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Cited by in CrossRef
For: Nguyen TT, Ung TT, Kim NH, Jung YD. Role of bile acids in colon carcinogenesis. World J Clin Cases 2018; 6(13): 577-588 [PMID: 30430113 DOI: 10.12998/wjcc.v6.i13.577]
URL: https://www.wjgnet.com/1948-5204/full/v6/i13/577.htm
Number Citing Articles
1
R. G. Lopes, S. B. R. do Prado, J. P. Fabi. Nutrition and Cancer Prevention2019; : 261 doi: 10.1039/9781788016506-00261
2
Sandra Caramujo-Balseiro, Carlos Faro, Lina Carvalho. Metabolic pathways in sporadic colorectal carcinogenesis: A new proposalMedical Hypotheses 2021; 148: 110512 doi: 10.1016/j.mehy.2021.110512
3
Promi Das, Simonas Marcišauskas, Boyang Ji, Jens Nielsen. Metagenomic analysis of bile salt biotransformation in the human gut microbiomeBMC Genomics 2019; 20(1) doi: 10.1186/s12864-019-5899-3
4
Chien-Rui Lai, Hisao-Hsien Wang, Hsin-Han Chang, Yu-Ling Tsai, Wen-Chiuan Tsai, Chen-Ray Lee, Chih-Ying Changchien, Yu-Chen Cheng, Sheng-Tang Wu, Ying Chen. Enhancement of Farnesoid X Receptor Inhibits Migration, Adhesion and Angiogenesis through Proteasome Degradation and VEGF Reduction in Bladder CancersInternational Journal of Molecular Sciences 2022; 23(9): 5259 doi: 10.3390/ijms23095259
5
L. M. Krumz, R. B. Gudkova, L. Kh. Indejkina, E. A. Sabelnikova, A. I. Parfenov. Bile acids are a risk factor for colorectal cancerTerapevticheskii arkhiv 2020; 92(2): 93 doi: 10.26442/00403660.2020.02.000457
6
Martin Tobi, Harvinder Talwar, Benita McVicker. Letter: elobixibatting for the long runAlimentary Pharmacology & Therapeutics 2021; 53(6): 768 doi: 10.1111/apt.16270
7
Jagadeesh Menon, Naresh Shanmugam, Mukul Vij, Fadl H. Veerankutty, Ashwin Rammohan, Mohamed Rela. Simultaneous total internal biliary diversion during liver transplantation for progressive familial intrahepatic cholestasis type 1: Standard of care?Liver Transplantation 2024;  doi: 10.1097/LVT.0000000000000351
8
Karol Parchem, Monika Baranowska, Anna Kościelak, Ilona Kłosowska-Chomiczewska, M. Rosário Domingues, Adam Macierzanka, Agnieszka Bartoszek. Effect of oxidation and in vitro intestinal hydrolysis on phospholipid toxicity towards HT29 cell line serving as a model of human intestinal epitheliumFood Research International 2023; 163: 112227 doi: 10.1016/j.foodres.2022.112227
9
Catarina V. Jota Baptista, Ana I. Faustino-Rocha, Fernanda Seixas, Paula A. Oliveira. Encyclopedia of Toxicology2024; : 597 doi: 10.1016/B978-0-12-824315-2.00124-X
10
Xiaotao Zhang, Carrie R. Daniel. Inflammation, Infection, and Microbiome in CancersPhysiology in Health and Disease 2021; : 329 doi: 10.1007/978-3-030-67951-4_11
11
Xuexi Wang, Fakai Bai, Xingjian Niu, Yunzhang Sun, Jidan Ye. The Lipid-Lowering Effect of Dietary Taurine in Orange-Spotted Groupers (Epinephelus coioides) Involves Both Bile Acids and Lipid MetabolismFrontiers in Marine Science 2022; 9 doi: 10.3389/fmars.2022.859428
12
Susanne Naumann, Ute Schweiggert-Weisz, Julia Eglmeier, Dirk Haller, Peter Eisner. In Vitro Interactions of Dietary Fibre Enriched Food Ingredients with Primary and Secondary Bile AcidsNutrients 2019; 11(6): 1424 doi: 10.3390/nu11061424
13
Bonnie Yang Yang, Meena Kishore Sakharkar. Alterations in Gene Pair Correlations as Potential Diagnostic Markers for Colon CancerInternational Journal of Molecular Sciences 2022; 23(20): 12463 doi: 10.3390/ijms232012463
