Whole-transcriptome analysis of aluminum-exposed rat hippocampus and identification of ceRNA networks to investigate neurotoxicity of Al
暂无分享,去创建一个
Q. Niu | Chanting He | Xiaoyan Zhao | Huan Li | Yang Lei | Yidan Zhang | Xiaoting Lu | Jing Song | Lin-ping Wang | J. Nie | Fang Liu | C. He | Linping Wang
[1] Yanni Wang,et al. Regulation of mGluR1 on the Expression of PKC and NMDAR in Aluminum-Exposed PC12 Cells , 2021, Neurotoxicity Research.
[2] K. Chan,et al. Whole-transcriptome sequencing (RNA-seq) study of the ZFL zebrafish liver cell line after acute exposure to Cd2+ ions. , 2020, Aquatic toxicology.
[3] Michelle Z. Farland,et al. Ferric Maltol: A New Oral Iron Formulation for the Treatment of Iron Deficiency in Adults , 2020, The Annals of pharmacotherapy.
[4] Rong Fan,et al. Aluminum-Induced Cognitive Impairment and PI3K/Akt/mTOR Signaling Pathway Involvement in Occupational Aluminum Workers , 2020, Neurotoxicity Research.
[5] Ying Wan,et al. Inflammasome/NF-κB translocation inhibition via PPARγ agonist mitigates inorganic mercury induced nephrotoxicity. , 2020, Ecotoxicology and environmental safety.
[6] Huaqin Sun,et al. Key miRNAs associated with memory and learning disorder upon exposure to sevoflurane determined by RNA sequencing , 2020, Molecular medicine reports.
[7] Q. Niu,et al. Role of mGluR 1 in synaptic plasticity impairment induced by maltol aluminium in rats. , 2020, Environmental toxicology and pharmacology.
[8] Wei Zhang,et al. Identifying lncRNA–miRNA–mRNA networks to investigate Alzheimer’s disease pathogenesis and therapy strategy , 2020, Aging.
[9] Fen Wu,et al. PBMC gene expression profiles of female Bangladeshi adults chronically exposed to arsenic-contaminated drinking water. , 2019, Environmental pollution.
[10] Q. Niu,et al. Effects of Chronic Aluminum Lactate Exposure on Neuronal Apoptosis and Hippocampal Synaptic Plasticity in Rats , 2019, Biological Trace Element Research.
[11] Ji-duo Shen,et al. Transcriptomic analysis reveals the mechanism of sulfasalazine-induced liver injury in mice. , 2019, Toxicology letters.
[12] A. Alzahrani. PI3K/Akt/mTOR inhibitors in cancer: At the bench and bedside. , 2019, Seminars in cancer biology.
[13] Q. Niu,et al. Aluminium-induced synaptic plasticity injury via the PHF8-H3K9me2-BDNF signalling pathway. , 2019, Chemosphere.
[14] Chad A. Cowan,et al. Functional Screening of Candidate Causal Genes for Insulin Resistance in Human Preadipocytes and Adipocytes , 2019, Circulation research.
[15] D. Tanokashira,et al. Involvement of insulin receptor substrates in cognitive impairment and Alzheimer’s disease , 2019, Neural regeneration research.
[16] J. Hadfield,et al. RNA sequencing: the teenage years , 2019, Nature Reviews Genetics.
[17] Qiu Han,et al. Genome-wide RNA sequencing analysis reveals that IGF-2 attenuates memory decline, oxidative stress and amyloid plaques in an Alzheimer’s disease mouse model (AD) by activating the PI3K/AKT/CREB signaling pathway , 2019, International Psychogeriatrics.
[18] R. Pfundt,et al. CTCF variants in 39 individuals with a variable neurodevelopmental disorder broaden the mutational and clinical spectrum , 2019, Genetics in Medicine.
[19] Zhihua Liu,et al. Multi-region sequencing unveils novel actionable targets and spatial heterogeneity in esophageal squamous cell carcinoma , 2019, Nature Communications.
[20] Juan Li,et al. Long non-coding RNA PVT1 promotes tumor progression by regulating the miR-143/HK2 axis in gallbladder cancer , 2019, Molecular Cancer.
[21] L. Groop,et al. Association of IRS1 genetic variants with glucose control and insulin resistance in type 2 diabetic patients from Bosnia and Herzegovina , 2019, Drug metabolism and personalized therapy.
[22] Peiyan Wang,et al. Neuroprotective role of hyperforin on aluminum maltolate-induced oxidative damage and apoptosis in PC12 cells and SH-SY5Y cells. , 2019, Chemico-biological interactions.
[23] The Gene Ontology Consortium,et al. The Gene Ontology Resource: 20 years and still GOing strong , 2018, Nucleic Acids Res..
