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Preparation of Molecularly Imprinted Microspheres as Biomimetic Recognition Material for In Situ Adsorption and Selective Chemiluminescence Determination of Bisphenol A

机译:分子印迹微球作为仿生识别材料的原位吸附和选择性化学发光测定双酚A的制备

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Bisphenol A (BPA) is an endocrine disrupter in environments which can induce abnormal differentiation of reproductive organs by interfering with the action of endogenous gonadal steroid hormones. In this work, the bisphenol A (BPA) molecularly-imprinted microspheres (MIMS) were prepared and used as biomimetic recognition material for in situ adsorption and selective chemiluminescence (CL) determination of BPA. Through non-covalent interaction, the BPA-MIMS was successfully prepared by Pickering emulsion polymerization using a BPA template, 4-vinylpyridine (4-VP) monomer, ethylene glycol dimethacrylate (EGDMA) cross-linker, and a SiO 2 dispersion agent. The characterization of scanning electron microscopy (SEM) and energy-disperse spectroscopy (EDS) showed that the obtained MIMS possessed a regular spherical shape and narrow diameter distribution (25–30 μm). The binding experiment indicated BPA could be adsorbed in situ on the MIMS-packing cell with an apparent maximum amount Q max of 677.3 μg g ?1 . Then BPA could be selectively detected by its sensitive inhibition effect on the CL reaction between luminol and periodate (KIO 4 ), and the inhibition mechanism was discussed to reveal the CL reaction process. The CL intensity was linear to BPA concentrations in two ranges, respectively from 0.5 to 1.5 μg mL ?1 with a detection limit of 8.0 ng mL ?1 (3 σ ), and from 1.5 to 15 μg mL ?1 with a limit of detection (LOD) of 80 ng mL ?1 (3 σ ). The BPA-MIPMS showed excellent selectivity for BPA adsorption and the proposed CL method has been successfully applied to BPA determination in environmental water samples.
机译:双酚A(BPA)是一种环境中的内分泌干扰物,可通过干扰内源性腺激素激素的作用来诱导生殖器官的异常分化。在这项工作中,双酚A(BPA)分子印迹微球(MIMS)的制备并用作仿生识别材料,用于BPA的原位吸附和选择性化学发光(CL)测定。通过非共价相互作用,使用BPA模板,4-乙烯基吡啶(4-VP)单体,乙二醇二甲基丙烯酸酯(EGDMA)交联剂和SiO 2分散剂通过Pickering乳液聚合成功制备了BPA-MIMS。扫描电子显微镜(SEM)和能量分散光谱(EDS)的表征表明,所获得的MIMS具有规则的球形形状和狭窄的直径分布(25–30μm)。结合实验表明,双酚A可以原位吸附在MIMS包装的细胞上,最大表观Q max为677.3μgg?1。通过对鲁米诺与高碘酸盐(KIO 4)之间CL反应的灵敏抑制作用,可以选择性地检测出BPA,并探讨了其抑制机理以揭示CL反应过程。 CL强度与BPA浓度在两个范围内呈线性关系,分别为0.5至1.5μgmLα1(检测限为8.0 ng mLα1(3σ))和1.5至15μgmLα1(检测限为2) (LOD)为80 ng mL?1(3σ)。 BPA-MIPMS对BPA的吸附具有优异的选择性,所提出的CL方法已成功地用于环境水样品中BPA的测定。

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