Environmental Science Laboratory, Department of Zoology, Ravenshaw University, Cuttack, 753008, Odisha, India.
Bull Environ Contam Toxicol. 2021 Apr;106(4):568-574. doi: 10.1007/s00128-020-03093-4. Epub 2021 Jan 9.
Polyaromatic hydrocarbons are highly stable and can easily permeate through biological membranes due to their lipophilic nature. They are characterized by their ability to act at the site of application and even at sites distant to the zone of application. Any contamination associated with aquatic bodies due to the presence of PAHs can be assessed by investigating biochemical changes. The most common polycyclic aromatic hydrocarbon (PAH) pollutant naphthalene was selected for the bioassay experiment using Indian climbing perch Anabas testudineus. The biochemical response in the muscle tissue was investigated after exposure to varying concentrations of naphthalene by estimating protein, glycogen, Alanine Aminotransaminase, and Aspartate Aminotransaminase. The results showed inhibition of protein and glycogen levels due to naphthalene stress. Similarly, a decrease in the activity of transaminase in muscle tissues was noticed. The results have been computed using star plots for interpretation of integrated biomarker response (IBR). The results clearly support the role of biochemical parameters in assessing the impact of naphthalene stress on fish health. IBR index can be developed as a useful tool in monitoring quantitative as well as the qualitative effect of naphthalene toxicity in fishes and other aquatic animals.
多环芳烃具有高稳定性,由于其亲脂性,很容易穿透生物膜。它们的特点是能够在应用部位发挥作用,甚至在远离应用部位的部位发挥作用。由于多环芳烃的存在而对水生生物造成的任何污染都可以通过研究生化变化来评估。选择最常见的多环芳烃(PAH)污染物萘作为实验生物测定,使用攀鲈(Anabas testudineus)进行实验。通过估计蛋白质、糖原、丙氨酸氨基转移酶和天冬氨酸氨基转移酶,研究了肌肉组织在暴露于不同浓度萘后的生化反应。结果表明,由于萘的胁迫,蛋白质和糖原水平受到抑制。同样,肌肉组织中转氨酶的活性也有所下降。结果使用星图进行了计算,以解释综合生物标志物反应(IBR)。结果清楚地支持了生化参数在评估萘胁迫对鱼类健康影响方面的作用。IBR 指数可以作为一种有用的工具,用于监测萘毒性对鱼类和其他水生动物的定量和定性影响。