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首页> 外文期刊>Journal of environmental monitoring: JEM >Enantioselective ecotoxicity of the herbicide dichlorprop and complexes formed with chitosan in two fresh water green algae
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Enantioselective ecotoxicity of the herbicide dichlorprop and complexes formed with chitosan in two fresh water green algae

机译:对两种淡水绿藻中除草剂敌敌畏和与壳聚糖形成的配合物的对映选择性生态毒性

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To reduce the leaching potential, to prevent groundwater contamination and to maintain the efficacy of a pesticide, natural polysaccharides have received increasing attention due to their biocompatibility and useful biological reactivity for controlled release formulations (CRFs) of pesticides. In this paper, the toxicities of the chiral herbicide dichlorprop (DCPP) and its complexes with chitosan molecules (DCPP-CS) and chitosan nanoparticles (DCPP-NP) to two different green algae were determined and compared. The inhibition rates of DCPP, DCPP-CS and DCPP-NP were determined at 24, 48, 72, 96, 120, 144, 168 h, and the results show that (S)-DCPP was more toxic to Chlorella vulgaris than (R)-DCPP, while the (R)-DCPP was more toxic to Scenedesmus obliquus than (S)-DCPP. The study also found that the chiral selectivity of DCPP to Chlorella vulgaris and Scenedesmus obliquus could be changed when DCPP was complexed with chitosan molecules (CS) or chitosan nanoparticles (NP). For Chlorella vulgaris, the order of inhibition was (R)-DCPP-CS > (S)-DCPP-CS and (R)-DCPP-NP > (S)-DCPP-NP; for Scenedesmus obliquus, the order was (S)-DCPP-CS > (R)-DCPP-CS and (S)-DCPP-NP > (R)-DCPP-NP. This phenomenon suggests that the enantioselective behaviors of chiral compounds might shift when interactions with other chiral receptors coexist in different biological environments. Additionally, chitosan molecules and chitosan nanoparticles also showed different toxicities, which could be ascribed to the difference in the physicochemical properties between CS and NP or the differences in the cell walls of the two fresh water green algae.
机译:为了降低浸出潜力,防止地下水污染并保持农药的功效,天然多糖由于其生物相容性和对农药控释制剂(CRF)有用的生物反应性而受到越来越多的关注。本文确定并比较了手性除草剂双氯丙酯(DCPP)及其与壳聚糖分子(DCPP-CS)和壳聚糖纳米粒子(DCPP-NP)的配合物对两种不同绿藻的毒性。在24、48、72、96、120、144、168 h分别测定DCPP,DCPP-CS和DCPP-NP的抑制率,结果表明(S)-DCPP对小球藻的毒性比(R )-DCPP,而(R)-DCPP对斜角藻比(S)-DCPP更具毒性。该研究还发现,当DCPP与壳聚糖分子(CS)或壳聚糖纳米颗粒(NP)络合时,DCPP对小球藻和斜生小球藻的手性选择性可能会改变。对于小球藻,抑制顺序为(R)-DCPP-CS>(S)-DCPP-CS和(R)-DCPP-NP>(S)-DCPP-NP;对于斜角场景,顺序为(S)-DCPP-CS>(R)-DCPP-CS和(S)-DCPP-NP>(R)-DCPP-NP。这种现象表明,当在不同的生物环境中与其他手性受体的相互作用共存时,手性化合物的对映选择性行为可能会发生变化。此外,壳聚糖分子和壳聚糖纳米颗粒还显示出不同的毒性,这可能归因于CS和NP之间的理化特性差异或两种淡水绿藻的细胞壁差异。

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