scholarly article | Q13442814 |
P50 | author | Marie-Christine Pardon | Q47414263 |
P2093 | author name string | Bai Li | |
David A Kendall | |||
Alessandra Agostini | |||
Ding Yuchun | |||
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Methylglyoxal produced by amyloid-β peptide-induced nitrotyrosination of triosephosphate isomerase triggers neuronal death in Alzheimer's disease. | Q39016771 | ||
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Methylglyoxal can mediate behavioral and neurochemical alterations in rat brain | Q39729176 | ||
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Lipopolysaccharide administration induces sex-dependent behavioural and serotonergic neurochemical signatures in mice | Q40383617 | ||
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Sub-pyrogenic systemic inflammation impacts on brain and behavior, independent of cytokines. | Q40455033 | ||
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Lipopolysaccharide-induced depressive-like behavior is mediated by indoleamine 2,3-dioxygenase activation in mice. | Q34655648 | ||
Expression of tryptophan 2,3-dioxygenase and production of kynurenine pathway metabolites in triple transgenic mice and human Alzheimer's disease brain | Q34695396 | ||
Brain S-adenosylmethionine levels are severely decreased in Alzheimer's disease | Q34734276 | ||
A systematic analysis of the peripheral and CNS effects of systemic LPS, IL-1β, [corrected] TNF-α and IL-6 challenges in C57BL/6 mice | Q34809312 | ||
Exacerbation of CNS inflammation and neurodegeneration by systemic LPS treatment is independent of circulating IL-1β and IL-6. | Q35057271 | ||
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Serum concentration of an inflammatory glycotoxin, methylglyoxal, is associated with increased cognitive decline in elderly individuals | Q35626858 | ||
What is the tryptophan kynurenine pathway and why is it important to neurotherapeutics? | Q35788398 | ||
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Periodontitis and Cognitive Decline in Alzheimer's Disease. | Q35952361 | ||
Assessing burrowing, nest construction, and hoarding in mice | Q36015466 | ||
Age related changes in microglial phenotype vary between CNS regions: grey versus white matter differences | Q36052653 | ||
Sulfur as a signaling nutrient through hydrogen sulfide | Q36384782 | ||
Growth hormone modulates hypothalamic inflammation in long-lived pituitary dwarf mice | Q36410031 | ||
Pyruvate is an endogenous anti-inflammatory and anti-oxidant molecule | Q36461570 | ||
Gender differences in murine airway responsiveness and lipopolysaccharide-induced inflammation | Q36488811 | ||
Magnetic Resonance Spectroscopy discriminates the response to microglial stimulation of wild type and Alzheimer's disease models. | Q36507045 | ||
Peroxisomes and oxidative stress | Q36620921 | ||
Chronic Pyruvate Supplementation Increases Exploratory Activity and Brain Energy Reserves in Young and Middle-Aged Mice. | Q36693936 | ||
Methionine sulfoxide reductase A affects β-amyloid solubility and mitochondrial function in a mouse model of Alzheimer's disease | Q36698716 | ||
Longevity in mice: is stress resistance a common factor? | Q36766862 | ||
Methylglyoxal-Induced Endothelial Cell Loss and Inflammation Contribute to the Development of Diabetic Cardiomyopathy | Q36930808 | ||
Kynurenine metabolic balance is disrupted in the hippocampus following peripheral lipopolysaccharide challenge | Q36945317 | ||
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Association Between Genetic Traits for Immune-Mediated Diseases and Alzheimer Disease | Q36999150 | ||
Impaired burrowing is the most prominent behavioral deficit of aging htau mice | Q37025330 | ||
Nutritional aspect of tryptophan metabolism | Q37059595 | ||
Distinct inflammatory phenotypes of microglia and monocyte-derived macrophages in Alzheimer's disease models: effects of aging and amyloid pathology. | Q37591996 | ||
Untargeted metabolomic analysis of miltefosine action in Leishmania infantum reveals changes to the internal lipid metabolism | Q37613357 | ||
Considering sex and gender in Alzheimer disease and other dementias | Q37618533 | ||
Reduction of Abeta amyloid pathology in APPPS1 transgenic mice in the absence of gut microbiota | Q37631109 | ||
Metabolic characteristics and importance of the universal methionine salvage pathway recycling methionine from 5'-methylthioadenosine. | Q37641189 | ||
Anti-inflammatory and anti-excitoxic effects of diethyl oxopropanamide, an ethyl pyruvate bioisoster, exert robust neuroprotective effects in the postischemic brain | Q37654867 | ||
Sulfur-based redox alterations in long-lived Snell dwarf mice. | Q37656505 | ||
Sex differences in microglial CX3CR1 signalling determine obesity susceptibility in mice | Q37661264 | ||
Human genetic and metabolite variation reveals that methylthioadenosine is a prognostic biomarker and an inflammatory regulator in sepsis | Q37688733 | ||
Oxidative stress and aging: is methylglyoxal the hidden enemy? | Q37731347 | ||
Utilization of APPswe/PS1dE9 Transgenic Mice in Research of Alzheimer's Disease: Focus on Gene Therapy and Cell-Based Therapy Applications | Q37960498 | ||
Peroxisomes, oxidative stress, and inflammation | Q38014836 | ||
Methylglyoxal, obesity, and diabetes | Q38043965 | ||
The resolution of neuroinflammation in neurodegeneration: leukocyte recruitment via the choroid plexus. | Q38172891 | ||
Inflammation as a link between obesity, metabolic syndrome and type 2 diabetes | Q38209594 | ||
Co-morbidity and systemic inflammation as drivers of cognitive decline: new experimental models adopting a broader paradigm in dementia research. | Q38388693 | ||
Lipopolysaccharide modification in Gram-negative bacteria during chronic infection. | Q38807634 | ||
Sex differences in immune responses | Q38933353 | ||
Role of gut microbiota and nutrients in amyloid formation and pathogenesis of Alzheimer disease. | Q38955990 | ||
S-adenosylmethionine mediates inhibition of inflammatory response and changes in DNA methylation in human macrophages | Q38960576 | ||
Sex differences in hippocampal function | Q39015315 | ||
P921 | main subject | Alzheimer's disease | Q11081 |
lipopolysaccharide | Q421804 | ||
systemic inflammation | Q7663815 | ||
P304 | page(s) | 87-111 | |
P577 | publication date | 2019-09-24 | |
P1433 | published in | Brain, Behavior, and Immunity | Q15716593 |
P1476 | title | Sex-specific hippocampal metabolic signatures at the onset of systemic inflammation with lipopolysaccharide in the APPswe/PS1dE9 mouse model of Alzheimer's disease | |
P478 | volume | 83 |
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Q90479650 | Increasing Tau 4R Tau Levels Exacerbates Hippocampal Tau Hyperphosphorylation in the hTau Model of Tauopathy but Also Tau Dephosphorylation Following Acute Systemic Inflammation |
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