[1] WU S, ZHANG Y, LIN Z, et al.Global burden of colorectal cancer in 2022 and projections to 2050: incidence and mortality estimates from GLOBOCAN[J]. BMC Cancer, 2025, 25: 1770. [2] BUFILL J A.Colorectal cancer: Evidence for distinct genetic categories based on proximal or distal tumor location[J]. Ann Intern Med,1990,113(10):779-788. [3] TRAN B,KOPETZ S,TIE J,et al.Impact of BRAF mutation and microsatellite instability on the pattern of metastatic spread and prognosis in metastatic colorectal cancer[J]. Cancer,2011,117(20):4623-4632. [4] Glebov OK, Rodriguez LM, Nakahara K, Jenkins J, Cliatt J, Humbyrd CJ, DeNobile J, Soballe P, Simon R, Wright G et al: Distinguishing right from left colon by the pattern of gene expression. Cancer Epidemiol Biomarkers Prev 2003, 12(8):755-762. [5] WONG S H,YU J.Gut microbiota in colorectal cancer: Mechanisms of action and clinical applications[J]. Nat Rev Gastroenterol Hepatol,2019,16(11):690-704. [6] OLOVO C V,HUANG X,ZHENG X,et al.Faecal microbial biomarkers in early diagnosis of colorectal cancer[J]. J Cell Mol Med,2021,25(23):10783-10797. [7] DE SOUZA J B,BRELAZ-DE-CASTRO M C A,CAVALCANTI I M F. Strategies for the treatment of colorectal cancer caused by gut microbiota[J]. Life Sci,2022,290:120202. [8] ZHANG Y,HOFFMEISTER M,WECK M N,et al.Helicobacter pylori infection and colorectal cancer risk: Evidence from a large population-based case-control study in Germany[J]. Am J Epidemiol,2012,175(5):441-450. [9] KOHOUTOVA D,SMAJS D,MORAVKOVA P,et al.Escherichia coli strains of phylogenetic group B2 and D and bacteriocin production are associated with advanced colorectal neoplasia[J]. BMC Infect Dis,2014,14:733. [10] GAO Z,GUO B,GAO R,et al.Microbiota disbiosis is associated with colorectal cancer[J]. Front Microbiol,2015,6:20. [11] MIYAKE T,MORI H,YASUKAWA D,et al.The comparison of fecal microbiota in left-side and right-side human colorectal cancer[J]. Eur Surg Res,2021,62(4):248-254. [12] LAUDADIO I,FULCI V,PALONE F,et al.Quantitative assessment of shotgun metagenomics and 16S rDNA amplicon sequencing in the study of human gut microbiome[J]. OMICS,2018,22(4):248-254. [13] IMPERIAL R,AHMED Z,TOOR O M,et al.Comparative proteogenomic analysis of right-sided colon cancer,left-sided colon cancer and rectal cancer reveals distinct mutational profiles[J]. Mol Cancer,2018,17(1):177. [14] BAI J,BARANDOUZI Z A,ROWCLIFFE C,et al.Gut microbiome and its associations with acute and chronic gastrointestinal toxicities in cancer patients with pelvic radiation therapy: A systematic review[J]. Front Oncol,2021,11:745262. [15] OH B,EADE T,LAMOURY G,et al.The gut microbiome and gastrointestinal toxicities in pelvic radiation therapy: A clinical review[J]. Cancers,2021,13(10):2353. [16] GUPTA A,DHAKAN D B,MAJI A,et al.Association of Flavonifractor plautii,a flavonoid-degrading bacterium,with the gut microbiome of colorectal cancer patients in India[J]. mSystems,2019,4(6):e00438-e00419. [17] YACHIDA S,MIZUTANI S,SHIROMA H,et al.Metagenomic and metabolomic analyses reveal distinct stage-specific phenotypes of the gut microbiota in colorectal cancer[J]. Nat Med,2019,25(6):968-976. [18] YU J,FENG Q,WONG S H,et al.Metagenomic analysis of faecal microbiome as a tool towards targeted non-invasive biomarkers for colorectal cancer[J]. Gut,2017,66(1):70-78. [19] CHONG J,LIU P,ZHOU G,et al.Using MicrobiomeAnalyst for comprehensive statistical,functional,and meta-analysis of microbiome data[J]. Nat Protoc,2020,15(3):799-821. [20] MCMURDIE P J,HOLMES S.Phyloseq: an R package for reproducible interactive analysis and graphics of microbiome census data[J]. PLoS One,2013,8(4):e61217. [21] KURTZ Z D,MÜLLER C L,MIRALDI E R,et al. Sparse and compositionally robust inference of microbial ecological networks[J]. PLoS Comput Biol,2015,11(5):e1004226. [22] MALLICK H,RAHNAVARD A,MCIVER L J,et al.Multivariable association discovery in population-scale meta-omics studies[J]. PLoS Comput Biol,2021,17(11):e1009442. [23] LUO W,GUO S,ZHOU Y,et al.Hepatocellular carcinoma: How the gut microbiota contributes to pathogenesis,diagnosis,and therapy[J]. Front Microbiol,2022,13:873160. [24] LAI Y,DHINGRA R,ZHANG Z,et al.Toward elucidating the human gut microbiota-brain axis: Molecules,biochemistry,and implications for health and