Prostate cancer risk stratification improved across multiple ancestries with new polygenic hazard score
Huynh-Le, M.-P.; Karunamuni, R.; Fan, C. C.; Lui, A.; Thompson, W. K.; Martinez, M. E.; Eeles, R. A.; Kote-Jarai, Z.; Muir, K. R.; Lophatananon, A.; Schleutker, J.; Pashayan, N.; Batra, J.; Gronberg, H.; Neal, D. E.; Nordestgaard, B. G.; Tangen, C. M.; MacInnis, R. J.; Wolk, A.; Albanes, D.; Haiman, C. A.; Travis, R. C.; Blot, W. J.; Stanford, J. L.; Mucci, L. A.; West, C. M. L.; Nielsen, S. F.; Kibel, A. S.; Cussenot, O.; Berndt, S. I.; Koutros, S.; Soerensen, K. D.; Cybulski, C.; Grindedal, E. M.; Menegaux, F.; Park, J. Y.; Ingles, S. A.; Maier, C.; Hamilton, R. J.; Rosenstien, B. S.; Lu, Y.
Show abstract
IntroductionProstate cancer risk stratification using single-nucleotide polymorphisms (SNPs) demonstrates considerable promise in men of European, Asian, and African genetic ancestries, but there is still need for increased accuracy. We evaluated whether including additional SNPs in a prostate cancer polygenic hazard score (PHS) would improve associations with clinically significant prostate cancer in multi-ancestry datasets. MethodsIn total, 299 SNPs previously associated with prostate cancer were evaluated for inclusion in a new PHS, using a LASSO-regularized Cox proportional hazards model in a training dataset of 72,181 men from the PRACTICAL Consortium. The PHS model was evaluated in four testing datasets: African ancestry, Asian ancestry, and two of European Ancestry--the Cohort of Swedish Men (COSM) and the ProtecT study. Hazard ratios (HRs) were estimated to compare men with high versus low PHS for association with clinically significant, with any, and with fatal prostate cancer. The impact of genetic risk stratification on the positive predictive value (PPV) of PSA testing for clinically significant prostate cancer was also measured. ResultsThe final model (PHS290) had 290 SNPs with non-zero coefficients. Comparing, for example, the highest and lowest quintiles of PHS290, the hazard ratios (HRs) for clinically significant prostate cancer were 13.73 [95% CI: 12.43-15.16] in ProtecT, 7.07 [6.58-7.60] in African ancestry, 10.31 [9.58-11.11] in Asian ancestry, and 11.18 [10.34-12.09] in COSM. Similar results were seen for association with any and fatal prostate cancer. Without PHS stratification, the PPV of PSA testing for clinically significant prostate cancer in ProtecT was 0.12 (0.11-0.14). For the top 20% and top 5% of PHS290, the PPV was 0.19 (0.15-0.22) and 0.26 (0.19-0.33), respectively. ConclusionWe demonstrate better genetic risk stratification for clinically significant prostate cancer than prior versions of PHS in multi-ancestry datasets. This is promising for implementing precision-medicine approaches to prostate cancer screening decisions in diverse populations.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genetic Factors Associated with Prostate Cancer Conversion from Active Surveillance to Treatment 95%
- Investigating the Role of Neighborhood Socioeconomic Status and Germline Genetics on Prostate Cancer Risk 93%
- Rare coding variants in five DNA damage repair genes associate with timing of natural menopause 89%
Similar papers in this journal
Similar papers in this journal
- Non-coding genetic variants underlying higher prostate cancer risk in men of African ancestry 93%
- The genomic landscape of metastatic castration-resistant prostate cancers reveals multiple distinct genotypes with potential clinical impact 92%
- Role of Specialized mSWI/SNF Complexes in Prostate Cancer Lineage Plasticity 92%
Similar papers in this journal
- Performance of polygenic risk scores for cancer prediction in a racially diverse academic biobank 92%
- Evaluating the impact of modeling choices on the performance of integrated genetic and clinical models 88%
- Impact of genetic counselling strategy on diagnostic yield and workload for whole genome sequencing-based tumour diagnostics 86%
Similar papers in this journal
- Evaluating Approaches for Constructing Polygenic Risk Scores for Prostate Cancer in Men of African and European Ancestry 98%
- Validation and context-dependent effects of a prostate cancer polygenic risk score in the All of Us Research Program 93%
- The contribution of coding variants to the heritability of multiple cancer types using UK Biobank whole-exome sequencing data 89%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.