Arge Regin, Dessen Jens-Erik, Østbye Tone-Kari, Ruyter Bente, Thomassen Magny S, Rørvik Kjell-Arne
Department of Animal and Aquacultural Sciences, Norwegian University of Life Sciences, 1432, Ås, Norway.
Formerly associated with Fiskaaling, Aquacultural Research Station of the Faroes, FO-430, Hvalvík, Faroe Islands.
Fish Physiol Biochem. 2018 Apr;44(2):703-716. doi: 10.1007/s10695-018-0466-4. Epub 2018 Jan 19.
In intensive farming of Atlantic salmon, a large proportion of observed mortality is related to cardiovascular diseases and circulatory failure, indicating insufficient robustness and inadequate cardiac performance. This paper reports on the use of tetradecylthioacetic acid (TTA) where the main objective was to enhance utilisation of fatty acids (FA), considered the main energy source of the heart. In this study, three experiments were conducted: (I) an in vivo study where salmon post-smolt were administrated dietary TTA in sea, (II) an in vitro study where isolated salmon heart cells were pre-stimulated with increasing doses of TTA and (III) an in vivo experiment where salmon post-smolt were subjected to injections with increasing doses of TTA. In study I, TTA-treated fish had a smaller decrease in heart weight relative to fish bodyweight (CSI) in a period after sea transfer compared to the control. This coincided with lowered condition factor and muscle fat in the TTA-treated fish, which may indicate a higher oxidation of lipids for energy. In study II, the isolated hearts treated with the highest dose of TTA had higher uptake of radiolabelled FA and formation of CO and acid-soluble products. In study III, expression of genes regulating peroxisomal FA oxidation, cell growth, elongation and desaturation were upregulated in the heart of TTA injected salmon. In contrast, genes involved in FA transport into the mitochondria were not influenced. In conclusion, these experiments indicate that TTA enhances energy production in salmon hearts by stimulation of FA oxidation.
在大西洋鲑鱼的集约化养殖中,观察到的大部分死亡与心血管疾病和循环衰竭有关,这表明其健壮性不足且心脏功能欠佳。本文报道了十四烷基硫代乙酸(TTA)的使用情况,其主要目的是提高脂肪酸(FA)的利用率,脂肪酸被认为是心脏的主要能量来源。在本研究中,进行了三项实验:(I)一项体内研究,在海水中给鲑鱼后幼鱼投喂含TTA的饲料;(II)一项体外研究,用递增剂量的TTA对分离出的鲑鱼心脏细胞进行预刺激;(III)一项体内实验,给鲑鱼后幼鱼注射递增剂量的TTA。在研究I中,与对照组相比,经TTA处理的鱼在转移至海水中后的一段时间内,心脏重量相对于鱼体重(CSI)的下降幅度较小。这与经TTA处理的鱼的肥满度降低和肌肉脂肪减少相吻合,这可能表明脂质氧化产生能量的比例更高。在研究II中,用最高剂量TTA处理的分离心脏对放射性标记脂肪酸的摄取以及CO和酸溶性产物的形成更高。在研究III中,注射TTA的鲑鱼心脏中,调节过氧化物酶体脂肪酸氧化、细胞生长、延长和去饱和的基因表达上调。相比之下,参与脂肪酸转运到线粒体的基因未受影响。总之,这些实验表明,TTA通过刺激脂肪酸氧化增强了鲑鱼心脏的能量产生。