Advances in Alzheimer's Disease

Advances in Alzheimer's Disease

ISSN Print: 2169-2459
ISSN Online: 2169-2467
www.scirp.org/journal/aad
E-mail: aad@scirp.org
"Lipolysaccharide-Induced Neuroinflammation Is Associated with Alzheimer-Like Amyloidogenic Axonal Pathology and Dendritic Degeneration in Rats"
written by Xiaohua Deng, Meili Li, Weiming Ai, Lixin He, Dahua Lu, Peter R. Patrylo, Huaibin Cai, Xuegang Luo, Zhiyuan Li, Xiao-Xin Yan,
published by Advances in Alzheimer's Disease, Vol.3 No.2, 2014
has been cited by the following article(s):
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[4] Maternal Prenatal Inflammation Increases Brain Damage Susceptibility of Lipopolysaccharide in Adult Rat Offspring via COX-2/PGD-2/DPs Pathway Activation
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[6] Kyung-Eon Lee, Jeon-Kyung Kim and Dong-Hyun Kim
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[11] Inhibition of CD38 and supplementation of nicotinamide riboside ameliorate lipopolysaccharide‐induced microglial and astrocytic neuroinflammation by increasing …
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[12] Gram-negative bacteria and their lipopolysaccharides in Alzheimer's disease: pathologic roles and therapeutic implications
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[13] Complete spatial characterisation of N-glycosylation upon striatal neuroinflammation in the rodent brain
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[14] The role of full-length apoE in clearance of Gram-negative bacteria and their endotoxins
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[15] 6‐Gingerol, an active constituent of ginger, attenuates lipopolysaccharide‐induced oxidation, inflammation, cognitive deficits, neuroplasticity, and amyloidogenesis in …
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[16] Modulation of Neuroinflammation by the Gut Microbiota in Prion and Prion-Like Diseases
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[17] Inhibition of CD38 and supplementation of nicotinamide riboside ameliorate lipopolysaccharide-induced neuroinflammation in the hippocampus
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[18] Chronic administration of a positive allosteric modulator at the alpha5-GABAA receptor reverses age-related dendritic shrinkage
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[19] Ipriflavone and Ipriflavone loaded albumin nanoparticles reverse lipopolysaccharide induced neuroinflammation in rats
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[20] Orally Administered Antibiotics Vancomycin and Ampicillin Cause Cognitive Impairment With Gut Dysbiosis in Mice With Transient Global Forebrain Ischemia
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[21] Early Dendritic Dystrophy in Human Brains With Primary Age-Related Tauopathy
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[22] Chronic administration of a positive allosteric modulator at the α5-GABAA receptor reverses age-related dendritic shrinkage
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[23] Protective effects of tauroursodeoxycholic acid on lipopolysaccharide-induced cognitive impairment and neurotoxicity in mice
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[24] Protein arginine methyltransferase-1 deficiency restrains depression-like behavior of mice by inhibiting inflammation and oxidative stress via Nrf-2
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[25] Geraniin Attenuates Lipopolysaccharide-Induced Cognitive Impairment in Mice by Inhibiting Toll-Like Receptor 4 Activation
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[26] Phytomedicine-Based Potent Antioxidant, Fisetin Protects CNS-Insult LPS-Induced Oxidative Stress-Mediated Neurodegeneration and Memory Impairment
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[27] CB2 Cannabinoid receptor agonist ameliorates novel object recognition but not spatial memory in transgenic APP/PS1 mice
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[28] Overview of peripheral and central inflammatory responses and their contribution to neurotoxicity
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[29] Lipopolysaccharide-induced neuroinflammation as a bridge to understand neurodegeneration
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[30] Gut Microbiota: From the Forgotten Organ to a Potential Key Player in the Pathology of Alzheimer's Disease
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[31] Inhibitory effect of INT-777 on lipopolysaccharide-induced cognitive impairment, neuroinflammation, apoptosis, and synaptic dysfunction in mice
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[32] The small molecule CA140 inhibits the neuroinflammatory response in wild-type mice and a mouse model of AD
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[33] The potential of LPS-binding protein to reverse amyloid formation in plasma fibrin of individuals with Alzheimer-type dementia
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[34] Deoxyelephantopin ameliorates lipopolysaccharides (LPS)-induced memory impairments in rats: Evidence for its anti-neuroinflammatory properties
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[35] Altered Expression of Metabolic Proteins Contributes to Neuropathological Disease
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[36] Reaction of Amyloid-β Peptide Antibody with Different Infectious Agents Involved in Alzheimer's Disease
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[37] Imperatorin ameliorates lipopolysaccharide induced memory deficit by mitigating proinflammatory cytokines, oxidative stress and modulating brain-derived neurotropic …
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[38] Role of 3-acetyl-11-keto-beta-boswellic acid in counteracting LPS-induced neuroinflammation via modulation of miRNA-155
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[39] Probable mechanisms involved in the antipsychotic-like activity of methyl jasmonate in mice
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[40] Trigonelline insulates against oxidative stress, proinflammatory cytokines and restores BDNF levels in lipopolysaccharide induced cognitive impairment in adult mice
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[41] Glucose tolerance and insulin sensitivity are impaired in APP/PS1 transgenic mice prior to amyloid plaque pathogenesis and cognitive decline
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[42] Methyl jasmonate ameliorates memory deficits in mice exposed to passive avoidance paradigm
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[43] Sortilin fragments deposit at senile plaques in human cerebrum
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[44] Aggregation of thrombin-derived C-terminal fragments as a previously undisclosed host defense mechanism
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[45] Can brain impermeable BACE1 inhibitors serve as anti-CAA medicine?
