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Effect of Promoter Region Sequence Variations in Relation to Antibiotic Resistance of Methicillin- Resistant Staphylococcus Aureus
Author(s) -
Farjana Habib,
Dilip Roy,
Momotaj Nity,
Arnaba Saha Chaity,
Anwarul Haque
Publication year - 2021
Publication title -
journal of medical-clinical research and reviews
Language(s) - English
Resource type - Journals
ISSN - 2639-944X
DOI - 10.33425/2639-944x.1243
Subject(s) - sccmec , staphylococcus aureus , microbiology and biotechnology , amikacin , penicillin binding proteins , cefoxitin , antibiotics , penicillin , methicillin resistant staphylococcus aureus , biology , antibiotic resistance , bacitracin , multiple drug resistance , genetics , bacteria
Multidrug resistant bacterial strains are one of the concerns of healthcare sector. Among these, Methicillin- resistant Staphylococcus aureus (MRSA) is one of the major hospitals acquired multidrug resistant strains. MRSA shows it is resistant against methicillin and other penicillin like antibiotics by producing PBP2a (penicillin binding protein 2a) which is encoded by its mecA gene. In this process mecR1 and mecI gene act as regulator of mecA gene. The aim of this study is to identify sequence variance located in mecA, mecR1 and mecI promoter region and the effect of those changes in relation to pathogenicity of these MRSA strains. In this current research, work wound infections samples were collected from 90 patients who were infected during post-surgical mamagement. Samples were collected from Rajshahi Medical college hospital, Bangladesh. In antibiotic sensitivity test, MRSA was found 100% sensitive against only Choramphenicol and Bacitracin. It also shows partial resistance against Amikacin, Impenem, Doxycycline, Gentamycin and Neomycin. In HRM, analysis six types of genotypes (TT, AA, CC, GG, GA and CT) were identified in mecA, mecR1 and mecI genes. Two types of mutation (T>C and G>A) were found in current study. This HRM analysis was further correlate with antibiotic sensitivity test in terms of antibiotic resistance and sequence variance.

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