Diagnostic Accuracy of Synovial Calprotectin in Megaprosthetic Reconstructions: A Prospective Cohort Study from a

Panayiotis Gavriil1, Pavlos Altsitzioglou1, Ioannis Trikoupis1

  • 1First Department of Orthopaedics, ATTIKON University General Hospital, National and Kapodistrian University of Athens, 12461 Athens, Greece.

Cancers
|May 27, 2026
PubMed
Abstract

Insights

Synovial calprotectin shows high accuracy in diagnosing periprosthetic joint infection (PJI) in megaprosthesis patients. This neutrophil biomarker aids in challenging cases, offering improved diagnostic value over existing criteria.

Area of Science:

  • Orthopedic Surgery
  • Biomarker Discovery
  • Infectious Diseases

Background:

  • Diagnosing periprosthetic joint infection (PJI) after megaprosthetic reconstruction is challenging due to altered inflammation and limitations of current criteria like the 2018 ICM score.
  • Synovial calprotectin, a neutrophil-derived biomarker, offers potential for improved diagnostic accuracy in this complex setting.

Purpose of the Study:

  • To evaluate the diagnostic performance of synovial calprotectin for PJI in tumor megaprosthesis patients.
  • To compare calprotectin's efficacy with the ICM classification and assess its utility in inconclusive cases and low CRP subgroups.

Main Methods:

  • Prospective study of 20 megaprosthesis patients with suspected PJI.
  • Synovial calprotectin measured via lateral-flow assay (≥ 50 mg/L threshold).
  • Comparison with ICM final classification and infection reference standard over a minimum 1-year follow-up.

Main Results:

  • Synovial calprotectin demonstrated high diagnostic accuracy (92.3% sensitivity, 100% specificity) in the 13 infected cases.
  • It showed substantial agreement with ICM criteria (κ = 0.76) and correctly reclassified 2 of 3 ICM-inconclusive cases.
  • Calprotectin maintained strong performance in patients with low CRP (75% sensitivity, 100% specificity).

Conclusions:

  • Synovial calprotectin is a promising adjunctive biomarker for diagnosing PJI in megaprosthesis patients.
  • It offers high sensitivity and specificity, clarifies inconclusive cases, and performs reliably even with low CRP levels.
  • Further validation in larger cohorts is warranted to support its use in complex megaprosthetic reconstructions.