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Biology subjects

Kambouris, M. E.

Publications and source records attributed to Kambouris, M. E..

2 recordsLinked to original sources

Effect of microampere-scale wireless conductive microelectrostimulation on Aspergillus fumigatus growth on solid cultures

The effect of microcurrents on facultative microbial pathogens remains controversial. Solid cultures in Sabouraud Glucose Agar of the ubiquitous mold Aspergillus fumigatus were repeatedly treated with a commercially available device performing wireless conductive microelectrostimulation by 3.5 A microcurrent routed by spraying negatively charged air particles onto solid cultures in modified petri dishes. The treated cultures displayed increased growth compared to standard ones, but only as a function of mycelial density and total surface; the radial growth rate of the mycelium remained unaltered. The increased growth was positively related to the duration of the treatment. At the same time, secondary development (new mycelial loci within the dish) was greatly upheld due to treatment, as the spraying created microairstreams dislocating the fungal spores. These results imply perplexed kinetics of mycelial growth both with and without treatment, since the folding of the mycelial mat is observed regularly. Both the fungus' response to the ES and the possible revision of growth kinetics create prospects for biotechnological and bioremediation applications but also imply biomedical considerations, regarding infection dynamics of mycelial fungi and their in situ resistance to immune responses and treatment.

microbiology↗

Introducing multifactorial electroculturomics: Alternating Current Electric Pulses, combined with mild thermal treatment, exhibit antimicrobial or stimulatory effects on bacterial pathogens and enteroviruses, implying prospects for targeted microbiomics applications

AIMSTo surrogate chemical and high-energy microbicidals, Electroceuticals may be used as a stand-alone or combined treatment under the guise of Electroculturomics. METHODS AND RESULTSUsing high and low settings of Intensity and Frequency of a medical-rated instrument (TENS) of alternating current the viability and propagation of seven pathogenic bacteria and one enterovirus of environmental and medical importance were tested in vitro, in order to establish the interaction of electroceuticals and mild pasteurization protocols and identify potential synergies and/or antagonism of these treatments. The combined regimen showed synergy, following the prerogatives of the Bioelectric Effect, and antagonism. High frequency (800Hz) rather than low (2 Hz) seems detrimental, while intensity (10 or 1 mA) seems almost inconsequential, while longer sessions enhance detrimental effects but short exposure may be beneficial. CONCLUSIONSNo single treatment seems optimal for all tested bacteria. High frequency can be effective against low titers of Enterovirus, but at higher titers, the effect may be reversed. Case-specific effects on microbial growth patterns seem to be the norm. SIGNIFICANCE AND IMPACT OF STUDYDiverse mechanisms of microbicidal or stimulatory activity are implied, allowing individualized uses and targeted applications in food and environmental safety, therapeutics and industrial bioprocessing.

microbiology↗