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A Protocol to Characterize the Morphological Changes of Clostridium difficile in Response to Antibiotic Treatment
Published on: May 25, 2017
Modulating the antibacterial effect of the existing antibiotics along with repurposing drug metformin
Showna Hossain1, Rafat Hossain Rafi1, Farhana Alam Ripa2
1University of Rajshahi, Rajshahi, 6205, Bangladesh.
Abstract:
Owing to the extensive prevalence of resistant bacteria to numerous antibiotic classes, antimicrobial resistance (AMR) poses a well-known hazard to world health. As an alternate approach in the field of antimicrobial drug discovery, repurposing the available medications which are also called antibiotic resistance breakers has been pursued for the treatment of infections with antimicrobial resistance pathogens. In this study, we used Haloperidol, Metformin and Hydroxychloroquine as repurposing drugs in in vitro (Antibacterial Antibiotic Sensitivity Test and Minimum Inhibitory Concentration-MIC) and in vivo (Shigellosis in Swiss albino mice) tests in combination with traditional antibiotics (Oxytetracycline, Erythromycin, Doxycycline, Gentamicin, Ampicillin, Chloramphenicol, and Penicillin) against a group of AMR resistance bacteria (Bacillus cereus, Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus, and Shigella boydii). After observing the results of the conducted in vitro experiments we studied the effects of the above non antibiotic drugs in combination with the said antibiotics. As an repurposing adjuvant antibiotic drug, Metformin exhibited noteworthy activity in almost all in vitro, in vivo and in silico tests (Zone of inhibition for 30 to 43 mm for E.coli in combination with Doxycycline; MIC value decreased 50 µM to 0.781 µM with Doxycycline on S. boydii).In rodents Doxycycline and Metformin showed prominent against Shigellosis in White blood cell count (6.47 ± 0.152 thousand/mm3) and Erythrocyte sedimentation rate (10.5 ± 1.73 mm/hr). Our findings indicated that Metformin and Doxycycline combination has a crucial impact on Shigellosis. The molecular docking study was performed targeting the Acriflavine resistance protein B (AcrB) (PDB ID: 4CDI) and MexA protein (PDB ID: 6IOK) protein with Metformin (met8) drug which showed the highest binding energy with - 6.4 kcal/mol and - 5.5 kcal/mol respectively. Further, molecular dynamics simulation revealed that the docked complexes were relatively stable during the 100 ns simulation period. This study suggest Metformin and other experimented drugs can be used as adjuvants boost up antibiosis but further study is needed to find out the safety and efficacy of this non-antibiotic drug as potent antibiotic adjuvant.
Insights
Metformin and doxycycline show promise in combating antibiotic-resistant bacteria. This study found that combining these drugs with traditional antibiotics significantly enhanced their effectiveness against infections like Shigellosis in mice.
Area of Science:
- Microbiology and Infectious Diseases
- Drug Discovery and Pharmacology
- Computational Biology
Background:
- Antimicrobial resistance (AMR) is a global health threat due to widespread bacterial resistance to antibiotics.
- Repurposing existing drugs as antibiotic resistance breakers offers a promising alternative strategy for treating resistant infections.
Purpose of the Study:
- To evaluate the efficacy of repurposed drugs (Haloperidol, Metformin, Hydroxychloroquine) as adjuvants to traditional antibiotics against AMR pathogens.
- To investigate the in vitro, in vivo, and in silico activity of drug combinations against various resistant bacteria, including Shigella boydii.
Main Methods:
- In vitro tests: Antibacterial Antibiotic Sensitivity Test and Minimum Inhibitory Concentration (MIC).
- In vivo tests: Shigellosis model in Swiss albino mice.
- In silico analysis: Molecular docking and molecular dynamics simulations targeting bacterial resistance proteins (AcrB and MexA).
Main Results:
- Metformin demonstrated significant adjuvant activity across in vitro, in vivo, and in silico evaluations.
- The combination of Metformin and Doxycycline showed a notable impact on Shigellosis in mice, improving white blood cell count and erythrocyte sedimentation rate.
- Molecular docking revealed strong binding affinities of Metformin to AcrB (-6.4 kcal/mol) and MexA (-5.5 kcal/mol), with stable interactions observed during simulations.
Conclusions:
- Metformin, particularly in combination with Doxycycline, shows potential as an effective antibiotic adjuvant to combat AMR.
- Further research is warranted to ascertain the safety and efficacy of Metformin as a non-antibiotic adjuvant for clinical application.
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Types of RNA
Three main types of RNA are involved in protein synthesis: messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). These RNAs perform diverse functions and can be broadly classified as protein-coding or non-coding RNA. Non-coding RNAs play important roles in the regulation of gene expression in response to developmental and environmental changes. Non-coding RNAs in prokaryotes can be manipulated to develop more effective antibacterial drugs for human or animal use.
RNA...

