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精氨酸作为一种协同的病毒杀伤剂。

Arginine as a synergistic virucidal agent.

机构信息

Aridis Pharmaceuticals, 5941 Optical Court, San Jose, CA 95138, USA.

出版信息

Molecules. 2010 Mar 8;15(3):1408-24. doi: 10.3390/molecules15031408.

Abstract

Development of effective and environmentally friendly disinfectants, or virucidal agents, should help prevent the spread of infectious diseases through human contact with contaminated surfaces. These agents may also be used, if non-toxic to cells and tissues, as chemotherapeutic agents against infectious diseases. We have shown that arginine has a synergistic effect with a variety of virucidal conditions, namely acidic pH and high temperature, on virus inactivation. All of these treatments are effective, however, at the expense of toxicity. The ability of arginine to lower the effective threshold of these parameters may reduce the occurrence of potential toxic side effects. While it is clear that arginine can be safely used, the mechanism of its virus inactivation has not yet been elucidated. Here we examine the damages that viruses suffer from various physical and chemical stresses and their relations to virus inactivation and aggregation. Based on the relationship between the stress-induced structural damages and the infectivity of a virus, we will propose several plausible mechanisms describing the effects of arginine on virus inactivation using the current knowledge of aqueous arginine solution properties.

摘要

开发有效且环保的消毒剂或抗病毒剂,有助于防止传染病通过人类接触污染表面而传播。如果这些试剂对细胞和组织无毒,也可以作为治疗传染病的化疗药物。我们已经证明,精氨酸与多种抗病毒条件(即酸性 pH 值和高温)具有协同作用,可有效灭活病毒。然而,所有这些处理方法都有一定的毒性。精氨酸降低这些参数有效阈值的能力可能会降低潜在毒性副作用的发生概率。虽然精氨酸的使用是安全的,但它的抗病毒机制尚未阐明。在此,我们研究了病毒在各种物理和化学应激下所遭受的损伤,以及它们与病毒失活和聚集的关系。基于应激诱导的结构损伤与病毒感染性之间的关系,我们将根据当前对含精氨酸水溶液性质的了解,提出几种描述精氨酸对病毒失活影响的合理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/390a/6257253/a32c72acd739/molecules-15-01408-g001.jpg

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