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Medical Device-Associated Infections Caused by Biofilm-Forming Microbial Pathogens and Controlling Strategies
Akanksha Mishra1, Ashish Aggarwal1, Fazlurrahman Khan2,3,4,5
1School of Bioengineering and Biosciences, Lovely Professional University, Phagwara 144001, Punjab, India.
Abstract:
Hospital-acquired infections, also known as nosocomial infections, include bloodstream infections, surgical site infections, skin and soft tissue infections, respiratory tract infections, and urinary tract infections. According to reports, Gram-positive and Gram-negative pathogenic bacteria account for up to 70% of nosocomial infections in intensive care unit (ICU) patients. Biofilm production is a main virulence mechanism and a distinguishing feature of bacterial pathogens. Most bacterial pathogens develop biofilms at the solid-liquid and air-liquid interfaces. An essential requirement for biofilm production is the presence of a conditioning film. A conditioning film provides the first surface on which bacteria can adhere and fosters the growth of biofilms by creating a favorable environment. The conditioning film improves microbial adherence by delivering chemical signals or generating microenvironments. Microorganisms use this coating as a nutrient source. The film gathers both inorganic and organic substances from its surroundings, or these substances are generated by microbes in the film. These nutrients boost the initial growth of the adhering bacteria and facilitate biofilm formation by acting as a food source. Coatings with combined antibacterial efficacy and antifouling properties provide further benefits by preventing dead cells and debris from adhering to the surfaces. In the present review, we address numerous pathogenic microbes that form biofilms on the surfaces of biomedical devices. In addition, we explore several efficient smart antiadhesive coatings on the surfaces of biomedical device-relevant materials that manage nosocomial infections caused by biofilm-forming microbial pathogens.
Insights
Hospital-acquired infections are often caused by bacteria forming biofilms on medical devices. Smart antiadhesive coatings can prevent these biofilms, managing infections in intensive care units (ICUs).
Area of Science:
- Biomedical Engineering
- Infectious Diseases
- Materials Science
Background:
- Hospital-acquired infections (nosocomial infections) are a significant concern, particularly in intensive care units (ICUs).
- Gram-positive and Gram-negative bacteria, responsible for up to 70% of ICU nosocomial infections, often form biofilms as a key virulence factor.
- Biofilm formation is facilitated by conditioning films, which provide initial adherence surfaces and nutrient sources for microbial growth.
Purpose of the Study:
- To review pathogenic microbes that form biofilms on biomedical devices.
- To explore smart antiadhesive coatings for managing nosocomial infections caused by biofilm-forming pathogens.
Main Methods:
- Literature review of pathogenic microbes and biofilm formation on biomedical devices.
- Exploration of smart antiadhesive coating strategies for medical device materials.
Main Results:
- Identified numerous pathogenic microbes capable of forming biofilms on biomedical devices.
- Highlighted the role of conditioning films in promoting bacterial adherence and biofilm development.
- Discussed the potential of smart antiadhesive coatings with antibacterial and antifouling properties.
Conclusions:
- Biofilm formation on biomedical devices is a major challenge in preventing nosocomial infections.
- Smart antiadhesive coatings offer a promising strategy to manage and prevent infections caused by biofilm-forming bacteria on medical devices.
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