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[46] Inhibitory effect of ethanol extract of Nannochloropsis oceanica on lipopolysaccharide-induced neuroinflammation, oxidative stress, amyloidogenesis and …
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[47] This document is downloaded from DR-NTU, Nanyang Technological University Library, Singapore.
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[48] Quantitative Analysis of Positron Emission Tomography (PET) with the Second Generation Translocator Protein (TSPO) Ligand [18F]GE-180
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[49] Modulação da inflamação e da neurogénese no hipocampo: desvendar uma nova interação entre a histamina eo lipopolissacarídeo
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[50] Relationship between ubiquilin-1 and BACE1 in human Alzheimer's disease and APdE9 transgenic mouse brain and cell-based models
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[51] Desarrollo de modelos celulares para estudios terapéuticos en la enfermedad de Alzheimer
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[52] Quantitative analysis of positron emission tomography (PET) with the second generation translocator protein (TSPO) ligand [18F] GE-180
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[53] SS31, a Small Molecule Antioxidant Peptide, Attenuates β-Amyloid Elevation, Mitochondrial/Synaptic Deterioration and Cognitive Deficit in SAMP8 Mice
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[54] Fundamental role of pan-inflammation and oxidative-nitrosative pathways in neuropathogenesis of Alzheimer's disease in focal cerebral ischemic rats
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[55] Acute induction of anomalous blood clotting by molecular amplification of highly substoichiometric levels of bacterial lipopolysaccharide (LPS)
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[56] The Role of Microbiome Diversity in Brain Health and Inflammation: A Clinical Conversation with David Perlmutter, MD, FACN, ABIHM, and Robert Rountree, MD
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[57] Osmotin attenuates LPS-induced neuroinflammation and memory impairments via the TLR4/NFκB signaling pathway
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[58] Hydrocephalus compacted cortex and hippocampus and altered their output neurons in association with spatial learning and memory deficits in rats
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[59] Possible Mechanisms Involved in Attenuation of Lipopolysaccharide-Induced Memory Deficits by Methyl Jasmonate in Mice
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[60] Acute induction of anomalous and amyloidogenic blood clotting by molecular amplification of highly substoichiometric levels of bacterial lipopolysaccharide
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[61] All-trans retinoic acid (ATRA) prevents lipopolysaccharide-induced neuroinflammation, amyloidogenesis and memory impairment in aged rats
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[62] Bee Venom Ameliorates Cognitive Dysfunction Caused by Neuroinflammation in an Animal Model of Vascular Dementia
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[63] The effect of the neurotoxin lipopolysaccharide on the coagulability and red blood cell ultrastructure of blood from healthy individuals
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[64] Intestinal dendritic cells change in number in fulminant hepatic failure
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[66] Synergistic Deleterious Effect of Chronic Stress and Sodium Azide in the Mouse Hippocampus
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[69] Microbial Sources of Amyloid and Relevance to Amyloidogenesis and Alzheimer's Disease (AD)
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[71] Potential Models of Late-onset Alzheimer's Disease
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[72] Viscoelastic and ultrastructural characteristics of whole blood and plasma in Alzheimer-type dementia, and the possible role of bacterial lipopolysaccharides (LPS)
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[73] Viscoelastic and ultrastructural characteristics of whole blood and plasma in Alzheimer-type dementia, and the possible role of bacterial lipopolysaccharides …
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[74] Associação entre o consumo de antocianinas ea prevenção de alterações cognitivas, neuroquímicas e inflamatórias nos modelos experimentais de desmielinização …
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[75] Cyclin dependent kinase‐11, neuroinflammation and Alzheimer's disease: a review
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[76] Ginsenoside Rg1 effect on proliferation of spinal neurons
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[77] The effect of genes and diet on Alzheimer's disease-related molecular mechanisms: Influence of ubiquilin-1 and dietary lipids
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[78] Potential Models of Late-onset Alzheimer’ s Disease
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[79] Inverse correlation between Alzheimer's disease and cancer: implication for a strong impact of regenerative propensity on neurodegeneration?
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