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1.
J Water Health ; 14(4): 609-16, 2016 Aug.
Article in English | MEDLINE | ID: mdl-27441856

ABSTRACT

In this paper, the disinfection of water is investigated using plasma spark treatment and the results are compared with conventional techniques. Inactivation of the Enterococcus faecalis and Escherichia coli bacteria is considered in the treatment process of water by the plasma spark. For this purpose, many physical and chemical parameters of water are measured and the obtained results demonstrate a reduction of 8-log in colony forming units of E. coli and E. faecalis at 15 minutes and 12 minutes, respectively. The results of this research show that no ozone is produced during the plasma spark treatment. Moreover, inactivation of a large number of bacteria without any change of pH shows that pH is not the cause of the bacterial inactivation. It is concluded that the main causes of the inactivation of bacteria in the treated water are H2O2 molecules and the electrical fields generated by plasma.


Subject(s)
Disinfection/methods , Enterococcus faecalis/isolation & purification , Escherichia coli/isolation & purification , Plasma Gases/chemistry , Water Microbiology , Water Purification/methods , Disinfection/instrumentation , Plasma Gases/adverse effects
2.
Asian Pac J Trop Med ; 7S1: S199-203, 2014 Sep.
Article in English | MEDLINE | ID: mdl-25312121

ABSTRACT

OBJECTIVE: To study genetic bases and morphology of pili in Mycobacterium tuberculosis (M. tuberculosis). METHODS: PCR and sequencing were used to investigate two related pili, Mtp and Flp genes in clinical isolates of M. tuberculosis. The primers were designed and PCR program were set for whole genes amplification. PCR products of the two genes from all isolates were sequenced by an applied biosystems apparatus and the results were analysed by online software. In the other hands, harvested cells from fresh cultures of isolates were undergoing specific sample preparation for sectional and negative staining for transmission electron microscopy. RESULTS: Electrophoresis revealed two specific bonds of 361 bp for Mtp and 150 bp for Flp genes and confirmed primer and PCR conditions designing. There were not any mutations in sequencing results of Mtp and Flp in comparison with reference sequence. Transmission electron microscopy examination revealed two distinct types of pili in the isolates as a bundle-forming pilus and rope-like pilus. From total investigated cells, 10% harbored pili in their structure. CONCLUSIONS: Two genes of pili in all clinical isolates of M. tuberculosis were conserved and two morphological types of pili were detected. We proposed that by targeting pili proteins by a suitable inhibitor, it could affect the pathogenesis especially in resistant forms.

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