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首页> 外文期刊>Applied and Environmental Microbiology >Hydrophobic and electrostatic cell surface properties of Cryptosporidium parvum.
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Hydrophobic and electrostatic cell surface properties of Cryptosporidium parvum.

机译:小隐孢子虫的疏水和静电细胞表面特性。

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摘要

Microbial adhesion to hydrocarbons and microelectrophoresis were investigated in order to characterize the surface properties of Cryptosporidium parvum. Oocysts exhibited low removal rates by octane (only 20% on average), suggesting that the Cryptosporidium sp. does not demonstrate marked hydrophobic properties. A zeta potential close to -25 mV at pH 6 to 6.5 in deionized water was observed for the parasite. Measurements of hydrophobicity and zeta potential were performed as a function of pH and ionic strength or conductivity. Hydrophobicity maxima were observed at extreme pH values, with 40% of adhesion of oocysts to octane. It also appeared that ionic strength (estimated by conductivity) could influence the hydrophobic properties of oocysts. Cryptosporidium oocysts showed a pH-dependent surface charge, with zeta potentials becoming less negative as pH was reduced, starting at -35 mV for alkaline pH and reaching 0 at isoelectric points for pH 2.5. On the other hand, variation of surface charge with respect to conductivity of the suspension tested in this work was quite small. The knowledge of hydrophobic properties and surface charge of the parasite provides information useful in, for example, the choice of various flocculation treatments, membrane filters, and cleaning agents in connection with oocyst recovery.
机译:为了表征小隐隐孢子虫的表面特性,研究了微生物对碳氢化合物的粘附力和微电泳。卵囊的辛烷去除率很低(平均仅为20%),表明隐孢子虫属。没有显示出明显的疏水性。观察到该寄生虫在去离子水中的pH为6至6.5时zeta电位接近-25 mV。根据pH和离子强度或电导率进行疏水性和ζ电势的测量。在极端pH值下观察到最大疏水性,卵囊与辛烷的粘附率为40%。似乎离子强度(通过电导率估算)可能会影响卵囊的疏水性。隐孢子虫卵囊显示出pH依赖性表面电荷,随着pH降低,ζ电位变得越来越负,碱性pH为-35 mV,pH 2.5等电点为0。另一方面,在这项工作中测试的悬浮液的表面电荷相对于电导率的变化很小。寄生物的疏水性和表面电荷的知识提供了有用的信息,例如,在与卵囊回收有关的各种絮凝处理,膜过滤器和清洁剂的选择中。

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