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首页> 外文期刊>Environmental Science and Pollution Research >Detection of polystyrene nanoplastics in biological samples based on the solvatochromic properties of Nile red: application in Hydra attenuata exposed to nanoplastics
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Detection of polystyrene nanoplastics in biological samples based on the solvatochromic properties of Nile red: application in Hydra attenuata exposed to nanoplastics

机译:基于尼罗红细胞变色性能的生物样品中聚苯乙烯纳米纳薄剂的检测:在暴露于纳米塑料的Hydra Attenuata中的应用

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摘要

The release of nanoplastics (NP) from the weathering of microplastics is a major concern for the environment. Methods for the detection of NP in biological tissues are urgently needed because of their ability to penetrate not only in tissues but also in cells. A simple fluorescence-based methodology for the detection of polystyrene NP in biological tissues is proposed using the solvatochromic?properties of Nile red. Although NPs alone increased somewhat Nile red fluorescence, a characteristic hypsochromic shift in the emission spectra was found when the dye and NP were incubated with subcellular tissue fraction. To explain this, the probe and NPs (50 and 100?nm) were prepared in the presence of increasing concentrations of two detergents (Tween-20, Triton X-100) as a proxy to phospholipids. The data revealed that both detergents readily increased fluorescence values when added to the NP and Nile red. The addition of NPs in tissue extracts blue-shifted further the emission spectra to 623?nm from the normal Nile red-lipid peak at 660?nm. The fluorescence intensity was proportional to the NP concentration. A methodology is thus proposed for the detection of NPs in laboratory-exposed organisms based on the solvatochromic properties of Nile red. The methodology was used to detect the presence of NP and changes in polar lipid contents in Hydra attenuata exposed to polystyrene NP.
机译:来自微薄的耐候的纳米塑料(NP)的释放是环境的主要关注点。迫切需要对生物组织中NP检测的方法是迫切需要的,因为它们不仅能够在组织中渗透而且在细胞中渗透。用Solvatochromic提出了一种用于检测生物组织中聚苯乙烯NP的简单荧光的方法。尼罗红细胞的性质。虽然NPS单独增加了含量的含量达到了含量的含量,但是当染料和NP与亚细胞组织级分温育时发现发射光谱中的特征性低温偏移。为了解释这一点,在增加两种洗涤剂(Tween-20,Triton X-100)作为磷脂的代理时,制备探针和NPS(50和100≤nm)。数据显示,两种清洁剂在添加到NP和尼罗红外时易于增加荧光值。在组织中添加NPS从660℃的正常尼罗河红脂峰进一步向623〜623〜623Δnm。荧光强度与NP浓度成比例。因此提出了一种基于尼罗红的溶血度特性来检测实验室暴露的生物中NPS的方法。该方法用于检测暴露于聚苯乙烯NP的Hydra Attenuata中NP的存在和极性脂质含量的变化。

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