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Hydrogen peroxide treatment in Atlantic salmon induces stress and detoxification response in a daily manner

机译:大西洋鲑鱼中的过氧化氢处理每天都会引起压力和排毒反应

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Daily variation in the absorption, metabolism and excretion of toxic substances will ultimately determine the actual concentration to which the cells and tissues are exposed. In aquaculture, Atlantic salmon (Salmo salar) can be frequently exposed to hydrogen peroxide (H2O2) to treat topical skin and gill infections, particularly in relation to parasitic infections (e.g. sea lice Lepeophtheirus salmonis and amoebic gill disease caused by Neoparamoeba perurans). It is well accepted that the time of administration influences pharmacodynamics and pharmacokinetics of drugs which in turn affects their efficacy and toxicity. Consequently, a better understanding of drug side effects as a function of time of day exposure would help to improve treatment efficacy and fish welfare. To this end, salmon were exposed to H2O2 (1500 mg/L) for 20 min at six different times of the day during a 24-h cycle and we investigated the time-dependent effects of exposure on physiological stress (glucose, lactate and cortisol) and antioxidant enzyme expression (gpx1, cat, Mn-sod and hsp70) in liver and gills. In addition, at each sampling point, 8 control fish were also sampled. Our results revealed that the time of administration of H2O2 caused significant differences in the induction of both physiological and oxidative stress responses. Glucose and lactate were higher in the treated fish during daytime whereas cortisol levels appeared to be systematically increased (>1000 ng/mL) after H2O2 treatment irrespective of exposure time, although differences with control levels were higher during the day. In liver, gene expression of antioxidant enzymes displayed daily rhythmicity in both treated and control groups and showed higher mRNA expression levels in salmon treated with H2O2 at ZT6 (6 h after lights onset). In gills, rhythmic expression was only found for gpx1 in the control fish and for hsp70 and Mn-sod in the treated groups. However, in the treated salmon, higher gene expression levels of all the investigated enzymes were also observed at ZT6-10. Clock gene expression showed rhythmicity only in the liver in accordance with the daily rhythm of enzyme expression observed in this tissue. Altogether, this study provides first evidence of chronotoxicity in Atlantic salmon treated with H2O2 and suggests increased sublethal toxic effect during the first half of the day. These results have direct relevance to the salmon and broader aquaculture industry by optimising the timing of treatment administration, opening the door to chronotherapy to treat fish diseases.
机译:毒性物质吸收,代谢和排泄的每日变化最终将决定细胞和组织所接触的实际浓度。在水产养殖中,经常将大西洋鲑鱼(Salmo salar)暴露于过氧化氢(H2O2)中,以治疗局部皮肤和g感染,尤其是与寄生虫感染有关(例如海虱Lepeophtheirus鲑鱼和由新百草枯草引起的阿米巴g病)。众所周知,给药时间会影响药物的药效动力学和药代动力学,进而会影响其功效和毒性。因此,更好地了解作为一天中暴露时间的函数的药物副作用将有助于提高治疗功效和鱼类福利。为此,在一天的24小时周期中的一天中的六个不同时间,将鲑鱼暴露于H2O2(1500 mg / L)中20分钟,我们研究了暴露时间对生理压力(葡萄糖,乳酸和皮质醇)的时间依赖性影响。 )和抗氧化酶在肝脏和腮中的表达(gpx1,cat,Mn-sod和hsp70)。另外,在每个采样点,还采样了8条对照鱼。我们的结果表明,施用H2O2的时间在诱导生理和氧化应激反应方面引起了显着差异。白天,处理过的鱼体内的葡萄糖和乳酸含量较高,而不论接触时间长短,H2O2处理后皮质醇水平似乎都有系统地增加(> 1000 ng / mL),尽管白天与对照水平的差异较高。在肝脏中,抗氧化酶的基因表达在治疗组和对照组中均表现出日常节律性,并在ZT6(起光后6小时)用H2O2处理的鲑鱼中显示出更高的mRNA表达水平。在g中,仅在对照鱼中发现了gpx1的节律性表达,在治疗组中发现了hsp70和Mn-sod的节律性表达。然而,在处理过的鲑鱼中,在ZT6-10处也观察到所有研究的酶的基因表达水平较高。 Clock基因表达仅在肝脏中按照在该组织中观察到的酶表达的每日节律显示出节律。总而言之,这项研究提供了用H2O2处理的大西洋鲑鱼时毒性的第一个证据,并表明在一天的前半段中增加的亚致死毒性作用。这些结果与鲑鱼和更广泛的水产养殖业直接相关,因为它们优化了治疗管理的时机,打开了时间疗法治疗鱼类疾病的大门。

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