14
Sara D’Amato, Maria Sofia, Marcello Agosta, Giorgia Litrico, Iacopo Sarvà, Gaetano La Greca, Saverio Latteri. The impact of bariatric surgery on colorectal cancer riskSurgery for Obesity and Related Diseases 2023; 19(2): 144 doi: 10.1016/j.soard.2022.10.016
15
Kelly F. Contino, Hariom Yadav, Yusuke Shiozawa. The gut microbiota can be a potential regulator and treatment target of bone metastasisBiochemical Pharmacology 2022; 197: 114916 doi: 10.1016/j.bcp.2022.114916
16
Jessica L. Petrick, Andrea A. Florio, Jill Koshiol, Ruth M. Pfeiffer, Baiyu Yang, Kelly Yu, Chien‐Jen Chen, Hwai‐I Yang, Mei‐Hsuan Lee, Katherine A. McGlynn. Prediagnostic concentrations of circulating bile acids and hepatocellular carcinoma risk: REVEAL‐HBV and HCV studiesInternational Journal of Cancer 2020; 147(10): 2743 doi: 10.1002/ijc.33051
17
Howard Faden. Review and Commentary on the Importance of Bile Acids in the Life Cycle ofClostridioides difficilein Children and AdultsJournal of the Pediatric Infectious Diseases Society 2021; 10(5): 659 doi: 10.1093/jpids/piaa150
18
Kayla Jaye, Chun Guang Li, Dennis Chang, Deep Jyoti Bhuyan. The role of key gut microbial metabolites in the development and treatment of cancerGut Microbes 2022; 14(1) doi: 10.1080/19490976.2022.2038865
19
Monjur Ahmed. Functional, Diagnostic and Therapeutic Aspects of BileClinical and Experimental Gastroenterology 2022; : 105 doi: 10.2147/CEG.S360563
20
Damien P. Belobrajdic, Genevieve James-Martin, Darren Jones, Cuong D. Tran. Soy and Gastrointestinal Health: A ReviewNutrients 2023; 15(8): 1959 doi: 10.3390/nu15081959
21
Tianqi Liu, Yining Liu, Xiangqian Su, Lin Peng, Jiangbo Chen, Pu Xing, Xiaowen Qiao, Zaozao Wang, Jiabo Di, Min Zhao, Beihai Jiang, Hong Qu. Genome-wide transcriptomics and copy number profiling identify patient-specific CNV-lncRNA-mRNA regulatory triplets in colorectal cancerComputers in Biology and Medicine 2023; 153: 106545 doi: 10.1016/j.compbiomed.2023.106545
22
Patrick Niekamp, Chang H. Kim. Microbial Metabolite Dysbiosis and Colorectal CancerGut and Liver 2023; 17(2): 190 doi: 10.5009/gnl220260
23
Dingka Song, Xiuli Wang, Yongjing Ma, Ning-Ning Liu, Hui Wang. Beneficial insights into postbiotics against colorectal cancerFrontiers in Nutrition 2023; 10 doi: 10.3389/fnut.2023.1111872
24
Kulvinder Kochar Kaur, Gautam Nand K. Allahbadia, Mandeep Singh. Mode of Actions of Bile Acids in Avoidance of Colorectal Cancer Development; and their Therapeutic Applications in Cancers - A Narrative ReviewJournal of Pharmacy and Nutrition Sciences 2022; 12: 35 doi: 10.29169/1927-5951.2022.12.04
25
Xiaozhuang Zhou, Shruthi Kandalai, Farzana Hossain, Qingfei Zheng. Tumor microbiome metabolism: A game changer in cancer development and therapyFrontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.933407
26
Li-hua Jin, Zhi-peng Fang, Min-jie Fan, Wen-dong Huang. Bile-ology: from bench to bedsideJournal of Zhejiang University-SCIENCE B 2019; 20(5): 414 doi: 10.1631/jzus.B1900158
27
Shinan Li, Thi Thinh Nguyen, Trong Thuan Ung, Dhiraj Kumar Sah, Seon Young Park, Vinoth-Kumar Lakshmanan, Young Do Jung. Piperine Attenuates Lithocholic Acid-Stimulated Interleukin-8 by Suppressing Src/EGFR and Reactive Oxygen Species in Human Colorectal Cancer CellsAntioxidants 2022; 11(3): 530 doi: 10.3390/antiox11030530
