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1. Prognostic role of detailed colorectal location and tumor molecular features: analyses of 13,101 colorectal cancer patients including 2994 early-onset cases

2. Molecular Characteristics of Early-Onset Colorectal Cancer According to Detailed Anatomical Locations: Comparison With Later-Onset Cases

3. Supplementary Data from Lynch Syndrome–Associated Breast Cancers: Clinicopathologic Characteristics of a Case Series from the Colon Cancer Family Registry

4. Supplementary Table 1 from BRAF Mutation Status and Survival after Colorectal Cancer Diagnosis According to Patient and Tumor Characteristics

5. Supplementary Tables from Identification of Novel Variants in Colorectal Cancer Families by High-Throughput Exome Sequencing

6. Data from Influence of Smoking, Body Mass Index, and Other Factors on the Preventive Effect of Nonsteroidal Anti-Inflammatory Drugs on Colorectal Cancer Risk

7. Data from Prevalence and Penetrance of Major Genes and Polygenes for Colorectal Cancer

8. Data from Genetic Variation in Prostaglandin E2 Synthesis and Signaling, Prostaglandin Dehydrogenase, and the Risk of Colorectal Adenoma

9. Data from Telomere Length Varies By DNA Extraction Method: Implications for Epidemiologic Research

10. Data from Assessing Tumor Mutations to Gain Insight into Base Excision Repair Sequence Polymorphisms and Smoking in Colon Cancer

11. Supplementary Material from Aspirin Reduces Plasma Concentrations of the Oncometabolite 2-Hydroxyglutarate: Results of a Randomized, Double-Blind, Crossover Trial

13. Supplementary Figure 1 from Identification of Novel Variants in Colorectal Cancer Families by High-Throughput Exome Sequencing

14. Supplementary Table S2 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

15. Supplementary Tables from Prevalence and Penetrance of Major Genes and Polygenes for Colorectal Cancer

16. Supplementary Table S4 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

17. Description of supplementary files from Identification of Novel Variants in Colorectal Cancer Families by High-Throughput Exome Sequencing

18. Data from Genetic Predictors of Circulating 25-Hydroxyvitamin D and Risk of Colorectal Cancer

19. Supplementary Table S6 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

20. Supplementary Table S5 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

21. Appendix - clean version from Prevalence and Penetrance of Major Genes and Polygenes for Colorectal Cancer

22. Supplementary Table 1 from Genetic Variation in the Vitamin D Receptor (VDR) and the Vitamin D–Binding Protein (GC) and Risk for Colorectal Cancer: Results from the Colon Cancer Family Registry

23. Supplementary Tables S1-3 from Mendelian Randomization Study of Body Mass Index and Colorectal Cancer Risk

24. Supplementary Table S1 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

26. Supplementary Tables 1-9, Supplementary Figure 1 from Genetic Variation in Prostaglandin E2 Synthesis and Signaling, Prostaglandin Dehydrogenase, and the Risk of Colorectal Adenoma

27. Data from Mendelian Randomization Study of Body Mass Index and Colorectal Cancer Risk

28. Data from Identification of Novel Variants in Colorectal Cancer Families by High-Throughput Exome Sequencing

29. Data from Aspirin Reduces Plasma Concentrations of the Oncometabolite 2-Hydroxyglutarate: Results of a Randomized, Double-Blind, Crossover Trial

30. Data from Lynch Syndrome–Associated Breast Cancers: Clinicopathologic Characteristics of a Case Series from the Colon Cancer Family Registry

31. Table S2 from Influence of Smoking, Body Mass Index, and Other Factors on the Preventive Effect of Nonsteroidal Anti-Inflammatory Drugs on Colorectal Cancer Risk

32. Supplementary Table S3 from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

33. Data from Prediagnostic Physical Activity and Colorectal Cancer Survival: Overall and Stratified by Tumor Characteristics

34. Supplementary Data and Supplementary Tables 1 and 2 from Genetic Predictors of Circulating 25-Hydroxyvitamin D and Risk of Colorectal Cancer

35. Data from Intake of Dietary Fruit, Vegetables, and Fiber and Risk of Colorectal Cancer According to Molecular Subtypes: A Pooled Analysis of 9 Studies

36. Data from Vitamin D Related Genes, CYP24A1 and CYP27B1, and Colon Cancer Risk

37. Data Supplement from Gene–Environment Interaction Involving Recently Identified Colorectal Cancer Susceptibility Loci

38. Table S1 from Influence of Smoking, Body Mass Index, and Other Factors on the Preventive Effect of Nonsteroidal Anti-Inflammatory Drugs on Colorectal Cancer Risk

39. Data from BRAF Mutation Status and Survival after Colorectal Cancer Diagnosis According to Patient and Tumor Characteristics

40. Supplementary Tables 1 through 3 from Telomere Length Varies By DNA Extraction Method: Implications for Epidemiologic Research

42. Supplementary Table 2 from BRAF Mutation Status and Survival after Colorectal Cancer Diagnosis According to Patient and Tumor Characteristics

43. Data from Gene–Environment Interaction Involving Recently Identified Colorectal Cancer Susceptibility Loci

44. Data from Genetic Variation in the Vitamin D Receptor (VDR) and the Vitamin D–Binding Protein (GC) and Risk for Colorectal Cancer: Results from the Colon Cancer Family Registry

45. Supplementary Table 4 from Characterization of Gene–Environment Interactions for Colorectal Cancer Susceptibility Loci

46. Supplementary Table 1 from Genomic Aberrations Occurring in Subsets of Serrated Colorectal Lesions but not Conventional Adenomas

47. Supplementary Table 2 from Characterization of Gene–Environment Interactions for Colorectal Cancer Susceptibility Loci

48. Supplementary Table 7 from Characterization of Gene–Environment Interactions for Colorectal Cancer Susceptibility Loci

49. Supplementary Figure 1 from Characterization of Gene–Environment Interactions for Colorectal Cancer Susceptibility Loci

50. Data from Confirmation of Linkage to and Localization of Familial Colon Cancer Risk Haplotype on Chromosome 9q22

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