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Periprosthetic joint infection: what is on the horizon?
Erik N Hansen1, Benjamin Zmistowski, Javad Parvizi
1The Rothman Institute at Thomas Jefferson University, Philadelphia, PA, USA.
Abstract:
Periprosthetic joint infection (PJI) will emerge as one of the most important issues for both orthopedic surgeons and researchers active in the field over the coming decades. Although the rate of PJI has not changed significantly over the past decade, the affected patients (hosts) being treated often present with more comorbidities than in the past, and the organisms responsible for these infections are evolving to become more difficult to treat. Fortunately, though, major strides in basic, translational, and clinical research have occurred in recent years that have armed the clinician with an armamentarium of techniques and technologies to better diagnose, prevent, and treat PJI. Advances in diagnostics, including refinements in established biomarkers, the introduction of point of service tests, developments in molecular techniques, and new techniques in advanced imaging will allow us to correctly identify the infecting pathogens and their virulence factors. Utilizing developed risk indexes to stratify and medically optimize our patients, modifying implants to incorporate antimicrobial and anti-biofilm properties, and developing clinically applicable vaccines and biofilm inhibiting enzymes will address our struggles in preventing PJI. Success of our future treatment strategies will hinge on refining the indications and technique of our current surgical procedures as well as the rational use of biofilm disrupting technologies and photodynamic therapy. Finally, the field of metabolomics, though still relatively in its infancy, likely holds the key to a novel diagnostic and treatment approach to infection and a more profound understanding of the pathophysiology of PJI on the human body.
Insights
Periprosthetic joint infection (PJI) is a growing challenge due to complex patient cases and evolving pathogens. Recent research offers advanced diagnostics, prevention strategies, and treatments to combat PJI effectively.
Area of Science:
- Orthopedics
- Infectious Diseases
- Biomaterials Science
Background:
- Periprosthetic joint infection (PJI) poses a significant and increasing challenge in orthopedic surgery.
- Patients often present with more comorbidities, and pathogens are becoming more resistant to treatment.
- Despite stable infection rates, the complexity of PJI cases is rising.
Purpose of the Study:
- To review recent advancements in the diagnosis, prevention, and treatment of PJI.
- To highlight emerging technologies and strategies for managing PJI.
- To explore future directions, including metabolomics, for PJI research.
Main Methods:
- Review of recent basic, translational, and clinical research on PJI.
- Analysis of advancements in diagnostic biomarkers, molecular techniques, and imaging.
- Evaluation of novel prevention strategies, including implant modification and vaccines.
- Assessment of evolving treatment modalities such as biofilm disruption and photodynamic therapy.
Main Results:
- Diagnostic capabilities are improving with new biomarkers, point-of-service tests, molecular methods, and advanced imaging.
- Prevention strategies are being developed, including risk stratification, antimicrobial implants, vaccines, and biofilm inhibitors.
- Treatment success relies on refining surgical techniques and incorporating biofilm-disrupting technologies and photodynamic therapy.
Conclusions:
- Significant research progress provides new tools to diagnose, prevent, and treat PJI.
- Metabolomics shows promise for future diagnostic and therapeutic approaches to PJI.
- A multidisciplinary approach integrating new technologies is crucial for combating PJI.
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