28
Justyna Magdalena Hermanowicz, Iwona Kwiatkowska, Dariusz Pawlak. Important players in carcinogenesis as potential targets in cancer therapy: an updateOncotarget 2020; 11(32): 3078 doi: 10.18632/oncotarget.27689
29
Manuela Cassotta, Danila Cianciosi, Rachele De Giuseppe, Maria Dolores Navarro-Hortal, Yasmany Armas Diaz, Tamara Yuliett Forbes-Hernández, Kilian Tutusaus Pifarre, Alina Eugenia Pascual Barrera, Giuseppe Grosso, Jianbo Xiao, Maurizio Battino, Francesca Giampieri. Possible role of nutrition in the prevention of inflammatory bowel disease–related colorectal cancer: A focus on human studiesNutrition 2023; 110: 111980 doi: 10.1016/j.nut.2023.111980
30
Jing Li, Ai-hua Zhang, Fang-fang Wu, Xi-jun Wang. Alterations in the Gut Microbiota and Their Metabolites in Colorectal Cancer: Recent Progress and Future ProspectsFrontiers in Oncology 2022; 12 doi: 10.3389/fonc.2022.841552
31
Paula A. Oliveira, Ana I. Faustino-Rocha. Handbook of Cancer and Immunology2023; : 1 doi: 10.1007/978-3-030-80962-1_121-1
32
Valentin Titus Grigorean, Anwar Erchid, Ionuţ Simion Coman, Mircea Liţescu. Colorectal Cancer—The “Parent” of Low Bowel ObstructionMedicina 2023; 59(5): 875 doi: 10.3390/medicina59050875
33
Yongkun Fang, Cheng Yan, Qi Zhao, Jiaming Xu, Zhuangzhuang Liu, Jin Gao, Hanjian Zhu, Zhujiang Dai, Daorong Wang, Dong Tang. The roles of microbial products in the development of colorectal cancer: a reviewBioengineered 2021; 12(1): 720 doi: 10.1080/21655979.2021.1889109
34
Jack X. Chen, Boon Lim, Harrison Steel, Yizhi Song, Mengmeng Ji, Wei E. Huang. Redesign of ultrasensitive and robust RecA gene circuit to sense DNA damageMicrobial Biotechnology 2021; 14(6): 2481 doi: 10.1111/1751-7915.13767
35
Leheng Liu, Jingxian Xu, Xianjun Xu, Tiancheng Mao, Wenlu Niu, Xiaowan Wu, Lungen Lu, Hui Zhou. Intestinal Stem Cells Damaged by Deoxycholic Acid via AHR Pathway Contributes to Mucosal Barrier Dysfunction in High-Fat Feeding MiceInternational Journal of Molecular Sciences 2022; 23(24): 15578 doi: 10.3390/ijms232415578
36
Yukihiro Sato, Minoru Kobayashi, Masahiro Ohira, Ryo Funayama, Masamitsu Maekawa, Hideaki Karasawa, Ryosuke Kashiwagi, Yayoi Aoyama, Nariyasu Mano, Shinobu Ohnuma, Michiaki Unno, Keiko Nakayama. Downregulation of ABCC3 activates MAPK signaling through accumulation of deoxycholic acid in colorectal cancer cellsCancer Science 2024;  doi: 10.1111/cas.16132
37
Chenyu Li, Yaquan Liang, Yuan Qiao. Messengers From the Gut: Gut Microbiota-Derived Metabolites on Host RegulationFrontiers in Microbiology 2022; 13 doi: 10.3389/fmicb.2022.863407
38
Jessica L. Petrick, Nelsy Castro-Webb, Hanna Gerlovin, Traci N. Bethea, Shanshan Li, Edward A. Ruiz-Narváez, Lynn Rosenberg, Julie R. Palmer. A Prospective Analysis of Intake of Red and Processed Meat in Relation to Pancreatic Cancer among African American WomenCancer Epidemiology, Biomarkers & Prevention 2020; 29(9): 1775 doi: 10.1158/1055-9965.EPI-20-0048
39
Harika Nalluri, Subbaya Subramanian, Christopher Staley. Intestinal organoids: a model to study the role of microbiota in the colonic tumor microenvironmentFuture Microbiology 2020; 15(16): 1583 doi: 10.2217/fmb-2019-0345
40
