Overexpressing lnc240 Rescues Learning and Memory Dysfunction in Hepatic Encephalopathy Through miR-1264-5p/MEF2C Axis
暂无分享,去创建一个
Xiaobing Gong | Guoqing Guo | Jiong Li | Yuqing Hui | Jifeng Zhang | Guangying Yu | Meiying Chen | Huijie Zhang | Chunyi Tu | Danlei Liu
[1] Wen-qing Xie,et al. Resistance training and Urtica dioica increase neurotrophin levels and improve cognitive function by increasing age in the hippocampus of rats. , 2022, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[2] Chihao Zhang,et al. Construction and comprehensive analysis of a lncRNA–mRNA interactive network to reveal a potential lncRNA for hepatic encephalopathy development , 2022, Human Cell.
[3] Xiaobing Gong,et al. Comprehensive Analysis of lncRNAs, miRNAs and mRNAs in Mouse Hippocampus With Hepatic Encephalopathy , 2022, Frontiers in Genetics.
[4] Juhyun Song,et al. Long Noncoding RNAs Regulate Hyperammonemia-Induced Neuronal Damage in Hepatic Encephalopathy , 2022, Oxidative medicine and cellular longevity.
[5] A. Attia,et al. Linagliptin attenuates thioacetamide-induced hepatic encephalopathy in rats: Modulation of C/EBP-β and CX3CL1/Fractalkine, neuro-inflammation, oxidative stress and behavioral defects. , 2022, Life sciences.
[6] Yongxiang Zhao,et al. Progress on the roles of MEF2C in neuropsychiatric diseases , 2022, Molecular Brain.
[7] Jia-mou Ren,et al. MEF2C ameliorates learning, memory, and molecular pathological changes in Alzheimer’s disease in vivo and in vitro , 2021, Acta biochimica et biophysica Sinica.
[8] Chihao Zhang,et al. Bioinformatics-Based Analysis of lncRNA-mRNA Interaction Network of Mild Hepatic Encephalopathy in Cirrhosis , 2021, Computational and mathematical methods in medicine.
[9] Wenkang Luan,et al. LncRNA BDNF-AS as ceRNA regulates the miR-9-5p/BACE1 pathway affecting neurotoxicity in Alzheimer's disease. , 2021, Archives of gerontology and geriatrics.
[10] Wenliang Xiao,et al. Inhibition of miR-218-5p reduces myocardial ischemia-reperfusion injury in a Sprague-Dawley rat model by reducing oxidative stress and inflammation through MEF2C/NF-κB pathway. , 2021, International immunopharmacology.
[11] M. Haghani,et al. Effects of platelet‐rich plasma on the memory impairment, apoptosis, and hippocampal synaptic plasticity in a rat model of hepatic encephalopathy , 2021, Brain and behavior.
[12] A. Rashno,et al. Automated image segmentation method to analyse skeletal muscle cross section in exercise-induced regenerating myofibers , 2021, Scientific Reports.
[13] M. Rahmati,et al. The effects of exercise training on Kinesin and GAP-43 expression in skeletal muscle fibers of STZ-induced diabetic rats , 2021, Scientific Reports.
[14] F. Chehelcheraghi,et al. Exercise and Urtica dioica extract ameliorate hippocampal insulin signaling, oxidative stress, neuroinflammation, and cognitive function in STZ-induced diabetic rats. , 2021, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[15] Fang Wang,et al. Studies on the Regulatory Roles and Related Mechanisms of lncRNAs in the Nervous System , 2021, Oxidative medicine and cellular longevity.
[16] Guorong Zhang,et al. Knockdown of TUG1 rescues cardiomyocyte hypertrophy through targeting the miR-497/MEF2C axis , 2021, Open life sciences.
[17] Jiuhong Kang,et al. Critical regulation of a NDIME/MEF2C axis in embryonic stem cell neural differentiation and autism , 2020, EMBO reports.
[18] W. Du,et al. LncRNA MALAT1 facilitates inflammasome activation via epigenetic suppression of Nrf2 in Parkinson’s disease , 2020, Molecular brain.
[19] Cheng Huang,et al. LncRNA NEAT1: Shedding light on mechanisms and opportunities in liver diseases , 2020, Liver international : official journal of the International Association for the Study of the Liver.
[20] H. Kuo,et al. Functional roles and networks of non-coding RNAs in the pathogenesis of neurodegenerative diseases , 2020, Journal of Biomedical Science.
