Interactions of platelets with obesity in relation to lung cancer risk in the UK Biobank cohort
File(s)s12931-023-02561-9.pdf (1.38 MB) UKB_LUNG_PLT_SupplementaryMaterial_RespRes_Accepted.pdf (437.82 KB)
Published version
Supporting information
Author(s)
Christakoudi, Sofia
Tsilidis, Konstantinos
Evangelou, Evangelos
Riboli, Elio
Type
Journal Article
Abstract
Background:
Platelet count (PLT) is associated positively with lung cancer risk but has a more complex association with body mass index (BMI), positive only in women (mainly never smokers) and inverse in men (mainly ever smokers), raising the question whether platelets interact with obesity in relation to lung cancer risk. Prospective associations of platelet size (an index of platelet maturity and activity) with lung cancer risk are unclear.
Methods:
We examined the associations of PLT, mean platelet volume (MPV), and platelet distribution width (PDW) (each individually, per one standard deviation increase) with lung cancer risk in UK Biobank men and women using multivariable Cox proportional hazards models adjusted for BMI and covariates. We calculated Relative Excess Risk from Interaction (RERI) with obese (BMI ≥30 kg/m2), dichotomising platelet parameters at ≥median (sex-specific), and multiplicative interactions with BMI (continuous scale). We examined heterogeneity according to smoking status (never, former, current smoker) and antiaggregant/anticoagulant use (no/yes).
Results:
During a mean follow-up of 10.4 years, 1620 lung cancers were ascertained in 192,355 men and 1495 lung cancers in 218,761 women. PLT was associated positively with lung cancer risk in men (hazard ratio HR=1.14; 95% confidence interval (CI): 1.09–1.20) and women (HR=1.09; 95%CI: 1.03–1.15) but interacted inversely with BMI only in men (RERI=-0.53; 95%CI: -0.80 to -0.26 for high-PLT-obese; HR=0.92; 95%CI=0.88–0.96 for PLTBMI). Only in men, MPV was associated inversely with lung cancer risk (HR=0.95; 95%CI: 0.90–0.99) and interacted positively with BMI (RERI=0.27; 95%CI=0.09–0.45 for high-MPV-obese; HR=1.08; 95%CI=1.04–1.13 for MPVBMI), while PDW was associated positively (HR=1.05; 95%CI: 1.00–1.10), with no evidence for interactions. The associations with PLT were consistent by smoking status, but MPV was associated inversely only in current smokers and PDW positively only in never/former smokers. The interactions with BMI were retained for at least eight years of follow-up and were consistent by smoking status but were attenuated in antiaggregant/anticoagulant users.
Conclusions:
In men, PLT was associated positively and MPV inversely with lung cancer risk and these associations appeared hindered by obesity. In women, only PLT was associated positively, with little evidence for interaction with obesity.
Platelet count (PLT) is associated positively with lung cancer risk but has a more complex association with body mass index (BMI), positive only in women (mainly never smokers) and inverse in men (mainly ever smokers), raising the question whether platelets interact with obesity in relation to lung cancer risk. Prospective associations of platelet size (an index of platelet maturity and activity) with lung cancer risk are unclear.
Methods:
We examined the associations of PLT, mean platelet volume (MPV), and platelet distribution width (PDW) (each individually, per one standard deviation increase) with lung cancer risk in UK Biobank men and women using multivariable Cox proportional hazards models adjusted for BMI and covariates. We calculated Relative Excess Risk from Interaction (RERI) with obese (BMI ≥30 kg/m2), dichotomising platelet parameters at ≥median (sex-specific), and multiplicative interactions with BMI (continuous scale). We examined heterogeneity according to smoking status (never, former, current smoker) and antiaggregant/anticoagulant use (no/yes).
Results:
During a mean follow-up of 10.4 years, 1620 lung cancers were ascertained in 192,355 men and 1495 lung cancers in 218,761 women. PLT was associated positively with lung cancer risk in men (hazard ratio HR=1.14; 95% confidence interval (CI): 1.09–1.20) and women (HR=1.09; 95%CI: 1.03–1.15) but interacted inversely with BMI only in men (RERI=-0.53; 95%CI: -0.80 to -0.26 for high-PLT-obese; HR=0.92; 95%CI=0.88–0.96 for PLTBMI). Only in men, MPV was associated inversely with lung cancer risk (HR=0.95; 95%CI: 0.90–0.99) and interacted positively with BMI (RERI=0.27; 95%CI=0.09–0.45 for high-MPV-obese; HR=1.08; 95%CI=1.04–1.13 for MPVBMI), while PDW was associated positively (HR=1.05; 95%CI: 1.00–1.10), with no evidence for interactions. The associations with PLT were consistent by smoking status, but MPV was associated inversely only in current smokers and PDW positively only in never/former smokers. The interactions with BMI were retained for at least eight years of follow-up and were consistent by smoking status but were attenuated in antiaggregant/anticoagulant users.
Conclusions:
In men, PLT was associated positively and MPV inversely with lung cancer risk and these associations appeared hindered by obesity. In women, only PLT was associated positively, with little evidence for interaction with obesity.
Date Issued
2023-10-17
Date Acceptance
2023-10-10
Citation
Respiratory Research, 2023, 24
ISSN
1465-9921
Publisher
BMC
Journal / Book Title
Respiratory Research
Volume
24
Copyright Statement
© The Author(s) 2023. This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.
License URL
Subjects
Blood Platelets
Lung Neoplasms
Mean Platelet Volume
Obesity
Platelet Count
Platelet Distribution Width
Risk Factor Interaction
Publication Status
Published
Article Number
ARTN 249