Saskia Weber-Stiehl, Lea Järke, Juan Camilo Castrillón-Betancur, Felix Gilbert, Felix Sommer. Mitochondrial Function and Microbial Metabolites as Central Regulators of Intestinal Immune Responses and CancerFrontiers in Microbiology 2022; 13 doi: 10.3389/fmicb.2022.919424
41
Jung Yoon Jang, Eunok Im, Yung Hyun Choi, Nam Deuk Kim. Mechanism of Bile Acid-Induced Programmed Cell Death and Drug Discovery against Cancer: A ReviewInternational Journal of Molecular Sciences 2022; 23(13): 7184 doi: 10.3390/ijms23137184
42
Schuyler D. Vickers, Stephanie A. Shumar, Dominique C. Saporito, Amina Kunovac, Quincy A. Hathaway, Breeanna Mintmier, Judy A. King, Rachel D. King, Vazhaikkurichi M. Rajendran, Aniello M. Infante, John M. Hollander, Roberta Leonardi. NUDT7 regulates total hepatic CoA levels and the composition of the intestinal bile acid pool in male mice fed a Western dietJournal of Biological Chemistry 2023; 299(1): 102745 doi: 10.1016/j.jbc.2022.102745
43
Jong Yoon Lee. Exploring the nexus between obesity, metabolic syndrome, and colorectal cancerKosin Medical Journal 2024; 39(1): 18 doi: 10.7180/kmj.24.107
44
Rachel Murphy. An Integrative Approach to Assessing Diet–Cancer RelationshipsMetabolites 2020; 10(4): 123 doi: 10.3390/metabo10040123
45
Oliver Phipps, Hafid O. Al-Hassi, Mohammed N. Quraishi, Aditi Kumar, Matthew J. Brookes. Influence of Iron on the Gut Microbiota in Colorectal CancerNutrients 2020; 12(9): 2512 doi: 10.3390/nu12092512
46
Natalia N. Markelova, Elena F. Semenova, Olga N. Sineva, Vera S. Sadykova. The Role of Cyclomodulins and Some Microbial Metabolites in Bacterial Microecology and Macroorganism CarcinogenesisInternational Journal of Molecular Sciences 2022; 23(19): 11706 doi: 10.3390/ijms231911706
47
Chen-Liang Tsai, Chih-Ying Changchien, Ying Chen, Chine-Rui Lai, Tzu-Min Chen, Hsin-Han Chang, Wen-Chiuan Tsai, Yu-Ling Tsai, Hao-Chung Tsai, Hung-Yi Lin, Chieh-Yung Wang, Ming-Sheng Shen, Yu-Huei Lin. Survival Benefit of Statin with Anti-Angiogenesis Efficacy in Lung Cancer-Associated Pleural Fluid through FXR ModulationCancers 2022; 14(11): 2765 doi: 10.3390/cancers14112765
48
Vlad Alexandru Ionescu, Gina Gheorghe, Nicolae Bacalbasa, Alexandru Laurentiu Chiotoroiu, Camelia Diaconu. Colorectal Cancer: From Risk Factors to OncogenesisMedicina 2023; 59(9): 1646 doi: 10.3390/medicina59091646
49
Songhwa Choi, Ashley J. Snider. Cellular Nutrient Utilization and CancerInternational Review of Cell and Molecular Biology 2019; 347: 105 doi: 10.1016/bs.ircmb.2019.07.001
50
Matthew I. Jackson, Christopher Waldy, Dennis E. Jewell, Juan J. Loor. Dietary resistant starch preserved through mild extrusion of grain alters fecal microbiome metabolism of dietary macronutrients while increasing immunoglobulin A in the catPLOS ONE 2020; 15(11): e0241037 doi: 10.1371/journal.pone.0241037
51
Madhawa Gunathilake, Jeonghee Lee, Il Ju Choi, Young-Il Kim, Jaekyung Yoon, Woo Jun Sul, Jihyun F. Kim, Jeongseon Kim. Alterations in Gastric Microbial Communities Are Associated with Risk of Gastric Cancer in a Korean Population: A Case-Control StudyCancers 2020; 12(9): 2619 doi: 10.3390/cancers12092619
52
Wook Jin. ErBb Family Proteins in Cholangiocarcinoma and Clinical ImplicationsJournal of Clinical Medicine 2020; 9(7): 2255 doi: 10.3390/jcm9072255
53
