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A Protocol to Characterize the Morphological Changes of Clostridium difficile in Response to Antibiotic Treatment
Published on: May 25, 2017
Characterization of Bacteriophages Infecting Clinical Isolates of Clostridium difficile
Wichuda Phothichaisri1, Puey Ounjai2, Tanaporn Phetruen1
1Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, Thailand.
Abstract:
Clostridium difficile is recognized as a problematic pathogen, causing severe enteric diseases including antibiotic-associated diarrhea and pseudomembranous colitis. The emergence of antibiotic resistant C. difficile has driven a search for alternative anti-infection modalities. A promising strategy for controlling bacterial infection includes the use of bacteriophages and their gene products. Currently, knowledge of phages active against C. difficile is still relatively limited by the fact that the isolation of phages for this organism is a technically demanding method since bacterial host themselves are difficult to culture. To isolate and characterize phages specific to C. difficile, a genotoxic agent, mitomycin C, was used to induce temperate phages from 12 clinical isolates of C. difficile. Five temperate phages consisting of ΦHR24, ΦHN10, ΦHN16-1, ΦHN16-2, and ΦHN50 were successfully induced and isolated. Spotting assays were performed against a panel of 92 C. difficile isolates to screen for susceptible bacterial hosts. The results revealed that all the C. difficile phages obtained in this work displayed a relatively narrow host range of 0-6.5% of the tested isolates. Electron microscopic characterization revealed that all isolated phages contained an icosahedral head connected to a long contractile tail, suggesting that they belonged to the Myoviridae family. Restriction enzyme analysis indicated that these phages possess unique double-stranded DNA genome. Further electron microscopic characterization revealed that the ΦHN10 absorbed to the bacterial surface via attachment to cell wall, potentially interacting with S-layer protein. Bacteriophages isolated from this study could lead to development of novel therapeutic agents and detection strategies for C. difficile.
Insights
Researchers induced and isolated five bacteriophages active against Clostridium difficile, a problematic pathogen. These phages, belonging to the Myoviridae family, show potential for developing new therapies and detection methods for C. difficile infections.
Area of Science:
- Microbiology
- Virology
- Infectious Diseases
Background:
- Clostridium difficile is a significant pathogen causing severe enteric diseases.
- Antibiotic resistance in C. difficile necessitates alternative anti-infection strategies.
- Bacteriophages offer a promising alternative for controlling bacterial infections.
Purpose of the Study:
- To isolate and characterize bacteriophages specific to Clostridium difficile.
- To address the limited knowledge and technical challenges in isolating C. difficile phages.
- To explore bacteriophages as potential therapeutic agents and detection tools.
Main Methods:
- Induction of temperate phages using mitomycin C from 12 C. difficile clinical isolates.
- Isolation and characterization of five temperate phages (ΦHR24, ΦHN10, ΦHN16-1, ΦHN16-2, ΦHN50).
- Host range screening via spotting assays on 92 C. difficile isolates and electron microscopy.
Main Results:
- Five temperate bacteriophages were successfully induced and isolated.
- All isolated phages exhibited a narrow host range (0-6.5%).
- Electron microscopy confirmed a Myoviridae family classification (icosahedral head, contractile tail) and unique dsDNA genomes.
Conclusions:
- The isolated bacteriophages are potential candidates for developing novel therapeutic agents against C. difficile.
- These phages could be utilized in new diagnostic and detection strategies for C. difficile.
- Further research into phage-bacterial interactions, like ΦHN10 attachment to the cell wall, is warranted.
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