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Cited by in CrossRef
For: Chen R, Luo FK, Wang YL, Tang JL, Liu YS. LBP and CD14 polymorphisms correlate with increased colorectal carcinoma risk in Han Chinese. World J Gastroenterol 2011; 17(18): 2326-2331 [PMID: 21633598 DOI: 10.3748/wjg.v17.i18.2326]
URL: https://www.wjgnet.com/1007-9327/full/v17/i18/2326.htm
Number Citing Articles
1
Yong Yu, Wenjun Wang, Song Zhai, Shuangsuo Dang, Mingzhu Sun. IL6 gene polymorphisms and susceptibility to colorectal cancer: a meta-analysis and reviewMolecular Biology Reports 2012; 39(8): 8457 doi: 10.1007/s11033-012-1699-4
2
Kawther Zaher, Fatemah Basingab. Interaction between Gut Microbiota and Dendritic Cells in Colorectal CancerBiomedicines 2023; 11(12): 3196 doi: 10.3390/biomedicines11123196
3
Alison L. Van Dyke, Troy J. Kemp, Amanda F. Corbel, Bin Zhu, Yu-Tang Gao, Bing-Sheng Wang, Asif Rashid, Ming-Chang Shen, Allan Hildesheim, Ann W. Hsing, Ligia A. Pinto, Jill Koshiol. Lipopolysaccharide-pathway proteins are associated with gallbladder cancer among adults in Shanghai, China with mediation by systemic inflammationAnnals of Epidemiology 2016; 26(10): 704 doi: 10.1016/j.annepidem.2016.08.009
4
Mengyao Shi, Xiaoyu Zong, Jinhee Hur, Brenda M. Birmann, Otoniel Martinez-Maza, Marta Epeldegui, Andrew T. Chan, Edward L. Giovannucci, Yin Cao. Circulating markers of microbial translocation and host response to bacteria with risk of colorectal cancer: a prospective, nested case-control study in meneBioMedicine 2023; 91: 104566 doi: 10.1016/j.ebiom.2023.104566
5
A. González-Sarrías, M. A. Núñez-Sánchez, M. A. Ávila-Gálvez, T. Monedero-Saiz, F. J. Rodríguez-Gil, Francisco Martínez-Díaz, M. V. Selma, J. C. Espín. Consumption of pomegranate decreases plasma lipopolysaccharide-binding protein levels, a marker of metabolic endotoxemia, in patients with newly diagnosed colorectal cancer: a randomized controlled clinical trialFood & Function 2018; 9(5): 2617 doi: 10.1039/C8FO00264A
6
Wei Zhang, Xiaoxuan Ou, Xiaohua Wu. Proteomics profiling of plasma exosomes in epithelial ovarian cancer: A potential role in the coagulation cascade, diagnosis and prognosisInternational Journal of Oncology 2019;  doi: 10.3892/ijo.2019.4742
7
Meredith A. J. Hullar, Andrea N. Burnett-Hartman, Johanna W. Lampe. Advances in Nutrition and CancerCancer Treatment and Research 2014; 159: 377 doi: 10.1007/978-3-642-38007-5_22
8
Jolanta Rzymowska, Andrzej Wilkołaski, Lidia Szatkowska, Ludmiła Grzybowska. The Expression of Signaling Genes in Breast Cancer CellsBiology 2022; 11(4): 555 doi: 10.3390/biology11040555
9
Dhanusha Yesudhas, Vijayakumar Gosu, Muhammad Ayaz Anwar, Sangdun Choi. Multiple Roles of Toll-Like Receptor 4 in Colorectal CancerFrontiers in Immunology 2014; 5 doi: 10.3389/fimmu.2014.00334
10
Jessica S. Citronberg, Lynne R. Wilkens, Loic Le Marchand, Unhee Lim, Kristine R. Monroe, Meredith A. J. Hullar, Emily White, Polly A. Newcomb, Johanna W. Lampe. Plasma lipopolysaccharide-binding protein and colorectal cancer risk: a nested case–control study in the Multiethnic CohortCancer Causes & Control 2018; 29(1): 115 doi: 10.1007/s10552-017-0990-z