Achraf El Asri, Karim Ouldim, Laila Bouguenouch, Mohammed Sekal, Fatima Zahra Moufid, Ellen Kampman, Inge Huybrechts, Marc J. Gunter, Sanae Abbaoui, Kaoutar Znati, Mehdi Karkouri, Khaoula El Kinany, Zineb Hatime, Meimouna Mint Sidi Deoula, Laila Chbani, Btissame Zarrouq, Karima El Rhazi. Dietary Fat Intake and KRAS Mutations in Colorectal Cancer in a Moroccan PopulationNutrients 2022; 14(2): 318 doi: 10.3390/nu14020318
54
Hung-Ju Chang, Ana Zúñiga, Ismael Conejero, Peter L. Voyvodic, Jerome Gracy, Elena Fajardo-Ruiz, Martin Cohen-Gonsaud, Guillaume Cambray, Georges-Philippe Pageaux, Magdalena Meszaros, Lucy Meunier, Jerome Bonnet. Programmable receptors enable bacterial biosensors to detect pathological biomarkers in clinical samplesNature Communications 2021; 12(1) doi: 10.1038/s41467-021-25538-y
55
Carlo R. Settanni, Gianluca Quaranta, Stefano Bibbò, Antonio Gasbarrini, Giovanni Cammarota, Gianluca Ianiro. Oral supplementation with lactobacilli to prevent colorectal cancer in preclinical modelsMinerva Gastroenterologica e Dietologica 2020; 66(1) doi: 10.23736/S1121-421X.19.02631-X
56
Xi Jiang, Zhongxiu Jiang, Qi Cheng, Wei Sun, Min Jiang, Yan Sun. Cholecystectomy promotes the development of colorectal cancer by the alternation of bile acid metabolism and the gut microbiotaFrontiers in Medicine 2022; 9 doi: 10.3389/fmed.2022.1000563
57
Cristiana Caliceti, Angela Punzo, Alessia Silla, Patrizia Simoni, Giulia Roda, Silvana Hrelia. New Insights into Bile Acids Related Signaling Pathways in the Onset of Colorectal CancerNutrients 2022; 14(14): 2964 doi: 10.3390/nu14142964
58
Amel Taibi, Zoe Lofft, Julia MW Wong, Cyril WC Kendall, John L Sievenpiper, Elena M Comelli, David JA Jenkins. Colorectal Neoplasia and the Colorectal Microbiome2020; : 211 doi: 10.1016/B978-0-12-819672-4.00009-X
59
Nurkhalida Kamal, Muna Abdulsalam Ilowefah, Ayah Rebhi Hilles, Nurul Adlina Anua, Tahani Awin, Hussah Abdullah Alshwyeh, Sahar Khamees Aldosary, Najla Gooda Sahib Jambocus, Areej A. Alosaimi, Azizur Rahman, Syed Mahmood, Ahmed Mediani. Genesis and Mechanism of Some Cancer Types and an Overview on the Role of Diet and Nutrition in Cancer PreventionMolecules 2022; 27(6): 1794 doi: 10.3390/molecules27061794
60
Yean Leng Loke, Ming Tsuey Chew, Yun Fong Ngeow, Wendy Wan Dee Lim, Suat Cheng Peh. Colon Carcinogenesis: The Interplay Between Diet and Gut MicrobiotaFrontiers in Cellular and Infection Microbiology 2020; 10 doi: 10.3389/fcimb.2020.603086
61
Zi‐feng Lu, Chou‐Yi Hsu, Nada Khairi Younis, Mohammed Ahmed Mustafa, Elena A. Matveeva, Yassien Hussain Owaied Al‐Juboory, Mohaned Adil, Zainab H. Athab, Mustafa Nasrat Abdulraheem. Exploring the significance of microbiota metabolites in rheumatoid arthritis: uncovering their contribution from disease development to biomarker potentialAPMIS 2024;  doi: 10.1111/apm.13401
62
Pengfei Ye, Yue Xi, Zhiying Huang, Pengfei Xu. Linking Obesity with Colorectal Cancer: Epidemiology and Mechanistic InsightsCancers 2020; 12(6): 1408 doi: 10.3390/cancers12061408
63
Rui Li, Zhengsheng Mao, Xujun Ye, Tao Zuo. Human Gut Microbiome and Liver Diseases: From Correlation to CausationMicroorganisms 2021; 9(5): 1017 doi: 10.3390/microorganisms9051017
64
