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Updated: Sep 9, 2025

Author Spotlight: Advancing Mycobacterial Biofilm Protocols for Enhanced Bacterial Metabolism Research
Published on: July 12, 2024
Mycoplasma Biofilms: Characteristics and Control Strategies
Jingyi Liang1, Baoyi Deng1, Weihuo Li1
1School of Animal Science and Technology, Foshan University, Foshan 528225, China.
Abstract:
The Mycoplasmataceae are a family of bacteria that typically cause respiratory, arthritic, and genitourinary disease in humans. Mycoplasma spp. of animal origin are also the causative agents of porcine wheezing disease, chronic respiratory disease and arthritis in chickens and other conditions. These diseases have a significant impact on public health and the economic development of livestock breeding. Clinical prevention and treatment of mycoplasma infections is primarily dependent on the use of antibiotics. However, inappropriate and excessive use of antimicrobials has enabled resistance development that has become a significant clinical concern. Mycoplasma are also robust biofilm producers, and this process is a major factor for the persistence of these infections, especially in conjunction with common antibiotic resistance mechanisms, including target gene mutations and the action of efflux pumps. A mycoplasma biofilm refers to a structured and stable microbial community formed by Mycoplasma spp. adhering to biological or non-biological surfaces under suitable conditions and secreting extracellular polymers (EPS) such as polysaccharides. This process allows the microorganisms to adapt to their surrounding environment and survive during the growth process. These biofilms render bacteria more resistant to antimicrobials than planktonic bacteria, resulting in biofilm-associated infections that are more challenging to eradicate and more likely to recur. The current study reviews progress from the fields of biofilm formation, structure and identification, correlations between biofilms and drug resistance and virulence as well as methods of biofilm prevention and control. Our aim was to provide a reference basis for the subsequent in-depth understanding of the research of mycoplasma biofilms.
Insights
Mycoplasma bacteria form biofilms, increasing their resistance to antibiotics and causing persistent infections in humans and animals. This review explores biofilm formation, drug resistance, and control strategies for Mycoplasma.
Area of Science:
- Microbiology
- Veterinary Medicine
- Infectious Diseases
Background:
- Mycoplasmataceae bacteria cause significant respiratory, arthritic, and genitourinary diseases in humans and animals.
- Antibiotic treatment is primary for Mycoplasma infections, but antimicrobial resistance is a growing concern.
- Mycoplasma species are adept biofilm producers, contributing to persistent infections and antibiotic resistance.
Purpose of the Study:
- To review current knowledge on Mycoplasma biofilm formation, structure, and identification.
- To examine the relationship between Mycoplasma biofilms and antimicrobial resistance, virulence, and infection persistence.
- To summarize effective methods for Mycoplasma biofilm prevention and control.
Main Methods:
- Comprehensive literature review of studies on Mycoplasma biofilms.
- Analysis of research on biofilm development, composition, and associated resistance mechanisms.
- Synthesis of findings on virulence factors and control strategies related to Mycoplasma biofilms.
Main Results:
- Mycoplasma biofilms are structured communities that enhance bacterial survival and resistance to antimicrobials.
- Biofilm formation is linked to target gene mutations and efflux pumps, exacerbating antibiotic resistance.
- Biofilm-associated infections are more difficult to treat and prone to recurrence.
Conclusions:
- Understanding Mycoplasma biofilm dynamics is crucial for developing effective treatment and prevention strategies.
- Targeting biofilm formation presents a promising avenue for combating persistent and drug-resistant Mycoplasma infections.
- This review provides a foundation for future research into Mycoplasma biofilm pathogenesis and control.
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