Possible sources of transmission and oral propagation of groups (clusters) of strains of C. albicans can occur between diabetic and non-diabetic consorts. A conjugal genotypic identity exists in most C. albicans-positive couples, that is, both consorts share identical or highly related strains; however, this identity is not couple-specific as seen by the coexistence of clusters in couples and unrelated consorts.
Objectives This study evaluated the incidence of Candida species, and the genetic diversity and virulence of C. albicans of the oral cavity from patients with cleft lip and palate (CLP). Materials and methods Oral samples were investigated by microbiological and species-specific PCR methods. The genetic diversity of C. albicans was established using isoenzyme markers, Nei's statistics, and clustering analysis. Hydrolytic enzymes (SAPs and PLs) were analyzed in vitro. Results Oral colonization by Candida species was observed in 29 patients with CLP (65.9%), and C. albicans was highly prevalent. SAP and PL activities were observed in 100% and 51.9% of isolates, respectively. High genetic diversity and patterns of monoclonal and polyclonal oral colonization by C. albicans were observed among patients with CLP. Two major polymorphic taxa (A and B) and other minor polymorphic taxa (C to J) were identified. Only one of the 16 clusters (taxon A) harbored strains from patients with and without CLP, whereas other clusters harbored strains exclusively from CLP patients. Conclusions The anatomical conditions of the oral cavity of patients with CLP contribute to the high incidence of Candida species (C. albicans, C. krusei, C. tropicalis, and/or Candida spp.). Data suggest high genetic diversity of potentially virulent C. albicans strains in the oral cavity of CLP patients. Clinical relevance Microbiological niches in orofacial clefts can contribute to the emergence of a relative clinical genotypic identity of C. albicans. However, orofacial rehabilitation centers can contribute to the direct and indirect sources of transmission and propagation of Candida species.
Background The genetic variability of 610 S. aureus isolates from the
hands of professional dentists (A), dental clinic environment air (B),
bovine milk from cows with and without mastitis (C), an insufflator for
milking equipment (D) and milking environment air (E) was studied by
isoenzyme genotyping and genetic and cluster analysis.Results Monoclonal and polyclonal patterns of S. aureus were
detected in every bacterial population; however, isolates belonging to the
same strain were not found among the populations, suggesting the genetic
heterogeneity and the intrapopulation spread of strains. Genetic
relationship analysis revealed the co-existence of highly related strains at
low frequency among populations.Conclusion The data suggest that some strains can adapt and colonize new
epidemiologically unrelated habitats. Consequently, the occurrence of an
epidemiological genotypic identity can assume a dynamic character (spread to
new habitats), however infrequently. A tendency of microevolutionary and
genetic divergences among populations of S. aureus from
human sources (AB) and bovine milk (DE), and especially the mammary quarter
(C), is also suggested. This research can contribute to the knowledge on the
distribution and dissemination of strains and the implementation of control
measures and eradication of S. aureus in important dental
clinic environments, as well as animal environments and dairy
production.
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