Thinh-Thi Nguyen, Thuan-Trong Ung, Shinan Li, Dhiraj Kumar Sah, Sun-Young Park, Sen Lian, Young-Do Jung. Lithocholic Acid Induces miR21, Promoting PTEN Inhibition via STAT3 and ERK-1/2 Signaling in Colorectal Cancer CellsInternational Journal of Molecular Sciences 2021; 22(19): 10209 doi: 10.3390/ijms221910209
65
Claudia D. Fuchs, Michael Trauner. Role of bile acids and their receptors in gastrointestinal and hepatic pathophysiologyNature Reviews Gastroenterology & Hepatology 2022; 19(7): 432 doi: 10.1038/s41575-021-00566-7
66
Jasbir Bisht, Priyanka Rawat, Ujala Sehar, P. Hemachandra Reddy. Caregivers with Cancer Patients: Focus on HispanicsCancers 2023; 15(3): 626 doi: 10.3390/cancers15030626
67
Gholamreza Roshandel, Fatemeh Ghasemi-Kebria, Reza Malekzadeh. Colorectal Cancer: Epidemiology, Risk Factors, and PreventionCancers 2024; 16(8): 1530 doi: 10.3390/cancers16081530
68
Ehsan Alvandi, Wilson K. M. Wong, Mugdha V. Joglekar, Kevin J. Spring, Anandwardhan A. Hardikar. Short-chain fatty acid concentrations in the incidence and risk-stratification of colorectal cancer: a systematic review and meta-analysisBMC Medicine 2022; 20(1) doi: 10.1186/s12916-022-02529-4
69
Tomasz Sawicki, Monika Ruszkowska, Anna Danielewicz, Ewa Niedźwiedzka, Tomasz Arłukowicz, Katarzyna E. Przybyłowicz. A Review of Colorectal Cancer in Terms of Epidemiology, Risk Factors, Development, Symptoms and DiagnosisCancers 2021; 13(9): 2025 doi: 10.3390/cancers13092025
70
Gemma Ibáñez-Sanz, Elisabet Guinó, Caridad Pontes, Mª Ángeles Quijada-Manuitt, Luisa C de la Peña-Negro, María Aragón, Marga Domínguez, Lorena Rodríguez-Alonso, Alex Blasco, Ana García-Rodríguez, Rosa Morros, Victor Moreno. Statin use and the risk of colorectal cancer in a population-based electronic health records studyScientific Reports 2019; 9(1) doi: 10.1038/s41598-019-49877-5
71
Isabella Skye Waddell, Caroline Orfila. Dietary fiber in the prevention of obesity and obesity-related chronic diseases: From epidemiological evidence to potential molecular mechanismsCritical Reviews in Food Science and Nutrition 2023; 63(27): 8752 doi: 10.1080/10408398.2022.2061909
72
Ana Clara Sabbione, María Cristina Añón, Adriana Scilingo. Characterization and Bile Acid Binding Capacity of Dietary Fiber Obtained from Three Different Amaranth ProductsPlant Foods for Human Nutrition 2024; 79(1): 38 doi: 10.1007/s11130-023-01116-z
73
Susanne Naumann, Dirk Haller, Peter Eisner, Ute Schweiggert-Weisz. Mechanisms of Interactions between Bile Acids and Plant Compounds—A ReviewInternational Journal of Molecular Sciences 2020; 21(18): 6495 doi: 10.3390/ijms21186495
74
Qin Tang, Ronald M. Evans. Colon cancer checks in when bile acids check out: the bile acid–nuclear receptor axis in colon cancerEssays in Biochemistry 2021; 65(6): 1015 doi: 10.1042/EBC20210038
75
Jin -Sung Yuk, Seung-Woo Yang, Sang-Hee Yoon, Myoung Hwan Kim, Yong-Soo Seo, Yujin Lee, Jungbin Kim, Keunho Yang, Geumhee Gwak, Hyunjin Cho. The increased risk of colorectal cancer in the women who underwent hysterectomy from the South Korean National Health Insurance DatabaseBMC Women's Health 2023; 23(1) doi: 10.1186/s12905-023-02642-3
76
Hadi Feizi, Mohammad Ahangarzadeh Rezaee, Reza Ghotaslou, Mohammad Sadrkabir, Farhad Jadidi-Niaragh, Pourya Gholizadeh, Sepehr Taghizadeh, Khudaverdi Ghanbarov, Mehdi Yousefi, Hossein Samadi Kafil. Gut Microbiota and Colorectal Cancer Risk FactorsCurrent Pharmaceutical Biotechnology 2023; 24(8): 1018 doi: 10.2174/1389201023666221005103340
