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1.
J Urol ; 201(6): 1115-1120, 2019 06.
Article in English | MEDLINE | ID: mdl-30810464

ABSTRACT

PURPOSE: Current prostate specific antigen markers to detect prostate cancer are limited by low specificity for high grade disease. IsoPSA™ is a blood based, structure focused assay which predicts risk by partitioning the isoforms of prostate specific antigen that are linked to cancer in an aqueous 2-phase reagent system. We validated the clinical performance of this assay for identifying high grade disease in a new contemporary biopsy cohort. MATERIALS AND METHODS: We performed a multicenter prospective validation in 271 men scheduled for prostate biopsy at a total of 7 academic and community centers who were enrolled between May 2017 and March 2018. Blood samples were obtained for assay prior to biopsy. The discrimination power of the assay to detect high grade prostate cancer (Gleason 7 or greater) was evaluated by ROC analysis and compared to prior results. Clinical performance was further improved by comparison with multiparametric magnetic resonance imaging-ultrasound vs transrectal ultrasound guided biopsies. RESULTS: The assay AUC was 0.784 for high grade vs low grade cancer/benign histology, which was superior to the AUCs of total prostate specific antigen and percent free prostate specific antigen. If 1,000 patients were biopsied, the assay would have reduced the number of unnecessary biopsies from 705 to 402 (43%) with only 22 missed high grade cancers, of which 7 would have been Gleason sum 4 + 3 or higher. Subset analysis of multiparametric magnetic resonance imaging guided biopsy produced a substantial improvement of the AUC to 0.831. CONCLUSIONS: Validation of the structure based IsoPSA assay demonstrated statistical concordance with previously reported results and verified its superior performance vs concentration based prostate specific antigen and the free-to-total prostate specific antigen ratio. The assay improvement in detecting high grade prostate cancer using multiparametric magnetic resonance imaging-ultrasound guided biopsy may help define a new diagnostic paradigm.


Subject(s)
Prostate-Specific Antigen/blood , Prostatic Neoplasms/blood supply , Hematologic Tests/methods , Humans , Image-Guided Biopsy/methods , Magnetic Resonance Imaging , Male , Neoplasm Grading , Prospective Studies , Prostatic Neoplasms/pathology , Protein Isoforms/blood , Ultrasonography
2.
Eur Urol ; 72(6): 942-949, 2017 12.
Article in English | MEDLINE | ID: mdl-28396176

ABSTRACT

BACKGROUND: IsoPSA is a serum-based assay that predicts prostate cancer (PCa) risk by partitioning isoforms of prostate-specific antigen (PSA) with an aqueous two-phase reagent. OBJECTIVES: To determine the diagnostic accuracy of IsoPSA in identifying the presence or absence of PCa and the presence of high-grade disease in a contemporary biopsy cohort. DESIGN, SETTING, AND PARTICIPANTS: Multicenter prospective study of 261 men scheduled for prostate biopsy at five academic and community centers in the USA enrolled between August 2015 and December 2016. INTERVENTION: Performance of the IsoPSA assay. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: Discrimination power was evaluated using receiver operating characteristic (ROC) analysis. The outcome of the IsoPSA assay was transformed into risk probability using logistic regression. Decision curve analysis (DCA) was used to compare the net benefit of IsoPSA against other clinical protocols. RESULTS AND LIMITATIONS: The overall prevalence was 53% for any PCa and 34% for high-grade PCa. The area under the ROC curve was 0.79 for any cancer versus none and 0.81 for high-grade PCa versus low-grade PCa/benign histology. In this preliminary study, DCA revealed a superior net benefit of IsoPSA against no biopsy, all biopsy, and the modified Prostate Cancer Prevention Trial Risk Calculator 2.0. At a cutoff selected to recommend biopsy, IsoPSA demonstrated a 48% reduction in false-positive biopsies; at a cutoff selected to identity men at low risk of high-grade disease, there was a 45% reduction in the false-positive rate. CONCLUSION: The structure-based IsoPSA assay outperformed concentration-based PSA measurement, and provided a net benefit against other protocols. Once validated, clinical use of IsoPSA could significantly reduce unnecessary biopsies while identifying patients needing treatment. PATIENT SUMMARY: The IsoPSA assay outperformed prostate-specific antigen in predicting the overall risk of prostate cancer and the risk of clinically significant cancer in a preliminary study. The IsoPSA assay could assist in determining the need for prostate biopsy for patients.


Subject(s)
Prostate-Specific Antigen/blood , Prostate/pathology , Prostatic Neoplasms/blood , Prostatic Neoplasms/diagnosis , Aged , Area Under Curve , Biopsy , False Positive Reactions , Humans , Male , Middle Aged , Neoplasm Grading , Predictive Value of Tests , Preliminary Data , Prospective Studies , Prostatic Neoplasms/pathology , Protein Isoforms/blood , ROC Curve
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