首页> 美国卫生研究院文献>Toxicology Reports >Evaluation of toxicological effects induced by tributyltin in clam Ruditapes decussatus using high-resolution magic angle spinning nuclear magnetic resonance spectroscopy: Study of metabolic responses in heart tissue and detection of a novel metabolite
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Evaluation of toxicological effects induced by tributyltin in clam Ruditapes decussatus using high-resolution magic angle spinning nuclear magnetic resonance spectroscopy: Study of metabolic responses in heart tissue and detection of a novel metabolite

机译:高分辨率魔角旋转核磁共振波谱法评价三丁基锡对蛤仔蛤d的毒理作用:心脏组织中代谢反应的研究和新型代谢物的检测

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摘要

Tributyltin (TBT) is a highly toxic pollutant present in many aquatic ecosystems. Its toxicity in mollusks strongly affects their performance and survival. The main purpose of this study was to elucidate the mechanisms of TBT toxicity in clam Ruditapes decussatus by evaluating the metabolic responses of heart tissues, using high-resolution magic angle-spinning nuclear magnetic resonance (HRMAS NMR), after exposure to TBT (10−9, 10−6 and 10−4 M) during 24 h and 72 h. Results show that responses of clam heart tissue to TBT exposure are not dose dependent. Metabolic profile analyses indicated that TBT 10−6 M, contrary to the two other doses tested, led to a significant depletion of taurine and betaine. Glycine levels decreased in all clam groups treated with the organotin. It is suggested that TBT abolished the cytoprotective effect of taurine, betaine and glycine thereby inducing cardiomyopathie. Moreover, results also showed that TBT induced increase in the level of alanine and succinate suggesting the occurrence of anaerobiosis particularly in clam group exposed to the highest dose of TBT. Taken together, these results demonstrate that TBT is a potential toxin with a variety of deleterious effects on clam and this organotin may affect different pathways depending to the used dose.The main finding of this study was the appearance of an original metabolite after TBT treatment likely N-glycine-N′-alanine. It is the first time that this molecule has been identified as a natural compound. Its exact role is unknown and remains to be elucidated. We suppose that its formation could play an important role in clam defense response by attenuating Ca2+ dependent cell death induced by TBT. Therefore this compound could be a promising biomarker for TBT exposure.
机译:三丁基锡(TBT)是存在于许多水生生态系统中的剧毒污染物。它在软体动物中的毒性强烈影响它们的性能和存活率。这项研究的主要目的是通过使用高分辨率魔角自旋核磁共振(HRMAS NMR)评估暴露于TBT后的心脏组织的代谢反应来评估蛤仔Ruditapes decussatus中TBT毒性的机制(10 < sup> -9 ,10 -6 和10 −4 M)分别在24小时和72小时内发生。结果表明,蛤heart心脏组织对TBT暴露的反应与剂量无关。代谢谱分析表明,与所测试的其他两个剂量相反,TBT 10 -6 M导致牛磺酸和甜菜碱的大量消耗。在用有机锡处理的所有蛤类组中,甘氨酸水平均下降。提示TBT消除了牛磺酸,甜菜碱和甘氨酸的细胞保护作用,从而诱导了心肌病。此外,结果还表明,TBT引起的丙氨酸和琥珀酸水平增加,这表明厌氧菌的发生,特别是在暴露于最高剂量的TBT的蛤group组中。综上所述,这些结果表明,TBT是一种潜在的毒素,对蛤类具有多种有害作用,并且这种有机锡可能会根据所使用的剂量而影响不同的途径。 N-甘氨酸-N'-丙氨酸。这是该分子首次被鉴定为天然化合物。它的确切作用是未知的,有待阐明。我们推测其形成可能通过减弱TBT诱导的Ca 2 + 依赖性细胞死亡而在蛤的防御反应中起重要作用。因此,该化合物可能是TBT暴露的有前途的生物标志物。

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