77
Lehar Khanna, Michael Camilleri. Letter: elobixibatting for the long run—authors’ replyAlimentary Pharmacology & Therapeutics 2021; 53(6): 769 doi: 10.1111/apt.16290
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Zongmei Zheng, Jiao Wei, Xinxin Hou, Fengjing Jia, Zhaozhou Zhang, Haidong Guo, Fuwen Yuan, Feng He, Zunji Ke, Yan Wang, Ling Zhao. A High Hepatic Uptake of Conjugated Bile Acids Promotes Colorectal Cancer—Associated Liver MetastasisCells 2022; 11(23): 3810 doi: 10.3390/cells11233810
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Zhenni Yang, Xuqian Zhang, Xiaozhe Bai, Xiaonan Xi, Wentian Liu, Weilong Zhong. Anti‐angiogenesis in colorectal cancer therapyCancer Science 2024; 115(3): 734 doi: 10.1111/cas.16063
80
Shahrooz Amin Mozaffari, Ali Salehi, Elnaz Mousavi, Burhan Abdullah Zaman, Ali Eslambol Nassaj, Farnoosh Ebrahimzadeh, Hadi Nasiri, Zahra Valedkarimi, Ali Adili, Ghazaleh Asemani, Morteza Akbari. SARS-CoV-2-associated gut microbiome alteration; A new contributor to colorectal cancer pathogenesisPathology - Research and Practice 2022; 239: 154131 doi: 10.1016/j.prp.2022.154131
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Chengze Lai, Linkang Chen, Xiaoting Zhong, Zeli Tang, Bin Zhang, Yu Luo, Chengji Li, Mengcheng Jin, Xu Chen, Jinglin Li, Yinying Shi, Yanqin Sun, Lianxian Guo. Long-term effects on liver metabolism induced by ceftriaxone sodium pretreatmentEnvironmental Pollution 2023; 335: 122238 doi: 10.1016/j.envpol.2023.122238
82
Yalan Chen, Xibin Wang, Yuwei Ye, Qian Ren. Gut microbiota in cancer: insights on microbial metabolites and therapeutic strategiesMedical Oncology 2023; 41(1) doi: 10.1007/s12032-023-02249-6
83
Hung Luu, Chi Tran, Renwei Wang, Mai Nguyen, Mo Tran, Thuy Tuong, Quang Tran, Linh Le, Huong Pham, Hien Vu, Nam Bui, Hien Ha, Dung Trinh, Claire Thomas, Jennifer Adams-Haduch, Liudmilla Velikokhatnaya, Robert Schoen, Guoxiang Xie, Wei Jia, Paolo Boffetta, Jose Clemente, Jian-Min Yuan. Associations between Ileal Juice Bile Acids and Colorectal Advanced AdenomaNutrients 2023; 15(13): 2930 doi: 10.3390/nu15132930
84
Vladimir V. Rusanovsky, Anastasia A. Savelyeva, Zara G. Tadtaeva, Egor S. Astudin, Alexandr E. Krivoshein, Alexandr A. Akimov, N. A. Kuritcyna. Evaluation of the pharmacological efficacy and potential of nitazoxanide, a broad–spectrum thiazolide drugReviews on Clinical Pharmacology and Drug Therapy 2024;  doi: 10.17816/RCF624703
85
Jundeok Lee, Su Young Kim. Obesity and Colorectal CancerThe Korean Journal of Gastroenterology 2023; 82(2): 63 doi: 10.4166/kjg.2023.083
86
Randa H. Khattab, Rana H. Abo-Hammam, Mohammed Salah, Amro M. Hanora, Sarah Shabayek, Samira Zakeer. Multi-omics analysis of fecal samples in colorectal cancer Egyptians patients: a pilot studyBMC Microbiology 2023; 23(1) doi: 10.1186/s12866-023-02991-x
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Fernando A. Bellesi, Ana M.R. Pilosof. Potential implications of food proteins-bile salts interactionsFood Hydrocolloids 2021; 118: 106766 doi: 10.1016/j.foodhyd.2021.106766
88
Small Animal Microbiomes and Nutrition2023; : 189 doi: 10.1002/9781119862611.ch14