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Author Spotlight: Advancing Research on Candida albicans Biofilm-Associated Prosthetic Joint Infections
Published on: February 2, 2024
Emerging Concepts in Periprosthetic Joint Infection Research: The Human Microbiome
Nathanael D Heckmann1, McKenzie W Culler1, Michael A Mont2
1Department of Orthopaedic Surgery, Keck School of Medicine of the University of Southern California, Los Angeles, California, United States.
Abstract:
Microorganisms, including bacteria, fungi, and viruses, that reside on and within the human body are collectively known as the human microbiome. Dysbiosis, or disruption in the microbiome, has been implicated in several disease processes, including asthma, obesity, autoimmune diseases, and numerous other conditions. While the Human Microbiome Project and the generation of descriptive studies it inspired established correlations between characteristic patterns in the composition of the microbiome and specific disease phenotypes, current research has begun to focus on elucidating the causal role of the microbiome in disease pathogenesis. Within the field of orthopaedic surgery, researchers have proposed the concept of a "gut-joint axis," whereby the intestinal microbiome influences joint health and the development of diseases, such as osteoarthritis and periprosthetic joint infection (PJI). It is theorized that intestinal dysbiosis increases gut permeability, leading to the translocation of bacteria and their metabolic products into the systemic circulation and the stimulation of proinflammatory response cascades throughout the body, including within the joints. While correlative studies have identified patterns of dysbiotic derangement associated with osteoarthritis and PJI, translational research is needed to clarify the precise mechanisms by which these changes influence disease processes. Additionally, an emerging body of literature has challenged the previously held belief that certain body sites are sterile and do not possess a microbiome, with studies identifying distinct microbial genomic signatures and a core microbiome that varies between anatomic sites. A more thorough characterization of the joint microbiome may have profound implications for our understanding of PJI pathogenesis and our ability to stratify patients based on risk. The purpose of this review was to outline our current understanding of the human microbiome to describe the gut-joint axis and its role in specific pathologies, including PJI, and to highlight the potential of microbiome-based therapeutic interventions in the field of orthopaedics.
Insights
The human microbiome influences joint health, with disruptions linked to osteoarthritis and periprosthetic joint infections (PJI). Research is exploring the gut-joint axis and microbiome-based therapies for orthopaedic conditions.
Area of Science:
- Microbiome research
- Orthopaedic surgery
- Gut-joint axis
Background:
- The human microbiome, comprising bacteria, fungi, and viruses, plays a role in health and disease.
- Microbiome dysbiosis is linked to various conditions, including asthma, obesity, and autoimmune diseases.
- The gut-joint axis concept proposes intestinal microbiome influence on joint health and diseases like osteoarthritis and PJI.
Purpose of the Study:
- To review the current understanding of the human microbiome.
- To describe the gut-joint axis and its role in orthopaedic pathologies, specifically PJI.
- To highlight potential microbiome-based therapeutic interventions in orthopaedics.
Main Methods:
- Literature review of human microbiome research.
- Analysis of studies on the gut-joint axis and its implications for joint diseases.
- Exploration of emerging research on the joint microbiome.
Main Results:
- Correlative studies show links between microbiome dysbiosis and osteoarthritis/PJI.
- Intestinal dysbiosis may increase gut permeability, promoting systemic inflammation affecting joints.
- Research challenges the notion of sterile body sites, revealing site-specific microbiomes.
Conclusions:
- Understanding the gut-joint axis is crucial for elucidating PJI and osteoarthritis pathogenesis.
- Further characterization of the joint microbiome is needed for risk stratification and PJI understanding.
- Microbiome-based therapies hold promise for orthopaedic conditions.
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