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1.
Vavilovskii Zhurnal Genet Selektsii ; 26(5): 495-501, 2022 Aug.
Article in English | MEDLINE | ID: mdl-36128574

ABSTRACT

Pseudomonas aeruginosa is one of the most problematic pathogens in medical institutions, which may be due to the ability of this microorganism to exist in a biofilm, which increases its resistance to antimicrobials, as well as its prevalence and survival ability in the external environment. This work aimed to evaluate the antimicrobial susceptibility of P. aeruginosa strains in planktonic and biofilm forms. We studied 20 strains of P. aeruginosa collected during 2018-2021 by specialists from the Laboratory of Microbiome and Microecology of the Scientific Centre for Family Health and Human Reproduction Problems. The identification of strains was carried out using test systems for differentiating gram-negative non-fermenting bacteria (NEFERMtest 24 Erba Lachema s.r.o., Czech Republic), and confirmed by mass spectrometric analysis and 16S rRNA gene sequencing. Antimicrobial activity was assessed by the degree of inhibition of cell growth in planktonic and biofilm forms (on a flat-bottomed 96-well plastic immunological plate). All clinical isolates of P. aeruginosa were biofilm formers, 47.6 % of the isolates were weak biofilm formers, and 52.4 % of the isolates were moderate biofilm formers. Planktonic cells and the forming biofilm of the tested P. aeruginosa strains were carbapenems-resistant. Biofilm formation was suppressed in more than 90 % of cases by the agents of the cephalosporin and aminoglycoside groups. Antimicrobial susceptibility of P. aeruginosa strains in the formed biofilm was significantly lower (p < 0.05). Carbapenems and cephalosporins did not affect the mature biofilms of the tested P. aeruginosa strains in more than 60 % of cases. Only non-beta-lactam antibiotics (ciprofloxacin and amikacin) suppressed the growth of planktonic cells and destroyed the mature biofilm. The revealed differences in the effect of the tested antimicrobials on the P. aeruginosa strains biofilms correlate with resistance to a number of antibiotics. To prevent biofilm formation in the hospital strains of P. aeruginosa, the use of ceftazidime may be recommended, and antimicrobials such as ciprofloxacin and amikacin may be used to affect mature biofilms of P. aeruginosa.

2.
Tsitologiia ; 49(4): 329-39, 2007.
Article in Russian | MEDLINE | ID: mdl-17657947

ABSTRACT

Boophthora erythrocephala is a widely spread species inhabiting both small polluted water-bodies and large rivers. Three populations from Samara region in Russia and from Donetsk and Chernigov regions in the Ukraine have been studied. Five populations of this species in Russia were described earlier (Polyanskaya, Tsapygina, 1968; Petrukhina, 1972). For identification of this species the chromosome map of Adler and Werner (personal communication) was used. Comparison of 8 populations studied was performed. All of them belong to the species B. erythrocephala but everyone has its own individual characteristics. Inversion polymorphism was observed in each population comprising from 88 to 100 %. Mean number of heterozygous inversions per individual is low fluctuating around 3.6. There is one inversion in IIS observed in all populations that proves panmixy among them. Other inversions occur in a part of the individuals.


Subject(s)
Cytogenetic Analysis , Simuliidae/cytology , Simuliidae/genetics , Animals , Chromosome Inversion/statistics & numerical data , Fresh Water/analysis , Genetics, Population , Heterozygote , Karyotyping , Larva/cytology , Larva/genetics , Male , Polymorphism, Genetic , Russia , Ukraine
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