocaine, MS-222, chlorobutanol, and phenoxyethanol. Aquaculture 83(1–2):89–94 McDonald G, Milligan CL (1997) Ionic, osmotic and acid-base regulation in stress. In: Iwama GW, Pickering AD, Sumpter JP, Schreck CB (eds) Fish stress and health in aquaculture. University Press, Cambridge, UK, pp 119–144 Mcdonnell G, Russell AD (1999) Antiseptics and disinfectants: activity, action, and resistance. Clin Microbiol Rev 12:147–179 Minniti G, Hagen LH, Porcellato D, Jørgensen SM, Pope PB, Vaaje-Kolstad G (2017) The skin-mucus microbial community of farmed Atlantic salmon (Salmo salar). Front Microbiol 8:2043. https://doi.org/10.3389/fmicb.2017.02043 Mishra A, Nam GH, Gim JA, Lee HE, Jo A, Kim HS (2018) Current challenges of Streptococcus infection and effective molecular, cellular, and environmental control methods in aquaculture. Mol Cells 41(6):495 Morgan JD, Iwama GK (1997) Measurements of stressed states in the field. In: Iwana GW, Pickering AD, Sumpter JP (eds) Fish stress and health in aquaculture. University Press, Cambridge, UK, pp 247–270 Morgan JD, Sakamoto T, Grau EG, Iwama GK (1997) Physiological and respiratory responses of the Mozambique tilapia (Oreochromis mossambicus) to salinity acclimation. Comp Biochem Physiol 117(3):391–398 Navarro RD, França RP, Paludo GR, Bizarro YWS, da Silva RF, Navarro FKSP (2016) Physiological and hematological responses of Nile tilapia (Oreochromis Niloticus) to different anesthetics during simulated transport conditions. Acta Sci Technol 38(3):301–306. https://doi.org/10.4025/actascitechnol.v38i3.28377 Noga EJ (2010) Pharmacopoeia. In: Fish disease: diagnosis and treatment. 2nd edn. John Wiley & Sons, pp 375–420 OIE, World Organization for Animal Health (2009) Methods for disinfection of aquaculture establishments. In Manual of diagnostic tests for aquatic animals (pp. 31–42). Retrieved from http://www.oie.int/fileadmin/Home/eng/Health_standards/aahm/2009/1.1.3_DISINFECTION.pdf Oliveira JR, Carmo JL, Oliveira KKC (2009) Cloreto de sódio, benzocaína e óleo de cravo-da-índia na água de transporte de tilápia-do-Nilo. Rev Bras De Zootec 38(7):1163–1169. https://doi.org/10.1590/S1516-35982009000700001 Pakhira C, Nagesh TS, Abraham TJ, Dash G, Behera S (2015) Stress responses in rohu, Labeo rohita transported at different densities. Aquac Rep 2:39–45. https://doi.org/10.1016/j.aqrep.2015.06.002 Park MO, Hur WJ, Im SY, Seol DW, Lee J, Park IS (2008) Anaesthetic efficacy and physiological responses to clove oil anaesthetized kelp grouper Epinephelus bruneus. Aquac Res 39(8):877–884. https://doi.org/10.1111/j.1365-2109.2008.01941.x Park IS, Gil HW, Lee TH, Nam YK, Lim SG, Kim DS (2017) Effects of clove oil and lidocaine-HCl anesthesia on water parameter during simulated transportation in the marine medaka, Oryzias dancena. Dev Reprod 21(1):19–33. https://doi.org/10.12717/DR.2017.21.1.019 Parry RM Jr, Chandan RC, Shahani KM (1965) A rapid and sensitive assay of muramidase. SEBM 119(2):384–386. https://doi.org/10.3181/00379727-119-30188 Pickering AD, Pottinger P (1983) Seasonal and diet changes in plasma cortisol levels of the brown trout, Salmo trutta L. Gen Corn Endocrinol 49:232–239 Pickering AD, Stewart A (1984) Acclimation of interrenal tissue of the brown trout, Salmo trutta L. to chronic crowding stress. J Fish Biol 24:731–740. https://doi.org/10.1111/j.1095-8649.1984.tb04844.x Popovic TN, Strunjak-Perovic I, Coz-Rakovac R, Barisic J, Jadan M, PersinBerakovic A, SauerbornKlobucar R (2012) Tricaine methane-sulfonate (MS-222) application in fish anaesthesia. J Appl Ichthyol 28(4):553–564. https://doi.org/10.1111/j.1439-0426.2012.01950.x Prabu E, Rajagopalsamy CBT, Ahilan B, Jeevagan IJMA, Renuhadevi M (2019) Tilapia–an excellent candidate species for world aquaculture: a review. Annu Res Rev Biol 1–14. https://doi.org/10.9734/arrb/2019/v31i330052 Public Health Agency of Canada (2011) Pathogen safety data sheets: infectious substances – Aeromonas hydrophila. https://www.canada.ca/en/public-health/services/laboratory-biosafety-biosecurity/pathogen-safety-data-sheets-risk-assessment/aeromonas-hydrophila.html Quade MJ, Roth JA (1997) A rapid, direct assay to measure degranulation of bovine neutrophil primary granules. Vet Immunol Immunopathol 58(3–4):239–248. https://doi.org/10.1016/S0165-2427(97)00048-2 Raby GD, Donaldson MR, Hinch SG, Patterson DA, Lotto AG, Robichaud D, ... Cooke SJ (2012) Validation of reflex indicators for measuring vitality and