Women's preferences, willingness-to-pay, and predicted uptake for single-nucleotide polymorphism gene testing to guide personalized breast cancer screening strategies: a discrete choice experiment

Single-nucleotide polymorphism (SNP) gene test is a potential tool for improving the accuracy of breast cancer risk prediction. We seek to measure women's preferences and marginal willingness-to-pay (mWTP) for this new technology. We administered a discrete choice experiment (DCE) to English-sp...

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Veröffentlicht in:Patient preference and adherence 2018-01, Vol.12, p.1837-1852
Hauptverfasser: Wong, Xin Yi, Groothuis-Oudshoorn, Catharina Gm, Tan, Chuen Seng, van Til, Janine A, Hartman, Mikael, Chong, Kok Joon, IJzerman, Maarten J, Wee, Hwee-Lin
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Sprache:eng
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Zusammenfassung:Single-nucleotide polymorphism (SNP) gene test is a potential tool for improving the accuracy of breast cancer risk prediction. We seek to measure women's preferences and marginal willingness-to-pay (mWTP) for this new technology. We administered a discrete choice experiment (DCE) to English-speaking Singaporean women aged 40-69 years without any history of breast cancer, enrolled via door-to-door recruitment with quota sampling by age and ethnicity. DCE attributes comprise: 1) sample type (buccal swab and dried blood spot), 2) person conducting pretest discussion (specialist doctor, non-specialist doctor, and nurse educator), 3) test location (private family clinic, public primary-care clinic, and hospital), and 4) out-of-pocket cost (S$50, S$175, and S$300). Mixed logit model was used to estimate the effect of attribute levels on women's preferences and mWTP. Interactions between significant attributes and respondent characteristics were investigated. Predicted uptake rates for various gene testing scenarios were studied. A total of 300 women aged 52.6±7.6 years completed the survey (100 Chinese, Malay, and Indian women, respectively). Sample type ( =0.046), person conducting pretest discussion, and out-of-pocket cost (
ISSN:1177-889X
1177-889X
DOI:10.2147/PPA.S171348