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Assessment of some heavy metal accumulation and nutritional quality of shellfish with reference to human health and cancer risk assessment: a seafood safety approach

机译:参考人类健康和癌症风险评估评估贝类的一些重金属积累和营养品质:海产安全方法

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This study was conducted to assess the proximate analysis (protein, carbohydrate, lipid, and moisture content) and concentration levels of metals (Zn, Cu, Cd, Pb, and Cr) in the muscles of selected shellfish (Portunus reticulatus, P. segnis, P. sanguinolentus, Scylla olivaceae, Penaeus monodon, and P. indicus) species. The concentration of metals showed significant difference (p 0.05) among species. The detected concentrations of the analyzed heavy metals were below the daily intake and legal limits set by national and international standards. The THQs and CR index were calculated to evaluate the risk estimation of the metal contamination associated with the human health. The THQ values of all metals were below 1 in all species, indicated that there is no risk of adverse health effect, but the risk of elevated intakes of heavy metals adversely affecting food safety for the studied species. The CR index indicated that Cd and Pb caused the greatest cancer risk. The correlation and multivariate (principle component analysis) among metal concentration and nutritional quality were also evaluated. The carbohydrate and moisture showed the positive correlation (p 0.05) with metals. The biochemical results of the present work clearly indicate that there was a significant difference in the muscles of shellfish. It was concluded that more effective controls should be focused on Cd and Pb to reduce pollution for quality and seafood safety concern.
机译:进行该研究以评估近似分析(蛋白质,碳水化合物,脂质,和水分含量),并在选定的贝类的肌肉金属(锌,铜,镉,铅,和Cr)的浓度水平(梭子蟹网纹,P.蚤,P. sanguinolentus,青蟹olivaceae,斑节对虾,和印度对虾)物种。金属的浓度下显示出显著差异(p为H. 0.05)物种。所分析的重金属检测浓度的每日摄入量,并通过国家和国际标准制订法律限制之下。的THQs和CR指数来评价与人类健康相关联的金属污染的风险估计。所有金属的THQ值均低于1中所有的物种,表明不存在影响健康的风险,但重金属的研究的物种的食品安全产生不利影响的摄入量升高的风险。在CR指数表明,镉和铅造成最大的癌症风险。中的金属浓度和营养品质的相关性和多变量(主成分分析)也进行了评价。碳水化合物和湿气显示出正相关(p为H. 0.05)的金属。本工作的生化结果清楚地表明,在贝类肌肉显著差异。得出的结论是更有效的控制应该集中在镉和铅,以减少污染的质量和海产品安全的关注。

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