Nanobacteria show high resistance to gamma irradiation. To further examine their survival in extreme conditions several disinfecting and sterilizing chemicals as well as autoclaving, UV light, microwaves, heating and drying treatments were carried out. The effect of antibiotics used in cell culture were also evaluated. Two forms of nanobacteria were used in the tests: nanobacteria cultured in serum containing medium, and nanobacteria cultured in serum-free medium, the latter being more mineralized. Nanobacteria, having various amounts of apatite on their surfaces, were used to analyze the degree of protection given by the mineral. The chemicals tested included ethanol, glutaraldehyde, formalin, hypochlorite, hydrogen peroxide, hydrochloric acid, sodium hydroxide, detergents, and commercial disinfectants at concentrations generally used for disinfection. After chemical and physical treatments for various times, the nanobacteria were subcultered to detect their survival. The results show unique and wide resistance of nanobacteria to common agents used in disinfection. It can also be seen that the mineralization of the nanobacterial surface furthermore increases the resistance. Survival of nanobacteria is unique among living bacteria, but it can be compared with that observed in spores. Interestingly, nanobacteria have metabolic rate as slow as bacterial spores. A slow metabolic rate and protective structures, like mineral, biofilm and impermeable cell wall, can thus explain the observations made.
[1]
R. Colwell,et al.
Survival strategies of bacteria in the natural environment.
,
1987,
Microbiological reviews.
[2]
Neva Ciftcioglu,et al.
Extraordinary growth phases of nanobacteria isolated from mammalian blood
,
1997,
Optics & Photonics.
[3]
Neva Ciftcioglu,et al.
Nanobacteria: An alternative mechanism for pathogenic intra- and extracellular calcification and stone formation
,
1998
.
[4]
J. Sagripanti,et al.
Comparative sporicidal effects of liquid chemical agents
,
1996,
Applied and environmental microbiology.
[5]
Ramon G. Lee,et al.
Factors promoting survival of bacteria in chlorinated water supplies
,
1988,
Applied and environmental microbiology.
[6]
J Holton,et al.
Efficacy of selected disinfectants against mycobacteria and cryptosporidia.
,
1994,
The Journal of hospital infection.
[7]
T. C. Beaman,et al.
Heat resistance of bacterial spores correlated with protoplast dehydration, mineralization, and thermal adaptation
,
1986,
Applied and Environmental Microbiology.
[8]
Kari K. Akerman,et al.
Nanobacteria from blood: the smallest culturable autonomously replicating agent on Earth
,
1997,
Optics & Photonics.