11
W-T Kuo, T-C Lee, H-Y Yang, C-Y Chen, Y-C Au, Y-Z Lu, L-L Wu, S-C Wei, Y-H Ni, B-R Lin, Y Chen, Y-H Tsai, J T Kung, F Sheu, L-W Lin, L C-H Yu. LPS receptor subunits have antagonistic roles in epithelial apoptosis and colonic carcinogenesisCell Death & Differentiation 2015; 22(10): 1590 doi: 10.1038/cdd.2014.240
12
Bin Qiao, Zhuo Chen, Junwen Huang, Alfred King‐Yin Lam, Zi Mei, Yang Li, Jie Qiao. Lipopolysaccharide‐binding protein as a biomarker in oral and maxillofacial tumorsOral Diseases 2023; 29(3): 892 doi: 10.1111/odi.14042
13
C. M. Chang, V. M. Chia, M. J. Gunter, K. A. Zanetti, B. M. Ryan, J. E. Goodman, C. C. Harris, J. Weissfeld, W.-Y. Huang, S. Chanock, M. Yeager, R. B. Hayes, S. I. Berndt. Innate immunity gene polymorphisms and the risk of colorectal neoplasiaCarcinogenesis 2013; 34(11): 2512 doi: 10.1093/carcin/bgt228
14
Wentao Zhang, Zhe Yang, Fengge Zhou, Yanjun Wei, Xiaoqing Ma. Network Pharmacology and Bioinformatics Analysis Identifies Potential Therapeutic Targets of Paxlovid Against LUAD/COVID-19Frontiers in Endocrinology 2022; 13 doi: 10.3389/fendo.2022.935906
15
Anton G. Kutikhin, Arseniy E. Yuzhalin. Genomics of Pattern Recognition Receptors2013; : 33 doi: 10.1007/978-3-0348-0688-6_3
16
Muthuswamy Balasubramanyam. LPS—Is It a Major Liability Factor for Cancer Risk and Severity?Exploratory Research and Hypothesis in Medicine 2020; 0(000): 1 doi: 10.14218/ERHM.2020.00037
17
Yiqun Hu, Kengo Yoshida, John B Cologne, Mayumi Maki, Yukari Morishita, Keiko Sasaki, Ikue Hayashi, Waka Ohishi, Ayumi Hida, Seishi Kyoizumi, Yoichiro Kusunoki, Katsushi Tokunaga, Kei Nakachi, Tomonori Hayashi. CD14 and IL18 gene polymorphisms associated with colorectal cancer subsite risks among atomic bomb survivorsHuman Genome Variation 2015; 2(1) doi: 10.1038/hgv.2015.35
18
Quan‑Yu Cai, Jing‑Hua Jiang, Ri‑Ming Jin, Guang‑Zhi Jin, Ning‑Yang Jia. The clinical significance of lipopolysaccharide binding protein in hepatocellular carcinomaOncology Letters 2019;  doi: 10.3892/ol.2019.11119
19
Mingyang Song, Andrew T. Chan, Jun Sun. Influence of the Gut Microbiome, Diet, and Environment on Risk of Colorectal CancerGastroenterology 2020; 158(2): 322 doi: 10.1053/j.gastro.2019.06.048
20
Amir Ariff, Yong Song, Ruth Aguilar, Augusto Nhabomba, Maria Nelia Manaca, Siew-Kim Khoo, Selma Wiertsema, Quique Bassat, Arnoldo Barbosa, Llorenç Quintó, Ingrid A. Laing, Caterina Guinovart, Pedro L. Alonso, Carlota Dobaño, Peter Le Souëf, Guicheng Zhang. Genetic variants of TLR4, including the novel variant, rs5030719, and related genes are associated with susceptibility to clinical malaria in African childrenMalaria Journal 2023; 22(1) doi: 10.1186/s12936-023-04549-8
21
Leilei Meng, Zichen Song, Anding Liu, Uta Dahmen, Xiao Yang, Haoshu Fang. Effects of Lipopolysaccharide-Binding Protein (LBP) Single Nucleotide Polymorphism (SNP) in Infections, Inflammatory Diseases, Metabolic Disorders and CancersFrontiers in Immunology 2021; 12 doi: 10.3389/fimmu.2021.681810