predicting the delayed mortality of wild coho salmon bycatch released from fishing gears. J Appl Ecol 49(1):90–98. https://doi.org/10.1111/j.1365-2664.2011.02073.x Reverter M, Tapissier-Bontemps N, Lecchini D, Banaigs B, Sasal P (2018) Biological and ecological roles of external fish mucus: a review. Fishes 3(4):41 Rico A, Oliveira R, McDonough S, Matser A, Khatikarn J, Satapornvanit K, ... Van den Brink PJ (2014) Use, fate and ecological risks of antibiotics applied in tilapia cage farming in Thailand. Environ Pollut 191:8–16. https://doi.org/10.1016/j.envpol.2014.04.002 Sampaio FD, Freire CA (2016) An overview of stress physiology of fish transport: changes in water quality as a function of transport duration. Fish Fish 17(4):1055–1072. https://doi.org/10.1111/faf.12158 Samson E, Brownscombe JW, Cooke SJ (2014) Behavioural and reflex responses of mottled mojarra Eucinostomus lefroyi (Gerreidae) to cold shock exposure. Aquat Biol 23(1):101–108. https://doi.org/10.3354/ab00609 Sanahuja I, Fernández-Alacid L, Ordóñez-Grande B, Sánchez-Nuño S, Ramos A, Araujo RM, Ibarz A (2019) Comparison of several non-specific skin mucus immune defences in three piscine species of aquaculture interest. Fish Shellfish Immunol 89:428–436. https://doi.org/10.1016/j.fsi.2019.04.008 Saurabh S, Sahoo PK (2008) Lysozyme: an important defence molecule of fish innate immune system. Aquac Res 39(3):223–239. https://doi.org/10.1111/j.1365-2109.2007.01883.x Sherif AH, AbuLeila RH (2022) Prevalence of some pathogenic bacteria in caged- Nile tilapia (Oreochromis Niloticus) and their possible treatment. Jordan J Biol Sci. 15(2):239–247. https://doi.org/10.54319/jjbs/150211 Sherif AH, Gouda MY, Naena NA, Ali AH (2020) Alternate weekly exchanges of feeding regime affect the diversity of intestinal microbiota and immune status of Nile tilapia Oreochromis niloticus. Aquac Res 51(10):4327–4339. https://doi.org/10.1111/are.14778 Sherif AH, Gouda M, Darwish S, Abdelmohsin A (2021) Prevalence of antibiotic-resistant bacteria in freshwater fish farms. Aquac Res 52(5):2036–2047. https://doi.org/10.1111/are.15052 Sherif AH, Abdelsalam M, Ali NG, Mahrous KF (2022) Zinc oxide nanoparticles boost the immune responses in Oreochromis niloticus and improve disease resistance to Aeromonas hydrophila infection. Biol Trace Elem Res. https://doi.org/10.1007/s12011-022-03183-w Simões LN, Lombardi DC, Gomide A, Gomes LC (2011) Efficacy of clove oil as anesthetic in handling and transportation of Nile tilapia, Oreochromis niloticus (Actinopterygii: Cichlidae) juveniles. Zoologia (curitiba) 28(3):285–290 Somamoto T, Nakanishi T (2020) Mucosal delivery of fish vaccines: local and systemic immunity following mucosal immunisations. Fish Shellfish Immunol 99:199–207. https://doi.org/10.1016/j.fsi.2020.01.005 SPSS (2004) Statistical and Package for Social Science, SPSS for Windows Release 14.0.0, 19 June, 2004. Standard Version. copyright SPSS Inc., p. 1989–2004 Stickney RR (2005) The Healthy Fish is a Happy Fish. In: Aquaculture: an introductory text, 1st edn. CABI Publishing UK, pp 132–153. Subramanian S, MacKinnon SL, Ross NW (2007) A comparative study on innate immune parameters in the epidermal mucus of various fish species. Comp Biochem Physiol B Biochem Mol Biol 148(3):256–263. https://doi.org/10.1016/j.cbpb.2007.06.003 Sumpter JP, Pickering AD, Pottinger TG (1985) Stress-induced elevation of plasma α-MSH and endorphin in brown trout. Salmo Trutta l Gen Comp Endocrinol 59(2):257–265. https://doi.org/10.1016/0016-6480(85)90377-6 Teles M, Oliveira M, Jerez-Cepa I, Franco-Martínez L, Tvarijonaviciute A, Tort L, Mancera JM (2019) Transport and recovery of gilthead sea bream (Sparus aurata L.) sedated with clove oil and ms222: effects on oxidative stress status. Front Physiol. 10:523. https://doi.org/10.3389/fphys.2019.00523 Toni M, Manciocco A, Angiulli E, Alleva E, Cioni C, Malavasi S (2019) Review: Assessing fish welfare in research and aquaculture, with a focus on European directives. Animals 13:161–170. https://doi.org/10.1017/S1751731118000940 Trinder P (1969) Serum glucose determination. Ann. Clin. Biochem., 6:24. Cited from Boehringer Mannheim.Gmth Diagnostickit. https://doi.org/10.1177/000456326900600108 Wedemeyer GA (1970) The role of stress in the disease resistance of fishes. Spec Publ Am Fish Soc 5:30–35. https://doi.org/10.1152/physrev.1997.77.3.591 Wendelaar Bonga SE (1997) The stress response in fish. Physiol Rev 77:591–625