[24] Shuainan Liu,et al. Maltol, a food flavor enhancer, attenuates diabetic peripheral neuropathy in streptozotocin-induced diabetic rats. , 2018, Food & function.
[25] Ning Liu,et al. Systematic analysis of lncRNA–miRNA–mRNA competing endogenous RNA network identifies four-lncRNA signature as a prognostic biomarker for breast cancer , 2018, Journal of Translational Medicine.
[26] Zhen-bo Feng,et al. A circRNA–miRNA–mRNA network identification for exploring underlying pathogenesis and therapy strategy of hepatocellular carcinoma , 2018, Journal of Translational Medicine.
[27] Andrew English,et al. Inflammation, insulin signaling and cognitive function in aged APP/PS1 mice , 2018, Brain, Behavior, and Immunity.
[28] Chris P Ponting,et al. Complexities of post-transcriptional regulation and the modeling of ceRNA crosstalk , 2018, Critical reviews in biochemistry and molecular biology.
[29] S. Kins,et al. Trafficking in Alzheimer’s Disease: Modulation of APP Transport and Processing by the Transmembrane Proteins LRP1, SorLA, SorCS1c, Sortilin, and Calsyntenin , 2017, Molecular Neurobiology.
[30] C. Bagni,et al. Cognitive Dysfunctions in Intellectual Disabilities: The Contributions of the Ras-MAPK and PI3K-AKT-mTOR Pathways. , 2017, Annual review of genomics and human genetics.
[31] P. Gros,et al. Genetics of Infectious and Inflammatory Diseases: Overlapping Discoveries from Association and Exome-Sequencing Studies. , 2017, Annual review of immunology.
[32] Wan Lee,et al. Induction of miR-96 by Dietary Saturated Fatty Acids Exacerbates Hepatic Insulin Resistance through the Suppression of INSR and IRS-1 , 2016, PloS one.
[33] Y. Liu,et al. The RAS/PI3K Pathway is Involved in the Impairment of Long-term Potentiation Induced by Acute Aluminum Treatment in Rats. , 2016, Biomedical and environmental sciences : BES.
[34] Zhaoping Liu,et al. Risk assessment of dietary exposure to aluminium in the Chinese population , 2016, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[35] Xi Jin,et al. CircRNA expression pattern and circRNA-miRNA-mRNA network in the pathogenesis of nonalcoholic steatohepatitis , 2016, Oncotarget.
[36] Yiguo Jiang,et al. A novel regulatory network among LncRpa, CircRar1, MiR-671 and apoptotic genes promotes lead-induced neuronal cell apoptosis , 2016, Archives of Toxicology.
[37] Jie Cao,et al. MiR-384 regulated IRS1 expression and suppressed cell proliferation of human hepatocellular carcinoma , 2016, Tumor Biology.
[38] P. Qian,et al. High-throughput transcriptome sequencing reveals the combined effects of key e-waste contaminants, decabromodiphenyl ether (BDE-209) and lead, in zebrafish larvae. , 2016, Environmental pollution.
[39] Bao Zhang,et al. Integrated analysis of microRNA regulatory network in nasopharyngeal carcinoma with deep sequencing , 2016, Journal of Experimental & Clinical Cancer Research.
[40] J. Kjems,et al. Comparison of circular RNA prediction tools , 2015, Nucleic acids research.
[41] A. Marette,et al. Pharmacological inhibition of S6K1 increases glucose metabolism and Akt signalling in vitro and in diet-induced obese mice , 2016, Diabetologia.
[42] L. Pei,et al. Propofol-induced rno-miR-665 targets BCL2L1 and influences apoptosis in rodent developing hippocampal astrocytes. , 2015, Neurotoxicology.
[43] Mi-Yeon Kim,et al. Akt1 phosphorylates Nicastrin to regulate its protein stability and activity , 2015, Journal of neurochemistry.
[44] C. Exley,et al. The binding, transport and fate of aluminium in biological cells. , 2015, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.
[45] R. Petersen,et al. Dysfunctionally phosphorylated type 1 insulin receptor substrate in neural‐derived blood exosomes of preclinical Alzheimer's disease , 2015, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[46] N. Turner,et al. Elevated expression levels of miR-143/5 in saphenous vein smooth muscle cells from patients with Type 2 diabetes drive persistent changes in phenotype and function , 2014, Journal of molecular and cellular cardiology.
[47] M. Pohanka. Copper, aluminum, iron and calcium inhibit human acetylcholinesterase in vitro. , 2014, Environmental toxicology and pharmacology.
[48] T. Ishihara,et al. Accelerated Tau Aggregation, Apoptosis and Neurological Dysfunction Caused by Chronic Oral Administration of Aluminum in a Mouse Model of Tauopathies , 2013, Brain pathology.
