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번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | Host microbiota constantly control maturation and function of microglia in the CNS | 미소장 |
2 | The Role of Tau in Alzheimer's Disease and Related Disorders | 미소장 |
3 | Structural and functional features of central nervous system lymphatic vessels | 미소장 |
4 | The gut-brain axis: interactions between enteric microbiota, central and enteric nervous systems. | 미소장 |
5 | BDNF serum and CSF concentrations in Alzheimer’s disease, normal pressure hydrocephalus and healthy controls | 미소장 |
6 | Inhibition of IL-12/IL-23 signaling reduces Alzheimer's disease–like pathology and cognitive decline | 미소장 |
7 | IL12 polymorphisms, HBV infection and risk of hepatocellular carcinoma in a high‐risk Chinese population | 미소장 |
8 | Psychobiotics: A Novel Class of Psychotropic | 미소장 |
9 | Oxidative stress mediates the pathogenic effect of different Alzheimer’s disease risk factors | 미소장 |
10 | Inhibition of soluble TNF signaling in a mouse model of Alzheimer's disease prevents pre-plaque amyloid-associated neuropathology | 미소장 |
11 | Hippocampal neurogenesis as a target for the treatment of mental illness: A critical evaluation | 미소장 |
12 | Chronic Neuron-Specific Tumor Necrosis Factor-Alpha Expression Enhances the Local Inflammatory Environment Ultimately Leading to Neuronal Death in 3xTg-AD Mice | 미소장 |
13 | Thirty years of Alzheimer's disease genetics: the implications of systematic meta-analyses | 미소장 |
14 | Metal ions, Alzheimer's disease and chelation therapy | 미소장 |
15 | The presenilin hypothesis of Alzheimer's disease: Evidence for a loss-of-function pathogenic mechanism | 미소장 |
16 | Synaptic plasticity of NMDA receptors: mechanisms and functional implications | 미소장 |
17 | Interleukin-6 induces Alzheimer-type phosphorylation of tau protein by deregulating the cdk5/p35 pathway | 미소장 |
18 | Antidepressant-Like Effects of the Histone Deacetylase Inhibitor, Sodium Butyrate, in the Mouse | 미소장 |
19 | The short-chain fatty acid acetate reduces appetite via a central homeostatic mechanism | 미소장 |
20 | Dietary modulation of the human colonic microbiota: updating the concept of prebiotics | 미소장 |
21 | The Serotonin Syndrome | 미소장 |
22 | Depression and Risk for Alzheimer Disease | 미소장 |
23 | Oxidative Stress and the Pathogenesis of Alzheimer's Disease | 미소장 |
24 | CD36 Mediates the Innate Host Response to β-Amyloid | 미소장 |
25 | Tau in Alzheimer Disease and Related Tauopathies | 미소장 |
26 | ABAD Directly Links Aß to Mitochondrial Toxicity in Alzheimer's Disease | 미소장 |
27 | Oxidative stress precedes fibrillar deposition of Alzheimer's disease amyloid β-peptide (1–42) in a transgenic Caenorhabditis elegans model | 미소장 |
28 | The Role of the Reactive Oxygen Species and Oxidative Stress in the Pathomechanism of the Age‐Related Ocular Diseases and Other Pathologies of the Anterior and Posterior Eye Segments in Adults | 미소장 |
29 | Psychiatric disorders associated with Alzheimer's disease | 미소장 |
30 | The amyloid hypothesis of Alzheimer's disease at 25 years | 미소장 |
31 | Novel osmotin inhibits SREBP2 via the AdipoR1/AMPK/SIRT1 pathway to improve Alzheimer’s disease neuropathological deficits | 미소장 |
32 | Inflammatory Cytokines and Alzheimer’s Disease: A Review from the Perspective of Genetic Polymorphisms | 미소장 |
33 | The Role of Reactive Oxygen Species in the Pathogenesis of Alzheimer’s Disease, Parkinson’s Disease, and Huntington’s Disease: A Mini Review | 미소장 |
34 | Minocycline reduces inflammatory parameters in the brain structures and serum and reverses memory impairment caused by the administration of amyloid β (1-42) in mice | 미소장 |
35 | Diagnostic Biomarkers of Alzheimer’s Disease as Identified in Saliva using 1H NMR-Based Metabolomics | 미소장 |
36 | The vicious circle of hypometabolism in neurodegenerative diseases: Ways and mechanisms of metabolic correction | 미소장 |
37 | Microbiota modulation counteracts Alzheimer’s disease progression influencing neuronal proteolysis and gut hormones plasma levels | 미소장 |
38 | The Enteric Network: Interactions between the Immune and Nervous Systems of the Gut | 미소장 |
39 | Bacterial Probiotics their Importances and Limitations: A Review | 미소장 |
40 | Therapeutic potential of Bifidobacterium breve strain A1 for preventing cognitive impairment in Alzheimer’s disease | 미소장 |
41 | Protective roles of intestinal microbiota derived short chain fatty acids in Alzheimer’s disease-type beta-amyloid neuropathological mechanisms | 미소장 |
42 | Prebiotic Effect of Fructooligosaccharides from Morinda officinalis on Alzheimer’s Disease in Rodent Models by Targeting the Microbiota-Gut-Brain Axis | 미소장 |
43 | Decreased microglial activation through gut-brain axis by prebiotics, probiotics, or synbiotics effectively restored cognitive function in obese-insulin resistant rats | 미소장 |
44 | Nutritional patterns associated with the maintenance of neurocognitive functions and the risk of dementia and Alzheimer’s disease: A focus on human studies | 미소장 |
