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短时间接触柴油、纯生物柴油和生物柴油混合物后,装甲鲶(Pterygoplichthys anisitsi)的生化反应。

Biochemical responses in armored catfish (Pterygoplichthys anisitsi) after short-term exposure to diesel oil, pure biodiesel and biodiesel blends.

机构信息

Departamento de Química e Ciências Ambientais, Universidade Estadual Paulista (IBILCE/UNESP), Rua Critóvão Colombo, 2265, CEP - 15054-000, São José do Rio Preto, SP, Brazil.

出版信息

Chemosphere. 2013 Sep;93(2):311-9. doi: 10.1016/j.chemosphere.2013.04.083. Epub 2013 May 29.

DOI:10.1016/j.chemosphere.2013.04.083
PMID:23726006
Abstract

Biodiesel fuel is gradually replacing petroleum-based diesel oil use. Despite the biodiesel being considered friendlier to the environment, little is known about its effects in aquatic organisms. In this work we evaluated whether biodiesel exposure can affect oxidative stress parameters and biotransformation enzymes in armored catfish (Pterygoplichthys anisitsi, Loricariidae), a South American endemic species. Thus, fish were exposed for 2 and 7d to 0.01mLL(-1) and 0.1mLL(-1) of pure diesel, pure biodiesel (B100) and blends of diesel with 5% (B5) and 20% (B20) biodiesel. Lipid peroxidation (malondialdehyde) levels and the activities of the enzymes glutathione S-transferase, superoxide dismutase, catalase and glutathione peroxidase were measured in liver and gills. Also, DNA damage (8-oxo-7, 8-dihydro-2'-deoxyguanosine) levels in gills and 7-ethoxyresorufin-O-deethylase activity in liver were assessed. Pure diesel, B5 and B20 blends changed most of the enzymes tested and in some cases, B5 and B20 induced a higher enzyme activity than pure diesel. Antioxidant system activation in P. anisitsi was effective to counteract reactive oxygen species effects, since DNA damage and lipid peroxidation levels were maintained at basal levels after all treatments. However, fish gills exposed to B20 and B100 presented increased lipid peroxidation. Despite biodiesel being more biodegradable fuel that emits less greenhouse gases, the increased lipid peroxidation showed that biofuel and its blends also represent hazards to aquatic biota.

摘要

生物柴油燃料正在逐渐取代石油基柴油的使用。尽管生物柴油被认为对环境更友好,但人们对其在水生生物中的影响知之甚少。在这项工作中,我们评估了生物柴油暴露是否会影响装甲鲶(Pterygoplichthys anisitsi,Loricariidae)的氧化应激参数和生物转化酶,装甲鲶是一种南美的特有物种。因此,鱼分别暴露于 0.01mLL(-1)和 0.1mLL(-1)的纯柴油、纯生物柴油(B100)以及柴油与 5%(B5)和 20%(B20)生物柴油的混合物中 2 天和 7 天。在肝脏和鳃中测量了脂质过氧化(丙二醛)水平和谷胱甘肽 S-转移酶、超氧化物歧化酶、过氧化氢酶和谷胱甘肽过氧化物酶的活性。还评估了鳃中的 DNA 损伤(8-氧-7,8-二氢-2'-脱氧鸟苷)水平和肝脏中的 7-乙氧基荧光素-O-脱乙基酶活性。纯柴油、B5 和 B20 混合物改变了大多数测试的酶,在某些情况下,B5 和 B20 诱导的酶活性高于纯柴油。P. anisitsi 抗氧化系统的激活有效地抵消了活性氧的影响,因为在所有处理后,DNA 损伤和脂质过氧化水平都保持在基础水平。然而,暴露于 B20 和 B100 的鱼鳃出现了脂质过氧化的增加。尽管生物柴油是一种更可生物降解的燃料,排放的温室气体更少,但增加的脂质过氧化表明生物燃料及其混合物也对水生生物群构成危害。

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