Somewhat later Ortsehovsky and Stolz on the basis of studies have suggested that there is no direct oligodinami REFLECTION action of silver on the bacterial cell. In their opinion, silver is a carrier of Cl-ioiov by the formation of complex compounds. The positively charged silver nones sum negatively charged C1-ions to the surface of microbial cells, where they are connecting with hydrogen to form hydrochloric acid, causing the "anarchy of the enzyme" in the microbial cells.

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There is evidence that the silver ions by binding nucleic nuclear matter, form nukleinat. They violate these vital functions of bacteria, oxygen is only inhibits the growth of the past. Water temperature also has a great influence on the efficiency of the bactericidal action of the ions, which indicates the significant role of chemical processes in these phenomena. However, these studies did not reveal the cause of death of microorganisms under the influence of silver. Gousse and co-workers suggested that the Ag-ions, like adrenaline, catalytic effect on enzyme systems.

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The same view is held by GN Pershin, T. et al Turpaev A great contribution to solving the problem of antimicrobial action of silver and made of Voratsa Toferna that explain the action of silver oligodynamic disabling enzymes containing SH-and COOH groups. Normal metabolism in bacteria is carried out by different enzymes and enzyme systems associated with each participating in one of the exchange processes. Violation of an enzyme leads to the shutdown of the entire system functions. Found that silver ions bind only those enzymes that are active and the SH-COOH group.

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Blocking the active groups of enzymes causes a change in their function, resulting in metabolic bacteria are killed. Recently, at the Department of Chemistry and Water Technology, studies to elucidate the mechanism of bactericidal action of electrolytic solution of silver, and the study of oxidative and catalytic action.