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Bioaccumulation and toxicity of 2-naphthalene sulfonate: an intermediate compound used in textile industry

机译:2-萘磺酸盐的生物累积和毒性:纺织工业中使用的中间体化合物

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The aromatic compounds substituted with sulfonate groups, being xenobiotic, resist biodegradation in the environment and tend to accumulate up to toxic levels. The hydrophilic sulfonated group makes these compounds highly water soluble and they tend to pass through water-treatment plants. The release of untreated effluents from these industries results in pollution of water bodies affecting aquatic fauna. Thus, the toxicity regarding these compounds is of major concern. The 2-naphthalene sulfonate is a sulfonated aromatic compound being widely used in textile industries. Being non-biodegradable concern regarding its toxicity has risen. Thus in the light of above facts, the present study was undertaken to determine the toxicity of 2-naphthalene sulfonate in blood cells of Channa punctatus. For this, LD50 was determined and after selection of sublethal doses oxidative stress, genotoxicity and bioaccumulation were studied. For oxidative stress determination, biochemical markers such as malondialdehyde content and activities of superoxide dismutase, catalase, and glutathione-S-transferase were studied. Genotoxicity was studied using comet and micronucleus assay. Significant increase in oxidative stress and DNA damage in the exposed groups as compared to control group (P <= 0.05) was observed till 96 h. However, decreased values of all the studied parameters at 720 h (30 days) indicate repair capacity of fish. Further, the bio accumulative potential of 2-naphthalene sulfonate was assessed in blood plasma using high-performance liquid chromatography. The study revealed the toxic potential of 2-naphthalene sulfonate to aquatic organisms thus stressed on the need for the implementation of stringent policies regarding the management of such toxic compounds.
机译:被磺酸盐基团取代的芳族化合物,是异丙酸,抗蚀于环境中的生物降解,并倾向于积累毒性水平。亲水性磺化基团使这些化合物高度水溶性,并且它们倾向于通过水处理厂。来自这些行业的未处理流出物的释放导致影响水生动物的水体污染。因此,关于这些化合物的毒性是主要的关注。 2-萘磺酸盐是磺化芳香族化合物,广泛用于纺织工业。对其毒性的不可生物降解令人担忧。因此,根据上述事实,本研究旨在确定2-萘磺酸盐在通道泪液中的血细胞中的毒性。为此,研究了LD50,并在核肉剂量选择后,研究了遗传毒性和生物累积。对于氧化应激测定,研究了丙醛含量和超氧化物歧化酶,过氧化氢酶和谷胱甘肽-S-转移酶的生物化学标志物。使用彗星和微核测定研究了基因毒性。与对照组相比,暴露基团的氧化应激和DNA损伤的显着增加(P <= 0.05),直至96小时。然而,720小时(30天)的所有研究参数的值降低表明鱼类的修复能力。此外,使用高效液相色谱法评估2-萘磺酸盐的生物累加潜力。该研究揭示了2-萘磺酸盐对水生生物的毒性潜力,从而强调了实施关于这些有毒化合物的管理的严格政策。

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