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Cited by in CrossRef
For: Skrlec I, Talapko J. Hepatitis B and circadian rhythm of the liver. World J Gastroenterol 2022; 28(27): 3282-3296 [PMID: 36158265 DOI: 10.3748/wjg.v28.i27.3282]
URL: https://www.wjgnet.com/1007-9327/full/v28/i27/3282.htm
Number Citing Articles
1
Kenneth Maiese. Diabetes mellitus and glymphatic dysfunction: Roles for oxidative stress, mitochondria, circadian rhythm, artificial intelligence, and imagingWorld Journal of Diabetes 2025; 16(1): 98948 doi: 10.4239/wjd.v16.i1.98948
2
Hanxin Xue, Danyi Zeng, Yanying You, Jianwei Zhang, Xiaoning Chen, Qingqing Xing, Weiwei Zeng, Minxia Wu, Jinshui Pan, Yueyong Zhu. Circadian disruption exacerbates MASH by reducing Akkermansia muciniphila via the FXR-CYP7A1-bile acid axisiScience 2026; 29(4): 115397 doi: 10.1016/j.isci.2026.115397
3
Beibei Luo, Jiangyuan Song, Jiaqi Zhang, Jun Han, Xin Zhou, Lili Chen. The contribution of circadian clock to the biological processesFrontiers in Molecular Biosciences 2024; 11 doi: 10.3389/fmolb.2024.1387576
4
Zhaiyi Liu, Jiayang Zhang, Shuyao Li, Hui Wang, Baoyin Ren, Jiazhi Li, Zhiyue Bao, Jiaxin Liu, Meina Guo, Guangrui Yang, Lihong Chen. Circadian control of ConA-induced acute liver injury and inflammatory response via Bmal1 regulation of JunbJHEP Reports 2023; 5(11): 100856 doi: 10.1016/j.jhepr.2023.100856
5
Jinhai Wang, Li Ma, Jinjuan Wang, Zhe Ma, Weiwei Wang, Songning Yu. Circadian rhythm-based prognostic features predict immune infiltration and tumor microenvironment in molecular subtypes of hepatocellular carcinomaOpen Life Sciences 2025; 20(1) doi: 10.1515/biol-2025-1208