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PMID: 6558024 Published · ppublish English Journal Article

Mechanisms of antibiotic resistance and their dissemination of resistance genes in the hospital environment.

Infection control : IC ·Vol. 4 ·No. 6 ·1983-00-00 ·Pages 444-7

Wiedemann B

Abstract

The dissemination of resistance determinants among bacterial populations depends on ecological and epidemiological properties as well as additional factors: 1) the mechanism of resistance or its specificity toward a certain drug, and 2) the genetic basis in relation to the mobility of the genetic material and its survival in bacteria. From two resistance mechanisms directed toward old-fashioned drugs, namely sulfonamides (Su) and streptomycin (Sm), we can deduce that a resistance mechanism is encoded by a special sort of genetic material. Thus the linked SmSu resistance mediated by a sulfonamide-resistant dihydropteroatsynthetase II and the aminoglycoside phosphotransferase APH-(3") is always located on very small pBP1-like plasmids. Such plasmids survive without selective pressure of drugs in Enterobacteriaceae in the bowel flora of humans and animals. Both resistance determinants can be mediated by a transposon which codes for the production of a dihydropteroatsynthetase I in connection with an aminoglycoside adenylyltransferase AAD-(3"). These two mechanisms are genetically linked as well. The basic structure is a transposon designated Tn2411, which belongs to a whole family of transposons, all including the basic structure; however, their genetic exchange and substitution leads to structures coding for many different enzymatic characters: ANT-(2") (Gentamicin resistance), CAT (Chloramphenicol resistance), AAC-(6') (resistance to all modern aminoglycosides), TEM-1, OXA-1, OXA-2, or PSE (beta-lactam resistance). Resistance to the modern beta-lactamase-stable antibiotics is mediated by mutation in the regulatory genes of chromosomally-determined beta-lactamases. A spread of these resistance mechanisms can be avoided as long as the responsible genes are not located on sufficient structures like small plasmids or efficient transposons.

MeSH Terms
Anti-Bacterial Agents/pharmacology Bacteria/drug effects,genetics Cross Infection/microbiology Drug Resistance, Microbial Genes, Bacterial/drug effects Humans Plasmids/drug effects Streptomycin/pharmacology Sulfonamides/pharmacology
Chemicals
Anti-Bacterial Agents Sulfonamides Streptomycin
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Wiedemann B
Article Info
Journal
Infection control : IC
Abbr.
Infect Control
ISSN
0195-9417
Published
1983-00-00
Pages
444-7
Language
English
Region
United States
NLM ID
8008357
Subset
IM
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