[21] A. Khodir,et al. Nifuroxazide attenuates experimentally-induced hepatic encephalopathy and the associated hyperammonemia and cJNk/caspase-8/TRAIL activation in rats. , 2020, Life sciences.
[22] F. Chehelcheraghi,et al. Effects of endurance exercise and Urtica dioica on the functional, histological and molecular aspects of the hippocampus in STZ-Induced diabetic rats. , 2020, Journal of ethnopharmacology.
[23] S. Zhang,et al. Long noncoding RNA NEAT1 suppresses hepatocyte proliferation in fulminant hepatic failure through increased recruitment of EZH2 to the LATS2 promoter region and promotion of H3K27me3 methylation , 2020, Experimental & Molecular Medicine.
[24] Z. Zeng,et al. Emerging role of tumor-related functional peptides encoded by lncRNA and circRNA , 2020, Molecular Cancer.
[25] A. Harrington,et al. Emerging roles for MEF2 in brain development and mental disorders , 2019, Current Opinion in Neurobiology.
[26] Baeksun Kim,et al. Methyl-CpG Binding Protein 2 in Alzheimer Dementia , 2019, International neurourology journal.
[27] K. So,et al. Corticosterone-mediated microglia activation affects dendritic spine plasticity and motor learning functions in minimal hepatic encephalopathy , 2019, Brain, Behavior, and Immunity.
[28] V. Felipo,et al. Peripheral inflammation induces neuroinflammation that alters neurotransmission and cognitive and motor function in hepatic encephalopathy: Underlying mechanisms and therapeutic implications , 2019, Acta physiologica.
[29] E. Harhaj,et al. MEF-2 isoforms' (A-D) roles in development and tumorigenesis , 2019, Oncotarget.
[30] Jianzhong Su,et al. Analysis of long noncoding RNAs highlights region-specific altered expression patterns and diagnostic roles in Alzheimer's disease , 2019, Briefings Bioinform..
[31] L. Mucke,et al. Fibrinogen Induces Microglia-Mediated Spine Elimination and Cognitive Impairment in an Alzheimer’s Disease Model , 2019, Neuron.
[32] B. Davidson,et al. Techniques for Intracranial Stereotaxic Injections of Adeno‐Associated Viral Vectors in Adult Mice , 2018, Current protocols in mouse biology.
[33] W. Gong,et al. PVT1 regulates the malignant behaviors of human glioma cells by targeting miR-190a-5p and miR-488-3p. , 2018, Biochimica et biophysica acta. Molecular basis of disease.
[34] Shuhu Liu,et al. miR‐124 and miR‐9 mediated downregulation of HDAC5 promotes neurite development through activating MEF2C‐GPM6A pathway , 2018, Journal of cellular physiology.
[35] D. Harats,et al. Interleukin-1α and Interleukin-1β play a central role in the pathogenesis of fulminant hepatic failure in mice , 2017, PloS one.
[36] Cun-Yu Wang,et al. STAT3-mediated upregulation of lncRNA HOXD-AS1 as a ceRNA facilitates liver cancer metastasis by regulating SOX4 , 2017, Molecular Cancer.
[37] G. Song,et al. LncRNA-uc.167 influences cell proliferation, apoptosis and differentiation of P19 cells by regulating Mef2c. , 2016, Gene.
[38] You-Qiang Song,et al. Inflammation in Alzheimer’s Disease and Molecular Genetics: Recent Update , 2015, Archivum Immunologiae et Therapiae Experimentalis.
[39] V. Stein,et al. Neddylation inhibition impairs spine development, destabilizes synapses and deteriorates cognition , 2015, Nature Neuroscience.
[40] A. Goate,et al. Alzheimer’s Disease Risk Genes and Mechanisms of Disease Pathogenesis , 2015, Biological Psychiatry.
[41] Mi-Sung Kim,et al. In Vivo Analysis of MEF2 Transcription Factors in Synapse Regulation and Neuronal Survival , 2012, PloS one.
[42] Jun Noguchi,et al. Structural dynamics of dendritic spines in memory and cognition , 2010, Trends in Neurosciences.
[43] Steven W. Flavell,et al. Genome-Wide Analysis of MEF2 Transcriptional Program Reveals Synaptic Target Genes and Neuronal Activity-Dependent Polyadenylation Site Selection , 2008, Neuron.
[44] C. Vorhees,et al. Morris water maze: procedures for assessing spatial and related forms of learning and memory , 2006, Nature Protocols.
[45] K. Weissenborn,et al. Attention, Memory, and Cognitive Function in Hepatic Encephalopathy , 2005, Metabolic Brain Disease.