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  3. Epidemiology and Preventive Medicine / 流行病學與預防醫學研究所
  4. Risk assessment of multistate progression of breast tumor with state-dependent genetic and environmental covariates
 
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Risk assessment of multistate progression of breast tumor with state-dependent genetic and environmental covariates

Journal
Risk Analysis
Journal Volume
34
Journal Issue
2
Pages
367-379
Date Issued
2014
Author(s)
Wu Y.-Y.
Yen M.-F.
Yu C.-P.
Chen, Tony Hsiu Hsi  
DOI
10.1111/risa.12116
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84894228189&doi=10.1111%2frisa.12116&partnerID=40&md5=c11f9e3adedf5cd9b83bc87a0366694f
https://scholars.lib.ntu.edu.tw/handle/123456789/605321
Abstract
Few studies have focused on the different roles risk factors play in the multistate temporal natural course of breast cancer. We proposed a three-state Markov regression model to predict the risk from free of breast cancer (FBC) to the preclinical screen-detectable phase (PCDP) and from the PCDP to the clinical phase (CP). We searched the initiators and promoters affecting onset and subsequent progression of breast tumor to build up a three-state temporal natural history model with state-dependent genetic and environmental covariates. This risk assessment model was applied to a 1 million Taiwanese women cohort. The proposed model was verified by external validation with another independent data set. We identified three kinds of initiators, including the BRCA gene, seven single nucleotides polymorphism, and breast density. ER, Ki-67, and HER-2 were found as promoters. Body mass index and age at first pregnancy both played a role. Among women carrying the BRCA gene, the 10-year predicted risk for the transition from FBC to CP was 25.83%, 20.31%, and 13.84% for the high-, intermediate-, and low-risk group, respectively. The corresponding figures were 1.55%, 1.22%, and 0.76% among noncarriers. The mean sojourn time of staying at the PCDP ranged from 0.82 years for the highest risk group to 6.21 years for the lowest group. The lack of statistical significance for external validation (x(4)2=5.30,p=0.26) revealed the adequacy of our proposed model. The three-state model with state-dependent covariates of initiators and promoters was proposed for achieving individually tailored screening and also for personalized clinical surveillance of early breast cancer.
SDGs

[SDGs]SDG3

Type
journal article

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