45 | A novel polyphenolic prebiotic and probiotic formulation have synergistic effects on the gut microbiota influencing Drosophila melanogaster physiology | 미소장 |
46 | The Brain-Gut-Microbiome Axis | 미소장 |
47 | Gut microbes as future therapeutics in treating inflammatory and infectious diseases: Lessons from recent findings | 미소장 |
48 | Personalized Gut Mucosal Colonization Resistance to Empiric Probiotics Is Associated with Unique Host and Microbiome Features | 미소장 |
49 | Probiotic and selenium co-supplementation, and the effects on clinical, metabolic and genetic status in Alzheimer's disease: A randomized, double-blind, controlled trial | 미소장 |
50 | Amyloid-β pathology enhances pathological fibrillary tau seeding induced by Alzheimer PHF in vivo | 미소장 |
51 | Psychobiotics in mental health, neurodegenerative and neurodevelopmental disorders | 미소장 |
52 | Small molecules as therapeutic drugs for Alzheimer's disease | 미소장 |
53 | Crosstalk between Oxidative Stress and Tauopathy | 미소장 |
54 | A novel synbiotic delays Alzheimer’s disease onset via combinatorial gut-brain-axis signaling in Drosophila melanogaster | 미소장 |
55 | The pros, cons, and many unknowns of probiotics | 미소장 |
56 | Effects of Bifidobacterium breve A1 on the cognitive function of older adults with memory complaints: a randomised, double-blind, placebo-controlled trial | 미소장 |
57 | Effect of synbiotic and probiotic supplementation on serum brain-derived neurotrophic factor level, depression and anxiety symptoms in hemodialysis patients: a randomized, double-blinded, clinical trial | 미소장 |
58 | Role of the Immune System in the Development of the Central Nervous System | 미소장 |
59 | New Insights Into the Pathogenesis of Alzheimer's Disease | 미소장 |
60 | Sodium Butyrate Reduces Brain Amyloid-β Levels and Improves Cognitive Memory Performance in an Alzheimer’s Disease Transgenic Mouse Model at an Early Disease Stage | 미소장 |
61 | Oxidative Stress and Dementia in Alzheimer’s Patients: Effects of Synbiotic Supplementation | 미소장 |
62 | Protective effect of sodium propionate in Aβ1-42 -induced neurotoxicity and spinal cord trauma | 미소장 |
63 | B cells migrate into remote brain areas and support neurogenesis and functional recovery after focal stroke in mice | 미소장 |
64 | The Bewildering Effect of AMPK Activators in Alzheimer’s Disease: Review of the Current Evidence | 미소장 |
65 | Metabolomics and incident dementia in older Chinese adults: The Shanghai Aging Study | 미소장 |
66 | Potentiation of anti-Alzheimer activity of curcumin by probiotic Lactobacillus rhamnosus UBLR-58 against scopolamine-induced memory impairment in mice | 미소장 |
67 | Synbiotic-Derived Metabolites Reduce Neuroinflammatory Symptoms of Alzheimer’s Disease | 미소장 |
68 | Clinical Trials of Probiotic Strains in Selected Disease Entities | 미소장 |
69 | Prebiotics Regulation of Intestinal Microbiota Attenuates Cognitive Dysfunction Induced by Surgery Stimulation in APP/PS1 Mice | 미소장 |
70 | Tau Protein and Its Role in Blood–Brain Barrier Dysfunction | 미소장 |
71 | The gut microbiota–brain axis in behaviour and brain disorders | 미소장 |
72 | G82S RAGE polymorphism influences amyloid-RAGE interactions relevant in Alzheimer’s disease pathology | 미소장 |
73 | The Microbiome and Alzheimer’s Disease: Potential and Limitations of Prebiotic, Synbiotic, and Probiotic Formulations | 미소장 |
74 | The Effect of Synbiotic and Probiotic Supplementation on Mental Health Parameters in Patients Undergoing Hemodialysis: A Double-blind, Randomized, Placebo-controlled Trial | 미소장 |
75 | Lactobacillus plantarum 69-2 Combined with Galacto-Oligosaccharides Alleviates |
미소장 |
76 | Prebiotic Lactulose Ameliorates the Cognitive Deficit in Alzheimer’s Disease Mouse Model through Macroautophagy and Chaperone-Mediated Autophagy Pathways | 미소장 |
77 | Alzheimer’s disease and its treatment by different approaches: A review | 미소장 |
78 | The Relationship Between Anxiety and Alzheimer’s Disease1 | 미소장 |
79 | Gut microbiota in mental health and depression: role of pre/pro/synbiotics in their modulation | 미소장 |
80 | Cholinergic System and Its Therapeutic Importance in Inflammation and Autoimmunity | 미소장 |
81 | Nutraceuticals-based therapeutic approach: recent advances to combat pathogenesis of Alzheimer’s disease | 미소장 |
82 | Serum BDNF as a Potential Biomarker of Alzheimer's Disease: Verification Through Assessment of Serum, Cerebrospinal Fluid, and Medial Temporal Lobe Atrophy | 미소장 |
83 | Blood-Brain Barrier Dysfunction in CNS Disorders and Putative Therapeutic Targets: An Overview | 미소장 |
84 | The beneficial effect of synbiotics consumption on Alzheimer's disease mouse model via reducing local and systemic inflammation | 미소장 |
85 | Alzheimer disease | 미소장 |
86 | Therapeutic potential of natural molecules against Alzheimer's disease via SIRT1 modulation | 미소장 |
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