[49] C. Exley,et al. Human exposure to aluminium. , 2013, Environmental science. Processes & impacts.
[50] Hui-li Liu,et al. Involvement of GSK3 and PP2A in ginsenoside Rb1's attenuation of aluminum-induced tau hyperphosphorylation , 2013, Behavioural Brain Research.
[51] David G Hendrickson,et al. Differential analysis of gene regulation at transcript resolution with RNA-seq , 2012, Nature Biotechnology.
[52] Wenwei Zhang,et al. Comprehensive analysis of RNA-Seq data reveals extensive RNA editing in a human transcriptome , 2012, Nature Biotechnology.
[53] Sebastian D. Mackowiak,et al. miRDeep2 accurately identifies known and hundreds of novel microRNA genes in seven animal clades , 2011, Nucleic acids research.
[54] P. Pandolfi,et al. A ceRNA Hypothesis: The Rosetta Stone of a Hidden RNA Language? , 2011, Cell.
[55] R. Dabeka,et al. Lead, cadmium and aluminum in Canadian infant formulae, oral electrolytes and glucose solutions , 2011, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[56] L. Tomljenovic,et al. Aluminum and Alzheimer's disease: after a century of controversy, is there a plausible link? , 2011, Journal of Alzheimer's disease : JAD.
[57] W. Filipowicz,et al. Regulation of mRNA translation and stability by microRNAs. , 2010, Annual review of biochemistry.
[58] Mark D. Robinson,et al. edgeR: a Bioconductor package for differential expression analysis of digital gene expression data , 2009, Bioinform..
[59] D. Commenges,et al. Aluminum and silica in drinking water and the risk of Alzheimer's disease or cognitive decline: findings from 15-year follow-up of the PAQUID cohort. , 2008, American journal of epidemiology.
[60] A. Haug,et al. Aluminum interaction with phosphoinositide-associated signal transduction , 2009, Archives of Toxicology.
[61] C. Arias,et al. Inhibition of Wnt and PI3K Signaling Modulates GSK-3β Activity and Induces Morphological Changes in Cortical Neurons: Role of Tau Phosphorylation , 2008, Neurochemical Research.
[62] C. Mariani,et al. Aluminium exposure induces Alzheimer's disease-like histopathological alterations in mouse brain. , 2008, Histology and histopathology.
[63] C. Vorhees,et al. Morris water maze: procedures for assessing spatial and related forms of learning and memory , 2006, Nature Protocols.
[64] M. Herman,et al. Mechanisms of aluminum-induced neurodegeneration in animals: Implications for Alzheimer's disease. , 2006, Journal of Alzheimer's disease : JAD.
[65] H. Sakurai,et al. Orally administrated aluminum-maltolate complex enhances oxidative stress in the organs of mice. , 2004, Journal of inorganic biochemistry.
[66] H. Tähti,et al. Mitochondrial viability and apoptosis induced by aluminum, mercuric mercury and methylmercury in cell lines of neural origin , 2004, Archives of Toxicology.
[67] N D Priest,et al. The biological behaviour and bioavailability of aluminium in man, with special reference to studies employing aluminium-26 as a tracer: review and study update. , 2004, Journal of environmental monitoring : JEM.
[68] Christopher Exley,et al. Aluminium, iron, zinc and copper influence the in vitro formation of amyloid fibrils of Abeta42 in a manner which may have consequences for metal chelation therapy in Alzheimer's disease. , 2004, Journal of Alzheimer's disease : JAD.
[69] P. Shannon,et al. Cytoscape: a software environment for integrated models of biomolecular interaction networks. , 2003, Genome research.
[70] G. Muraca,et al. [Cognitive disorders among welders exposed to aluminum]. , 2003, Giornale italiano di medicina del lavoro ed ergonomia.
[71] 堀家 なな緒. Adipose-specific expression, phosphorylation of Ser794 in insulin receptor substrate-1, and activation in diabetic animals of salt-inducible kinase-2 , 2003 .
[72] T. Shibamoto,et al. Antioxidant properties of aroma compounds isolated from soybeans and mung beans. , 2000, Journal of agricultural and food chemistry.
[73] T. Kovala,et al. Body burden of aluminum in relation to central nervous system function among metal inert-gas welders. , 2000, Scandinavian journal of work, environment & health.
[74] Hiroyuki Ogata,et al. KEGG: Kyoto Encyclopedia of Genes and Genomes , 1999, Nucleic Acids Res..
[75] W. Banks,et al. Aluminum-Induced neurotoxicity: Alterations in membrane function at the blood-brain barrier , 1989, Neuroscience & Biobehavioral Reviews.
[76] D. Crapper,et al. Brain Aluminum Distribution in Alzheimer's Disease and Experimental Neurofibrillary Degeneration , 1973, Science.