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· March 10-12, 2013  the work "Development of systems for water purification and wastewater operating without replacement cartridges, using anodes active nano-structured surface" was awarded the Diploma of II degree with the award silver medal at the cometition "Best innovative project and the best scientific and technical development of the year".

· January 23, 2013 the more active role of structured water in the formation of all kinds of living matter than previously estimated, as a result of theoretical and experimental research, as well as expert discussions of the 6th International Congress "The weak and super-weak fields and radiation in biology and medicine" is defined. The appropriate addition in the section on "living water" of the website has been made on this basis.

· 2-5 July 2012 the company  has taken part in the work of the International Congress "Low and Superlow Fields and Radiations in Medicine and Biology".   

The Congress will cover the latest results and practical activities concerning influence of low and superlow radiations and physical fields (electromagnetic, magnetic, gravitational and acoustic) on biological objects, including ecological and medical, as well as moral and social aspects of the problem. Some plenary sessions with invited lectures will be held, the main work will be conducted in three thematic symposiums. There will be also an exhibition of scientific instruments and laboratory equipment, while humanitarian problems will be discussed at a special workshop.

The Director General V.Andreev has made the presentation "Possible role of water restructuring in weak electric fields by electric  adaptation of microorganisms to stresses"

This research has been tasked to find out the following key issues:

1. Is it possible, considering the inevitable role of mutual electrical effects of biological cells throughout their evolution, to "trick” the microbial population (for cognitive purposes) and cause a complex, vital transformation of microorganisms by an external ("false”) electric stimulation.  

2. Is it possible, considering the inevitable action of the external field on the extracellular environment’s water as a mediator, to understand what will be a direct effector in the planned experiment:

the effects of electric current on the cell, electrically induced chemical changes of medium, the changes of the redox potential of the extracellular water or all of this together.•

3. What are the possible perspectives and specific ways of practical use of the discovered effects in biotechnology.

Resume of the series of studies

1. There are all reasons to talk about the universal phenomenon of electroadaptation of  microorganisms to stress factors as a quite certain fundamental process of regulation of their physiological activity. One can with certainly assume that the mechanism of electroadaptation has  originated and perfected during the evolution by natural selection of microbial populations in the changing environmental conditions, various natural disasters.

2. The external electrical signals as well as changes in transmembrane potentials, induced by different stressors, are launching biophysical and biochemical processes which lead to the excretion of regulatory factor (EF-factor)  into the extracellular medium by microbial cells. This factor, absorbed by the cells (as producers of EF-factor, as native), moves them into the hypobiotic state, contributing to a better surviving of microorganisms during the stress and enhance their viability in the future.

3.   Redox potential reduction of water in the extracellular medium under the influence of the electric field contributes to the achievement of effects, specified in claims 1, 2. That indicates the possible involvement of this process in the electroadaptation of microorganisms to stress. The occurrence of water shortages due to dehydration of the cells or increasing of microbial populations is a basic, in evolutionary terms, probably is a primary process during development of electro-biochemical mechanism of electroadaptation.

 4.   The prospects of the practical implementation of the results are obvious: it is the widespread use of electric treatment of microbial cultures in all the diverse biotechnological processes in which it is important to maintain cell viability, as in the preliminary stages of theprocess, as in the final stages of preparation of ready-made forms of microbiological drugs,for the food , medical or agricultural destination.