Alves de Almeida Eduardo, Celso Dias Bainy Afonso, Paula de Melo Loureiro Ana, Regina Martinez Glaucia, Miyamoto Sayuri, Onuki Janice, Fujita Barbosa Lívea, Carrião Machado Garcia Camila, Manso Prado Fernanda, Eliza Ronsein Graziella, Alexandre Sigolo Carlos, Barbosa Brochini Cláudia, Maria Gracioso Martins Ana, Helena Gennari de Medeiros Marisa, Di Mascio Paolo
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, CP 26.077, 05513-970, São Paulo, Brazil.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Apr;146(4):588-600. doi: 10.1016/j.cbpa.2006.02.040. Epub 2006 Apr 19.
Oxidative stress can take place in marine bivalves under a series of environmental adverse conditions. The study of different systems related to oxidative stress in these organisms can give important information about their physiological status and also about environmental health. Bivalves have been proposed as good sentinel organisms in pollution monitoring studies through the analysis of biochemical biomarkers, and most of the biomarkers analyzed are those related to oxidative stress. However, it is very important to know how other environmental factors not associated to the presence of pollutants might affect these parameters. We have studied a series of mechanisms related to oxidative stress in mussels which inhabit the Brazilian coast, especially in Perna perna species, subjected to different stress conditions, such as the exposure to different contaminants in the laboratory and in the field, the exposure of mussels to air and re-submersion, simulating the tidal oscillations, and in mussels collected at different seasons. Both oxidative damage levels and antioxidant defense systems were strongly affected by the different environmental stress. This review summarizes the data obtained in some studies carried out in bivalves from the Brazilian coast.
在一系列环境不利条件下,海洋双壳贝类可能会发生氧化应激。对这些生物中与氧化应激相关的不同系统进行研究,可以提供有关其生理状态以及环境健康的重要信息。通过分析生化生物标志物,双壳贝类已被提议作为污染监测研究中的良好指示生物,并且所分析的大多数生物标志物都是与氧化应激相关的。然而,了解与污染物存在无关的其他环境因素如何影响这些参数非常重要。我们研究了一系列与巴西海岸贻贝氧化应激相关的机制,特别是在不同应激条件下的翡翠贻贝,如在实验室和野外暴露于不同污染物、使贻贝暴露于空气中然后重新浸入水中以模拟潮汐振荡,以及在不同季节采集的贻贝。不同的环境应激对氧化损伤水平和抗氧化防御系统都有强烈影响。本综述总结了在巴西海岸双壳贝类中进行的一些研究所得的数据。