diseases[J]. Biochemistry,2022,61(24):2806-2821. [25] LI C,LIANG Y,QIAO Y.Messengers from the gut: Gut microbiota-derived metabolites on host regulation[J]. Front Microbiol,2022,13:863407. [26] MIRZA A,MAO-DRAAYER Y.The gut microbiome and microbial translocation in multiple sclerosis[J]. Clin Immunol,2017,183:213-224. [27] OGINO S,GOEL A.Molecular classification and correlates in colorectal cancer[J]. J Mol Diagn,2008,10(1):13-27. [28] SMITH K J,JOHNSON K A,BRYAN T M,et al.The APC gene product in normal and tumor cells[J]. Proc Natl Acad Sci U S A,1993,90(7):2846-2850. [29] LYNCH H T,SMYRK T C.Classification of familial adenomatous polyposis: a diagnostic nightmare[J]. Am J Hum Genet,1998,62(6):1288-1289. [30] LYNCH H T,LYNCH J F,SHAW T G,et al.HNPCC (lynch syndrome): Differential diagnosis,molecular genetics and management-a review[J]. Hered Cancer Clin Pract,2003,1(1):7. [31] WATANABE T,KOBUNAI T,TODA E,et al.Distal colorectal cancers with microsatellite instability (MSI) display distinct gene expression profiles that are different from proximal MSI cancers[J]. Cancer Res,2006,66(20):9804-9808. [32] SLATTERY M L,CURTIN K,WOLFF R K,et al.A comparison of colon and rectal somatic DNA alterations[J]. Dis Colon Rectum,2009,52(7):1304-1311. [33] YANG S Y,CHO M S,KIM N K.Difference between right-sided and left-sided colorectal cancers: From embryology to molecular subtype[J]. Expert Rev Anticancer Ther,2018,18(4):351-358. [34] PASCHKE S,JAFAROV S,STAIB L,et al.Are colon and rectal cancer two different tumor entities? A proposal to abandon the term colorectal cancer[J]. Int J Mol Sci,2018,19(9):2577. [35] GUINNEY J,DIENSTMANN R,WANG X,et al.The consensus molecular subtypes of colorectal cancer[J]. Nat Med,2015,21(11):1350-1356. [36] GALON J,COSTES A,SANCHEZ-CABO F,et al.Type,density,and location of immune cells within human colorectal tumors predict clinical outcome[J]. Science,2006,313(5795):1960-1964. [37] OGINO S,NOSHO K,IRAHARA N,et al.Lymphocytic reaction to colorectal cancer is associated with longer survival,independent of lymph node count,microsatellite instability,and CpG island methylator phenotype[J]. Clin Cancer Res,2009,15(20):6412-6420. [38] RIBIC C M,SARGENT D J,MOORE M J,et al.Tumor microsatellite-instability status as a predictor of benefit from fluorouracil-based adjuvant chemotherapy for colon cancer[J]. N Engl J Med,2003,349(3):247-257. [39] PASSARDI A,CANALE M,VALGIUSTI M,et al.Immune checkpoints as a target for colorectal cancer treatment[J]. Int J Mol Sci,2017,18(6):1324. [40] SHENG Q,DU H,CHENG X,et al.Characteristics of fecal gut microbiota in patients with colorectal cancer at different stages and different sites[J]. Oncol Lett,2019,18(5):4834-4844. [41] SUI X,CHEN Y,LIU B,et al.The relationship between KRAS gene mutation and intestinal flora in tumor tissues of colorectal cancer patients[J]. Ann Transl Med,2020,8(17):1085. [42] PURCELL R V,VISNOVSKA M,BIGGS P J,et al.Distinct gut microbiome patterns associate with consensus molecular subtypes of colorectal cancer[J]. Sci Rep,2017,7(1):11590. [43] LÖWENMARK T,LI X,LÖFGREN-BURSTRÖM A,et al. Parvimonas micra is associated with tumour immune profiles in molecular subtypes of colorectal cancer[J]. Cancer Immunol Immunother,2022,71(10):2565-2575. [44] JANG H J,CHOI J Y,KIM K,et al.Relationship of the lung microbiome with PD-L1 expression and immunotherapy response in lung cancer[J]. Respir Res,2021,22(1):322. [45] LEE P C,WU C J,HUNG Y W,et al.Gut microbiota and metabolites associate with outcomes of immune checkpoint inhibitor-treated unresectable hepatocellular carcinoma[J]. J Immunother Cancer,2022,10(6):e004779. [46] MILLER P L,CARSON T L.Mechanisms and microbial influences on CTLA-4 and PD-1-based immunotherapy in the treatment of cancer: a narrative review[J]. Gut Pathog,2020,12:43. [47] YOON Y,KIM G,JEON B N,et al.Bifidobacterium strain-specific enhances the efficacy of cancer therapeutics in tumor-bearing mice[J]. Cancers,2021,13(5):957. [48] KARPIŃSKI T M,OŻAROWSKI M,STASIEWICZ M. Carcinogenic microbiota and its role in colorectal cancer development[J]. Semin Cancer Biol,2022,86(Pt 3):420-430. [49] ZHAO L,ZHANG X,ZHOU Y,et al.Parvimonas micra promotes colorectal tumorigenesis and is associated with prognosis of colorectal cancer patients[J]. Oncogene,2022,41(36):4200-4210. |