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PMID: 20421535 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

C-reactive protein and risk of lung cancer.

Chaturvedi AK, Caporaso NE, Katki HA, Wong HL, Chatterjee N, Pine SR, Chanock SJ, Goedert JJ, Engels EA

Abstract

Chronic inflammation could play a role in lung carcinogenesis, underscoring the potential for lung cancer prevention and screening. We investigated the association of circulating high-sensitivity C-reactive protein (CRP, an inflammation biomarker) and CRP single nucleotide polymorphisms (SNPs) with prospective lung cancer risk. We conducted a nested case-control study of 592 lung cancer patients and 670 controls with available prediagnostic serum and 378 patients and 447 controls with DNA within the screening arm of the Prostate, Lung, Colorectal, and Ovarian Cancer Screening Trial (N = 77,464). Controls were matched to patients on age, sex, entry year, follow-up time, and smoking. We measured CRP levels in baseline serum samples and genotyped five common CRP SNPs. Elevated CRP levels were associated with increased lung cancer risk (odds ratio [OR], 1.98; 95% CI, 1.35 to 2.89; P-trend < .001 for fourth quartile [Q4, > or = 5.6 mg/L] v Q1 [< 1.0 mg/L]). The CRP association did not differ significantly by histology, follow-up time, or smoking status, but was most apparent for squamous cell carcinomas (OR, 2.92; 95% CI, 1.30 to 6.54), 2 to 5 years before lung cancer diagnosis (OR, 2.33; 95% CI, 1.24 to 4.39), and among former smokers (OR, 2.48; 95% CI, 1.53 to 4.03) and current smokers (OR, 1.90; 95% CI, 1.06 to 3.41). Although CRP SNPs and haplotypes were associated with CRP levels, they were not associated with lung cancer risk. Ten-year standardized absolute risks of lung cancer were higher with elevated CRP levels among former smokers (Q4: 2.55%; 95% CI, 1.98% to 3.27% v Q1: 1.39%; 95% CI, 1.07% to 1.81%) and current smokers (Q4: 7.37%; 95% CI, 5.81% to 9.33% v Q1: 4.03%; 95% CI, 3.01% to 5.40%). Elevated CRP levels are associated with subsequently increased lung cancer risk, suggesting an etiologic role for chronic pulmonary inflammation in lung carcinogenesis.

MeSH Terms
Age Distribution Aged Biomarkers, Tumor/genetics,metabolism C-Reactive Protein/genetics,metabolism Carcinoma, Squamous Cell/blood,epidemiology,pathology Case-Control Studies Cohort Studies Comorbidity Confidence Intervals Female Follow-Up Studies Humans Incidence Linear Models Logistic Models Lung Neoplasms/blood,epidemiology,pathology Male Middle Aged Neoplasm Staging Odds Ratio Reference Values Risk Assessment Sex Distribution Smoking/epidemiology Survival Analysis
Chemicals
Biomarkers, Tumor C-Reactive Protein
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Chaturvedi Anil K
Infections and Immunoepidemiology Branch, Division of Cancer Epidemiology and Genetics, National Cancer Institute, National Institutes of Health, 6120 Executive Blvd., Rockville, MD 20852, USA. chaturva@mail.nih.gov
Caporaso Neil E
Katki Hormuzd A
Wong Hui-Lee
Chatterjee Nilanjan
Pine Sharon R
Chanock Stephen J
Goedert James J
Engels Eric A
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Article Info
Journal
Journal of clinical oncology : official journal of the American Society of Clinical Oncology
Abbr.
J Clin Oncol
ISSN
1527-7755
Published
2010-06-01
Epub
2010-00-26
Pages
2719-26
Language
English
Region
United States
NLM ID
8309333
PMCID
PMC2881850
Subset
IM
Grants
Intramural NIH HHS · United States
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