微塑料:食物链第一营养级的毒性和生物积累

Silvia Mara Haluch, Flavia Caroline Haluch
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摘要

微塑料在自然界中分散在所有的行星隔间中,在生态系统中最偏远的地方也能找到。它们目前被认为是人类世的标志,人类世是由人类在地球上的变化引起的地质时代。尽管它存在于所有的环境隔间中,但它对活细胞及其动力学的真正影响,包括对人体有机体的影响,在科学知识方面仍然存在差距。因此,本研究的目的是在生态系统的代表性生物中采用国际标准化和标准化的方法,分别对微甲壳类动物大水蚤(Daphnia magna)和藻类Desmodesmus subspicatus进行对聚乙烯微球的急性和慢性生态毒性试验。聚乙烯微球是一种广泛用作去皮产品的热塑性塑料,广泛应用于各种化妆品和卫生材料中。他们根据参考标准在新生儿中进行了测试,但也暴露了30天大的成年生物体。对于甲壳类动物,所获得的结果表明,有效浓度对50%的生物(EC50%)产生影响,95%置信度为0.07 g/L,对新生儿的DSC - Observed效应浓度为0.025 g/L。成虫EC50含量为0.025 g/L, DSC含量为0.0025 g/L,表明成虫对增塑剂的抵抗力是成虫的10倍。藻类试验结果显示,DSC为0.05 g/L,与对照相比,抑制藻类生长20.12%。在暴露后甲壳类动物的光学显微镜下,显示聚乙烯微球在生物指示剂的甲壳和消化道内的生物积累,表明微塑料的影响始于食物链的第一营养级。
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Microplastics: toxicity and Bioacumulation at the first trophic levels of the food chain
Microplastics are dispersed in nature in all planetary compartments, and can be found in the most remote places of the Ecosystem. They are currently indicated as markers of the Anthropocene, a geological era caused by human changes on the globe. Even though it is found in all environmental compartments, there are still gaps in scientific knowledge about its real impact on living cells and their dynamics, including in the human organism. Therefore, the objective of the study is to use an internationally standardized and standardized method in representative organisms of the ecosystem, thus using the acute and chronic ecotoxicity test with the microcrustacean Daphnia magna and for the algae Desmodesmus subspicatus, respectively, against polyethylene microspheres, a thermoplastic widely used as an exfoliation product and applied in various cosmetics and hygiene materials. They were tested in neonates according to the reference standards, but 30-day-old adult organisms were also exposed. The results obtained, for the crustaceans, show the Effective Concentration that causes effect in 50% of the organisms (EC50%), with 95% confidence of 0.07 g/L and a DSC – Observed effect concentration of 0.025 g/L for neonates. For the adult specimens, 0.025 g/L of EC50 and 0.0025 g/L of DSC were found, showing that the pups are 10x more resistant to plasticizers compared to the adults. For the algae test, the results showed a DSC of 0.05 g/L, inhibiting 20.12% of algae growth compared to the control. In the optical microscope of the crustaceans after exposure, it showed bioaccumulation of the polyethylene microsphere in the carapace and digestive tract of the bioindicator, showing that the impact of microplastics begins in the first trophic levels of the food chain.
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