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Enteric nervous system analyses: New biomarkers for environmental quality assessment

机译:肠神经系统分析:用于环境质量评估的新生物标记

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The gastrointestinal tract (GIT) of fish is a target of contaminants since it can absorb these substances. We evaluated the morphophysiological alterations in the GIT ofSphoeroides testudineuscollected in two estuaries presenting differences in their environmental quality (NIA and IA). The intestine was analyzed for histological and neuronal changes; liver and gills for biochemical markers; muscle tissues for neurotoxicity and peripheral blood for genotoxic damage. The results showed alterations in the GIT of the animals collected in the IA, such as muscle tunica and goblet cell density reduction, increased intraepithelial lymphocytes density and changes in neuronal density. Furthermore, changes were observed in MTs and LPO in the gills. Thus, we suggest that TGI is functioning as a barrier that responds to ingested contaminants, in order to reduce their absorption and translocation. Thus, alterations in morphophysiological and enteric neurons inS. testudineuscan be used as biomarkers of environmental contamination.
机译:鱼的胃肠道(GIT)是污染物的目标,因为它可以吸收这些物质。我们评估了在两个河口中收集到的Sphoeroides testudineus的GIT的形态生理变化,这些河口在环境质量方面存在差异(NIA和IA)。分析了肠道的组织学和神经元变化;肝和g作为生化指标;肌肉组织有神经毒性,而外周血有遗传毒性。结果表明,在IA中收集的动物的GIT发生改变,例如肌膜和杯状细胞密度降低,上皮内淋巴细胞密度增加和神经元密度变化。此外,在MT中观察到MT和LPO的变化。因此,我们建议TGI充当对摄入的污染物作出反应的屏障,以减少其吸收和转运。因此,S中形态生理和肠神经元的改变。 testudineuscan可用作环境污染的生物标记。

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