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Hydrophobic Organic Matter Promotes Coxsackievirus B5 Stabilization and Protection from Heat

机译:疏水性有机物促进CoxSackeivirus B5稳定化和免受热量的保护

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In urban rivers, many of which are used for drinking water production, viruses encounter a range of particulate, colloidal, and dissolved organic and inorganic compounds. To date, the impact of environmental organic matter on virus persistence in the environment has received little attention. In the present study, fresh water was fractioned to separate particulate natural organic matter from dissolved forms. Each fraction was tested for its ability to promote coxsackievirus B5 resistance to heat inactivation. Our results demonstrate that, at natural concentrations, environmental waters contain particulate or dissolved compounds that are able to protect viruses from heat. We also show that hydrophobic compounds promote an efficient protection against heat inactivation. This study suggests that local conditions encountered by viruses in the environment could greatly impact their persistence.
机译:在城市河流中,其中许多用于饮用水生产,病毒遇到一系列颗粒,胶体和溶解的有机和无机化合物。 迄今为止,环境有机物对环境中病毒持久性的影响受到了很少的关注。 在本研究中,分馏出淡水以将颗粒天然有机物与溶解形式分离。 测试每个级分的能力促进CoxSackeivirus B5抗热灭活的能力。 我们的结果表明,在天然浓度下,环境水域含有颗粒或溶解化合物,其能够保护来自热量的病毒。 我们还表明,疏水化合物促进了对热灭活的有效保护。 本研究表明,环境中病毒遇到的当地条件可能会影响其持久性。

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