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STUDIES ON THE PHYSICAL AND CHEMICAL PROPERTIES OF THE VIRUS OF FOOT-AND-MOUTH DISEASE : III. RESISTANCE TO CHEMICALS.

机译:口蹄疫病毒的理化性质研究:III。耐化学药品。

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摘要

The virus of foot-and-mouth disease exhibits a remarkable resistance to such bactericidal agents as the narcotic solvents (alcohol, ether, chloroform), or such antiseptics as phenol, bichloride of mercury, or cresol, as shown by tests made by others and ourselves. We have shown, however, that the resistance of the incitant to these chemicals is really masked. It is due to the fact that the reagents coagulate the proteins of the medium in which the virus is, as a rule, suspended. As a result the active agent is protected by the coagula which prevents direct contact with the chemicals. On the other hand, if advantage is taken of the periodic phenomenon attending such processes, and coagulation is prevented, the virus can then be brought under direct action of the antiseptics. Under these conditions, the incitant is more sensitive to destruction by the chemicals than is the living staphylococcus. As a corollary, the virus is destroyed as rapidly, or even more so, than are staphylococci by substances such as sodium hydrate (1 to 2 per cent solutions), or antiformin (1 per cent solution) which do not form coagula. We are therefore compelled to contradict the opinion that the extraordinary resistance to certain chemicals of the virus of foot-and-mouth disease, as it ordinarily occurs admixed with proteins, is an indication of its inanimate character. The results of a large series of experiments lead to the conclusion that of a number of antiseptics employed the sodium hydrate in 1 to 2 per cent solutions is an effective virucide. It is capable of killing the virus within 1 minute as shown by tests on cattle and guinea pigs. Furthermore, its effectiveness is not diminished even when the virulent material is admixed with cattle's urine, with manure, or with garden soil. The experimental evidence and the cheapness suggest its use in field practice as a disinfectant.
机译:口蹄疫病毒对诸如麻醉剂(酒精,乙醚,氯仿)之类的杀菌剂,或诸如苯酚,汞的二氯化物或甲酚之类的防腐剂具有显着的抵抗力,这已被其他人和我们自己。但是,我们已经证明,诱剂对这些化学物质的抵抗力确实被掩盖了。由于这样的事实,试剂使通常悬浮病毒的介质的蛋白质凝结。结果,活性剂受到凝结物的保护,该凝结物防止与化学品直接接触。另一方面,如果利用这种过程中的周期性现象,并防止凝结,则可以将病毒带入防腐剂的直接作用下。在这些条件下,与活葡萄球菌相比,诱剂对化学物质的破坏更为敏感。作为必然结果,病毒被葡萄球菌破坏的速度比葡萄球菌快,甚至更多,例如水合钠(1-2%溶液)或抗福明(1%溶液),它们不会形成凝结物。因此,我们被迫与以下观点相矛盾:这种口蹄疫病毒通常与蛋白质混合出现时,对口蹄疫病毒的某些化学物质具有非凡的抵抗力,这表明其无生命。大量实验的结果得出的结论是,在1%至2%的溶液中使用水合钠的许多防腐剂是有效的杀病毒剂。如对牛和豚鼠的测试所示,它能够在1分钟内杀死病毒。此外,即使将毒性物质与牛尿,粪便或花园土壤混合,其功效也不会降低。实验证据和便宜表明其在现场实践中用作消毒剂。

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