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1. Bayesian risk prediction model for colorectal cancer mortality through integration of clinicopathologic and genomic data

2. Immune cell profiles in the tumor microenvironment of early-onset, intermediate-onset, and later-onset colorectal cancer

3. Coffee Intake of Colorectal Cancer Patients and Prognosis According to Histopathologic Lymphocytic Reaction and T-Cell Infiltrates

4. Tumour budding, poorly differentiated clusters, and T-cell response in colorectal cancer

7. Integrative Genome-Scale DNA Methylation Analysis of a Large and Unselected Cohort Reveals 5 Distinct Subtypes of Colorectal Adenocarcinomas

9. The Amount of Bifidobacterium Genus in Colorectal Carcinoma Tissue in Relation to Tumor Characteristics and Clinical Outcome

12. Data from The Prognostic Role of Macrophage Polarization in the Colorectal Cancer Microenvironment

13. Supplementary Data from Spatial Organization and Prognostic Significance of NK and NKT-like Cells via Multimarker Analysis of the Colorectal Cancer Microenvironment

14. Supplementary Tables S1-S8. Supplementary Figures S1-S12. from The Prognostic Role of Macrophage Polarization in the Colorectal Cancer Microenvironment

15. Data from Spatial Organization and Prognostic Significance of NK and NKT-like Cells via Multimarker Analysis of the Colorectal Cancer Microenvironment

16. Supplementary Tables S1-S10. Supplementary Figures S1-S5. from Prognostic Significance of Immune Cell Populations Identified by Machine Learning in Colorectal Cancer Using Routine Hematoxylin and Eosin–Stained Sections

19. Abstract 684: Body mass index throughout adulthood and incidence of colorectal cancer subclassified by T cell, macrophage, and myeloid cell infiltrates in cancer tissue

20. Desmoplastic Reaction, Immune Cell Response, and Prognosis in Colorectal Cancer

21. Aspirin Synergizes with Regorafenib to Reduce Growth of Colorectal Cancer

22. Spatial Organization and Prognostic Significance of NK and NKT-like Cells via Multimarker Analysis of the Colorectal Cancer Microenvironment

24. Tumor-Immune Partitioning and Clustering (TIPC): an algorithm for identifying tumor-immune cell spatial interaction signatures within the tumor microenvironment

25. Immune cell profiles in the tumor microenvironment of early-onset, intermediate-onset, and later-onset colorectal cancer

26. Smoking and Incidence of Colorectal Cancer Subclassified by Tumor-Associated Macrophage Infiltrates

27. Abstract 2733: Smoking and colorectal cancer Iincidence by tumor microenvironment in cancer tissue

28. Prognostic significance of myeloid immune cells and their spatial distribution in the colorectal cancer microenvironment

29. Association of Fusobacterium nucleatum with Specific T-cell Subsets in the Colorectal Carcinoma Microenvironment

30. The Prognostic Role of Macrophage Polarization in the Colorectal Cancer Microenvironment

31. Coffee Intake and Colorectal Cancer Incidence According to T-Cell Response

33. Prognostic Significance of Immune Cell Populations Identified by Machine Learning in Colorectal Cancer Using Routine Hematoxylin and Eosin–Stained Sections

34. Immune checkpoint inhibitor-associated celiac disease

35. Tumor-Immune Partitioning and Clustering (TIPC) algorithm reveals distinct signatures of tumor-immune cell interactions within the tumor microenvironment

36. Smoking Status at Diagnosis and Colorectal Cancer Prognosis According to Tumor Lymphocytic Reaction

37. 759 IMMUNE CHECKPOINT INHIBITOR-ASSOCIATED CELIAC DISEASE

38. PET Imaging Quantifying 68Ga-PSMA-11 Uptake in Metastatic Colorectal Cancer

39. Smoking and Incidence of Colorectal Cancer Subclassified by Tumor-Associated Macrophage Infiltrates.

40. Association of autophagy status with amount of Fusobacterium nucleatum in colorectal cancer

43. Body Mass Index and Other Anthropomorphic Variables in Relation to Risk of Colorectal Carcinoma Subtypes Classified by Tumor Differentiation Status

44. Multiplexed Immuno‐Profiling of the Colorectal Carcinoma Microenvironment Using Archival Human Tissue

45. Bifidobacterium Genus in Colorectal Carcinoma Tissue in relation to Tumor Characteristics and Patient Survival

46. Tumor Nuclear YAP1 Expression Status and Molecular Characteristics in relation to Immune Response to Colorectal Carcinoma

47. Oncogenic BRAF mutation induces DNA methylation changes in a murine model for human serrated colorectal neoplasia

48. Clinicopathological features of pyloric gland adenomas of the duodenum: a multicentre study of 57 cases.

49. Abstract PR04: Wnt and MAPK pathway activation in conventional and serrated colorectal neoplasia

50. Oncogenic <italic>BRAF</italic> mutation induces DNA methylation changes in a murine model for human serrated colorectal neoplasia.

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