Risk of prostate cancer in relatives of prostate cancer patients in Sweden: a nationwide cohort study

Background Evidence-based guidance for starting ages of screening for first-degree relatives (FDRs) of patients with prostate cancer (PCa) to prevent stage III/IV or fatal PCa is lacking in current PCa screening guidelines. We aimed to provide evidence for risk-adapted starting age of screening for...

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Hauptverfasser: Xu, Xing (VerfasserIn) , Kharazmi, Elham (VerfasserIn) , Tian, Yu (VerfasserIn) , Mukama, Trasias (VerfasserIn) , Sundquist, Kristina (VerfasserIn) , Sundquist, Jan (VerfasserIn) , Brenner, Hermann (VerfasserIn) , Fallah, Mahdi (VerfasserIn)
Dokumenttyp: Article (Journal)
Sprache:Englisch
Veröffentlicht: June 1, 2021
In: PLoS medicine
Year: 2021, Jahrgang: 18, Heft: 6, Pages: 1-17
ISSN:1549-1676
DOI:10.1371/journal.pmed.1003616
Online-Zugang:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1371/journal.pmed.1003616
Verlag, lizenzpflichtig, Volltext: https://journals.plos.org/plosmedicine/article?id=10.1371/journal.pmed.1003616
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Verfasserangaben:Xing Xu, Elham Kharazmi, Yu Tian, Trasias Mukama, Kristina Sundquist, Jan Sundquist, Hermann Brenner, Mahdi Fallah

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520 |a Background Evidence-based guidance for starting ages of screening for first-degree relatives (FDRs) of patients with prostate cancer (PCa) to prevent stage III/IV or fatal PCa is lacking in current PCa screening guidelines. We aimed to provide evidence for risk-adapted starting age of screening for relatives of patients with PCa. Methods and findings In this register-based nationwide cohort study, all men (aged 0 to 96 years at baseline) residing in Sweden who were born after 1931 along with their fathers were included. During the follow-up (1958 to 2015) of 6,343,727 men, 88,999 were diagnosed with stage III/IV PCa or died of PCa. The outcomes were defined as the diagnosis of stage III/IV PCa or death due to PCa, stratified by age at diagnosis. Using 10-year cumulative risk curves, we calculated risk-adapted starting ages of screening for men with different constellations of family history of PCa. The 10-year cumulative risk of stage III/IV or fatal PCa in men at age 50 in the general population (a common recommended starting age of screening) was 0.2%. Men with ≥2 FDRs diagnosed with PCa reached this screening level at age 41 (95% confidence interval (CI): 39 to 44), i.e., 9 years earlier, when the youngest one was diagnosed before age 60; at age 43 (41 to 47), i.e., 7 years earlier, when ≥2 FDRs were diagnosed after age 59, which was similar to that of men with 1 FDR diagnosed before age 60 (41 to 45); and at age 45 (44 to 46), when 1 FDR was diagnosed at age 60 to 69 and 47 (46 to 47), when 1 FDR was diagnosed after age 69. We also calculated risk-adapted starting ages for other benchmark screening ages, such as 45, 55, and 60 years, and compared our findings with those in the guidelines. Study limitations include the lack of genetic data, information on lifestyle, and external validation. Conclusions Our study provides practical information for risk-tailored starting ages of PCa screening based on nationwide cancer data with valid genealogical information. Our clinically relevant findings could be used for evidence-based personalized PCa screening guidance and supplement current PCa screening guidelines for relatives of patients with PCa. 
650 4 |a Cancer detection and diagnosis 
650 4 |a Cancer risk factors 
650 4 |a Cancer screening 
650 4 |a Cancers and neoplasms 
650 4 |a Medical risk factors 
650 4 |a Prostate cancer 
650 4 |a Screening guidelines 
650 4 |a Sweden 
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