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The Impact of Capsid Proteins on Virus Removal and Inactivation During Water Treatment Processes

机译:衣壳蛋白对水处理过程中病毒去除和灭活的影响

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This study examined the effect of the amino acid composition of protein capsids on virus inactivation using ultraviolet (UV) irradiation and titanium dioxide photocatalysis, and physical removal via enhanced coagulation using ferric chloride. Although genomic damage is likely more extensive than protein damage for viruses treated using UV, proteins are still substantially degraded. All amino acids demonstrated significant correlations with UV susceptibility. The hydroxyl radicals produced during photocatalysis are considered nonspecific, but they likely cause greater overall damage to virus capsid proteins relative to the genome. Oxidizing chemicals, including hydroxyl radicals, preferentially degrade amino acids over nucleotides, and the amino acid tyrosine appears to strongly influence virus inactivation. Capsid composition did not correlate strongly to virus removal during physicochemical treatment, nor did virus size. Isoelectric point may play a role in virus removal, but additional factors are likely to contribute.
机译:这项研究检查了蛋白衣壳的氨基酸组成对使用紫外线(UV)辐射和二氧化钛光催化的病毒灭活的影响,以及通过使用氯化铁增强混凝作用的物理去除作用。尽管对于使用紫外线处理的病毒,基因组破坏可能比蛋白质破坏更为广泛,但蛋白质仍会大量降解。所有氨基酸均表现出与紫外线敏感性的显着相关性。在光催化过程中产生的羟基自由基被认为是非特异性的,但相对于基因组,它们可能对病毒衣壳蛋白造成更大的总体损害。包括羟基自由基在内的氧化性化学物质比氨基酸优先降解氨基酸,而氨基酸酪氨酸似乎强烈影响病毒的灭活。衣壳组成与理化处理过程中的病毒去除没有很大关系,病毒大小也没有。等电点可能在病毒清除中起作用,但是其他因素也可能起作用。

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