Risk-Adapted Strategy Combining Magnetic Resonance Imaging and Prostate-Specific Antigen Density to Individualize

Cagri Akpinar1, Digdem Kuru Oz2, Alkan Oktar3

  • 1Department of Urology, Ankara Etlik City Hospital, Ankara, Turkey.

PubMed
Abstract

Insights

Prostate MRI (PI-RADS 3) combined with prostate-specific antigen density (PSAd) can safely reduce unnecessary prostate biopsies. This approach helps balance avoiding biopsies with the risk of missing clinically significant prostate cancer.

Area of Science:

  • Urology
  • Radiology
  • Oncology

Background:

  • Recent guidelines suggest omitting prostate biopsies for some PI-RADS 3 lesions on multiparametric MRI (mpMRI).
  • Evaluating biopsy strategies using prostate-specific antigen density (PSAd) is crucial to avoid unnecessary procedures while minimizing the risk of missing clinically significant prostate cancer (csPCa).

Purpose of the Study:

  • To assess the efficacy of combining mpMRI and PSAd in refining biopsy decisions for PI-RADS 3 lesions.
  • To quantify the trade-offs between avoiding unnecessary biopsies and the risk of underdiagnosing csPCa.

Main Methods:

  • Retrospective analysis of 616 patients undergoing PSAd and mpMRI before biopsy.
  • Development and evaluation of PI-RADS 3 based strategies combining PSAd and mpMRI.
  • Utilizing Decision Curve Analysis (DCA) to compare the net benefit of different strategies.

Main Results:

  • A strategy combining PI-RADS 4-5 lesions and/or PI-RADS 3 lesions with PSAd ≥ 0.2 demonstrated significant benefits.
  • This strategy avoided 48.2% of unnecessary biopsies and reduced ISUP Grade 1 diagnoses by 51%, with a 17.5% miss rate for ISUP Grade ≥ 2 csPCa.
  • Other effective strategies involved specific PSAd thresholds for PI-RADS 3 and PI-RADS 2 lesions.

Conclusions:

  • mpMRI combined with PSAd-based strategies effectively reduces prostate biopsy rates in PI-RADS 3 lesions.
  • These strategies facilitate informed patient discussions regarding the benefits of avoiding biopsy versus the risk of missing csPCa, aiding personalized biopsy decisions.