Critical insights from recent outbreaks of Mycoplasma pneumoniae: decoding the challenges and effective interventions strategies.

Int J Infect Dis

Biotechnology Research Center, Technology Innovation Institute, Abu Dhabi, UAE; Laboratory for Structural Bioinformatics, Center for Biosystems Dynamics Research, RIKEN, Yokohama, Japan. Electronic address:

Published: October 2024

AI Article Synopsis

  • Mycoplasma pneumoniae is a significant respiratory pathogen that poses challenges to public health, particularly due to its increasing antimicrobial resistance, necessitating better surveillance and stewardship programs.* -
  • The study reviews the complexities of M. pneumoniae infections, including variations in disease presentation, advancements in diagnostic technologies like AI, and the need for effective treatment options amid rising resistance.* -
  • It emphasizes the importance of adaptable treatment strategies and proactive management to combat M. pneumoniae, calling for a comprehensive approach that incorporates technology and genomic monitoring.*

Article Abstract

Objectives: Mycoplasma pneumoniae (M. pneumoniae) continues to pose a significant disease burden on global public health as a respiratory pathogen. The antimicrobial resistance among M. pneumoniae strains has complicated the outbreak control efforts, emphasizing the need for robust surveillance systems and effective antimicrobial stewardship programs.

Design: This review comprehensively investigates studies stemming from previous outbreaks to emphasize the multifaceted nature of M. pneumoniae infections, encompassing epidemiological dynamics, diagnostic innovations, antibiotic resistance, and therapeutic challenges.

Results: We explored the spectrum of clinical manifestations associated with M. pneumoniae infections, emphasizing the continuum of disease severity and the challenges in gradating it accurately. Artificial intelligence and machine learning have emerged as promising tools in M. pneumoniae diagnostics, offering enhanced accuracy and efficiency in identifying infections. However, their integration into clinical practice presents hurdles that need to be addressed. Further, we elucidate the pivotal role of pharmacological interventions in controlling and treating M. pneumoniae infections as the efficacy of existing therapies is jeopardized by evolving resistance mechanisms.

Conclusion: Lessons learned from previous outbreaks underscore the importance of adaptive treatment strategies and proactive management approaches. Addressing these complexities demands a holistic approach integrating advanced technologies, genomic surveillance, and adaptive clinical strategies to effectively combat this pathogen.

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Source
http://dx.doi.org/10.1016/j.ijid.2024.107200DOI Listing

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