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生物素和糖蛋白涂层微球:研究隐孢子虫在多孔介质中过滤的潜在替代物。

Biotin- and glycoprotein-coated microspheres: potential surrogates for studying filtration of cryptosporidium parvum in porous media.

机构信息

Institute of Environmental Science and Research Ltd., PO Box 29181, Christchurch, New Zealand.

出版信息

Environ Sci Technol. 2012 Nov 6;46(21):11779-87. doi: 10.1021/es302555n. Epub 2012 Oct 11.

DOI:10.1021/es302555n
PMID:22978441
Abstract

Cryptosporidium parvum is a waterborne pathogen, yet no suitable surrogate has been established for quantifying its filtration removal in porous media. Carboxyl polystyrene microspheres with size, density, and shape similar to C. parvum were coated with biotin (free and containing amine, NH(2)) and glycoprotein. These biomolecules have isoelectric points similar to C. parvum (pH ≈ 2), and glycoprotein is a major type of surface protein that oocysts possess. Zeta potential (ζ) and filtration removal of particles in sand of two different grain sizes were examined. Compared to unmodified microspheres, modified microspheres achieved a superior match to the oocysts in ζ, concentration, mass recovery, and collision coefficient. They showed the same log reduction in concentration as oocysts, whereas results from unmodified microspheres deviated by 1 order of magnitude. Of the three types of modified microspheres, glycoprotein-coated microspheres best resembled oocyst concentration, despite having ζ similar to NH(2)-biotin-coated microspheres, suggesting that surface protein also played an important role in particle attachment on solid surfaces. With further validation in environmental conditions, the surrogates developed here could be a cost-effective new tool for assessing oocyst filtration in porous media, for example, to evaluate the performance of sand filters in water and wastewater treatment, water recycling through riverbank filtration, and aquifer recharge.

摘要

微小隐孢子虫是一种经水传播的病原体,但尚未建立合适的替代物来定量评估其在多孔介质中的过滤去除率。本研究用羧基聚苯乙烯微球来模拟微小隐孢子虫的大小、密度和形状,并用生物素(游离态和含氨基态,NH2)和糖蛋白对其进行修饰。这些生物分子的等电点与微小隐孢子虫相似(pH ≈ 2),而糖蛋白是囊孢所具有的主要表面蛋白类型。本文研究了两种不同粒径的沙中带电荷颗粒的过滤去除率和zeta 电位。与未修饰的微球相比,修饰后的微球在zeta 电位、浓度、质量回收率和碰撞系数方面与囊孢更匹配。修饰后的微球的浓度对数减少与囊孢相同,而未修饰微球的结果则相差 1 个数量级。在这三种修饰后的微球中,尽管糖蛋白修饰的微球zeta 电位与含氨基态生物素修饰的微球相似,但与囊孢浓度最匹配,这表明表面蛋白在颗粒在固体表面附着过程中也起着重要作用。在进一步验证环境条件后,这里开发的替代物可以成为一种用于评估多孔介质中囊孢过滤的经济有效的新工具,例如,评估水和废水处理中砂滤器的性能、通过河岸过滤进行水再循环以及含水层补给。

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