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Antioxidant defenses of flame scallop Ctenoides scaber (Born, 1778) exposed to the water-soluble fraction of used vehicle crankcase oils

机译:火焰扇形Ctteaides掺入夹刀(诞生,1778)的抗氧化剂防御暴露于使用的车辆曲轴箱油的水溶性分数

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Used vehicle crankcase oils are a source of contamination in Caribbean marine environments and may alter the oxidative balance of organism that inhabiting coastal ecosystems. This paper aims to evaluate effects of a water-soluble fraction of used vehicle crankcase oils (WSF-UVCO) on the antioxidant responses of the flame scallop Ctenoides scaber . The organisms were exposed to ascending sublethal concentrations 0, 0.001, 0.01 and 0.1 % of WSF-UVCO in a static system of aquaria during one week. Subsequently activities of superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx), glutathione reductase (GR) and glutathione-S-transferase (GST) as well as concentrations of reduced glutathione (GSH) and thiobarbituric acid reactive substances (TBARS) were determined in the digestive gland, adductor muscle and gills. SOD, CAT, GST and TBARS increased in digestive gland of organisms exposed to WSF-UVCO at medium and highest concentrations, with a concomitant decrease in GPX and GR activities. In adductor muscle CAT decreased, but GR rose with exposure to 0.01 and 0.1 % WSF-UVCO; in gills, GST rose through all WSF-UVCO concentrations, and SOD, CAT and GR increased only at 0.1 %. The fluctuations in antioxidant enzymes and GST activities point out possible adjustments to control ROS production and detoxification of xenobiotics. These biochemical responses may guarantee the oxidative balance in flame scallop during short term exposure to low concentrations of WSF-UVCO. C. scaber appears suitable as an experimental organism for evaluating biological risks of sublethal exposure to hazardous xenobiotics in tropical marine environments.
机译:二手车辆曲轴箱油是加勒比海环境中的污染源,可能改变居住沿海生态系统的生物体的氧化平衡。本文旨在评估二手车曲轴箱油(WSF-UVCO)水溶性分数对火焰扇形Cttenoides掺入夹刀的抗氧化反应的影响。在一周内,在水族馆的静态系统中,将生物体暴露于升上的亚致苯甲醚浓度0,0001,0.01和0.1%的WSF-UVCO。随后的超氧化物歧化酶(SOD),过氧化氢酶(CAT),谷胱甘肽过氧化物酶(GPX),谷胱甘肽还原酶(GR)和谷胱甘肽-S-转移酶(GST)以及降低的谷胱甘肽(GSH)和硫氨基吡啶酸反应物质的浓度( TBARS)在消化腺体,面膜肌肉和鳃中测定。 SOD,猫,GST和TBARs在暴露于培养基和最高浓度下暴露于WSF-UVCO的生物体的消化腺中,伴随着GPX和GR活动的伴随。在接合剂肌肉猫下降,但GR玫瑰暴露于0.01和0.1%WSF-UVCO;在鳃中,GST通过所有WSF-UVCO浓度升起,SOD,CAT和GR仅增加0.1%。抗氧化酶的波动和GST活性指出可能的调整,以控制ROS生产和异丙酸的排毒。这些生化反应可以保证火焰扇贝在短期内暴露于低浓度WSF-UVCO期间的氧化平衡。 C.Scaber出现适合作为对热带海洋环境中的止血炎患者暴露于危险的异种学的生物风险的实验组织。

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