Introduction: All malignancies, including prostate cancer, require accurate diagnosing and staging before making a treatment decision. The introduction of targeted biopsies based on prostate MRI findings has raised prostate biopsy accuracy. Guided biopsies target the tumor itself during the biopsy instead of the most common tumor sites as is the case with a systemic biopsy. Some studies report that targeted biopsies should lower prostate cancer biopsy undergrading and overgrading.Goals: To determine the incidence of prostate cancer biopsy undergrading in patients who underwent a classic systemic biopsy compared to patients who underwent a mpMRI cognitive targeted biopsy.Materials and methods: We identified the patients from our database who underwent a radical prostatectomy at our institution from January 1st, 2021, to June 30th, 2021.There were 112 patients identified. Patients were stratified into two groups based on the type of biopsy that confirmed prostate cancer. The mpMRI (N=50) group had a mpMRI cognitive guided transrectal ultrasound (TRUS) prostate biopsy performed, and the non-mpMRI group (N=62) received a classic, systemic TRUS biopsy. We compared the biopsy results with the final pathological results, and searched for undergrading or overgrading in the biopsies compared to the final histological report.Results: The undergrading was found in 17,7 % (N=11) cases in the non-mpMRI group and in 12,0 % (N=6) of cases in the mpMRI group (p=0,02, Mann-Whitney U test). No overgrading was found in our cohort. All cases of undergrading had Grade Group 1 in the biopsy report and Grade Group 2 in the final specimen report. The charasteristics of patients are listed in Table 1.Discussion and conclusion: In our cohort, the patients who underwent a mpMRI targeted biopsy had a lower undergrading incidence. During a systemic TRUS biopsy, the urologist targets the areas of the prostate where cancer is most commonly located, which is usually the peripheral zone of the prostate. Since different areas of the tumor have different areas of differentiation, only a low-grade part of the tumor is sometimes biopsied, which results in a sampling error. Once the prostate is removed, the whole tumor is analyzed, so the obtained pathological results related to the removed prostate are far more accurate than the analysis of prostate cores obtained by biopsy.
Prostate cancer is the most common cancer in men. Diagnosis of prostate cancer poses a significant challenge, due to several different key parameters that need to be evaluated, such as age, history of prostate specific antigen (PSA), clinical examination and more recently magnetic resonance imaging (MRI). The current diagnostic pathway for prostate cancer has resulted in overdiagnosis and overtreatment as well as underdiagnosis and missed diagnoses in many men. Multiparametric MRI (mp-MRI) of the prostate has been identified as a test that could alleviate these diagnostic errors. Before prostate cancer treatment pathological confirmation is mandatory. Prostate biopsy is an invasive procedure with rare but not negligible potential complications. There are several methods of prostate biopsy of which most common are systemic or planar prostate biopsy and cognitive or targeted MRI-guided prostate biopsy. Multiparametric MRI has demonstrated better accuracy and reproducibility in detecting, locating and evaluating prostate cancer and also sparing some men unnecessary biopsies. Recent studies have shown a mpMRI benefit for better procedure planning regarding prostate cancer location, extent of disease and length of the urethra. There are still some challenges ahead, such as ensuring high-quality execution and reporting of mpMRI and ensuring that this diagnostic pathway is cost-effective. According to the latest urological clinical guidelines mpMRI became fundamental tool in management of prostate cancer. The aim of this study is to give a brief insight in use of mpMRI in prostate cancer diagnosis and treatment
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