234 results on '"Iwasaki, Yusaku"'
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2. Repeated activation of C1 neurons in medulla oblongata decreases anti-inflammatory effect via the hypofunction of the adrenal gland adrenergic response
3. Onion component, isoalliin, stimulates feeding and activates the arcuate nucleus neuropeptide Y, ghrelin- and Ninjin'yoeito-responsive neurons
4. Hypergravity load-induced hyperglycemia occurs due to hypothermia and increased plasma corticosterone level in mice
5. The liver–brain–gut neural arc maintains the Treg cell niche in the gut
6. Impaired Fat Absorption from Intestinal Tract in High-Fat Diet Fed Male Mice Deficient in Proglucagon-Derived Peptides.
7. Short-chain fatty acids suppress food intake by activating vagal afferent neurons
8. Glucagon-like peptide-1 and insulin synergistically activate vagal afferent neurons
9. Involvement of thermosensitive TRP channels in energy metabolism
10. Administration of small-molecule guanabenz acetate attenuates fatty liver and hyperglycemia associated with obesity
11. Oleuropein aglycone enhances UCP1 expression in brown adipose tissue in high-fat-diet-induced obese rats by activating β-adrenergic signaling
12. Glucagon-Like Peptide-1 Is Involved in the Thermic Effects of Dietary Proteins in Male Rodents
13. Hepatic glycogenolysis and hypometabolism induced by chemogenetic stimulation of C1 neurons
14. Glucagon-Like Peptide-1 Is Involved in the Thermic Effects of Dietary Proteins in Male Rodents
15. Ghrelin counteracts insulin-induced activation of vagal afferent neurons via growth hormone secretagogue receptor
16. Complexity of Stomach–Brain Interaction Induced by Molecular Hydrogen in Parkinson’s Disease Model Mice
17. Stimulatory effect of imeglimin on incretin secretion
18. Glucose‐dependent insulinotropic polypeptide counteracts diet‐induced obesity along with reduced feeding, elevated plasma leptin and activation of leptin‐responsive and proopiomelanocortin neurons in the arcuate nucleus
19. Galvanic vestibular stimulation-induced activation of C1 neurons in medulla oblongata protects against acute lung injury
20. 摂食調節における求心性迷走神経の役割
21. Pancreatic polypeptide and peptide YY3–36 induce Ca2+ signaling in nodose ganglion neurons
22. Vagal afferents sense meal-associated gastrointestinal and pancreatic hormones: Mechanism and physiological role
23. Dietary Gamma-Aminobutyric Acid (GABA) Induces Satiation by Enhancing the Postprandial Activation of Vagal Afferent Nerves
24. TRPA1 and TRPV1 activation is a novel adjuvant effect mechanism in contact hypersensitivity
25. Miogadial and miogatrial with α,β-unsaturated 1,4-dialdehyde moieties—Novel and potent TRPA1 agonists
26. Isolation of coniferyl esters from Capsicum baccatum L., and their enzymatic preparation and agonist activity for TRPV1
27. Monoacylglycerols Activate Capsaicin Receptor, TRPV1
28. Gastrointestinal Distension by Pectin-Containing Carbonated Solution Suppresses Food Intake and Enhances Glucose Tolerance via GLP-1 Secretion and Vagal Afferent Activation
29. Lipophilicity of capsaicinoids and capsinoids influences the multiple activation process of rat TRPV1
30. Relay of peripheral oxytocin to central oxytocin neurons via vagal afferents for regulating feeding
31. Peripheral circadian rhythms in the liver and white adipose tissue of mice are attenuated by constant light and restored by time-restricted feeding
32. ゼロカロリー甘味料D-AlluloseのGLP-1分泌と求心性迷走神経を介した過食・肥満・糖尿病改善作用
33. Central Injection of Leptin Increases Sympathetic Nerve Outflows to the Stomach and Spleen in Anesthetized Rats
34. Effects of Sanyaku and Its Constituent Diosgenin on the Fasted and Postprandial Hypertriacylglycerolemia in High-Fat-Diet-Fed KK-Ay Mice
35. GLP-1 release and vagal afferent activation mediate the beneficial metabolic and chronotherapeutic effects of D-allulose
36. Glucagon directly interacts with vagal afferent nodose ganglion neurons to induce Ca2+ signaling via glucagon receptors
37. GLP-1 release and vagal afferent activation mediate the beneficial metabolic and chronotherapeutic effects of D-allulose
38. The liver–brain–gut neural arc maintains the Tregcell niche in the gut
39. Endogenous GLP-1 acts on paraventricular nucleus to suppress feeding: Projection from nucleus tractus solitarius and activation of corticotropin-releasing hormone, nesfatin-1 and oxytocin neurons
40. Caspase-1 deficiency promotes high-fat diet-induced adipose tissue inflammation and the development of obesity
41. Immunoproteasome subunit LMP7 Deficiency Improves Obesity and Metabolic Disorders
42. N-methyl-d-aspartate receptor coagonist d-serine suppresses intake of high-preference food
43. Peripheral oxytocin activates vagal afferent neurons to suppress feeding in normal and leptin-resistant mice: a route for ameliorating hyperphagia and obesity
44. Food Components Activating Capsaicin Receptor TRPV1
45. Effects of Sanyakuand Its Constituent Diosgenin on the Fasted and Postprandial Hypertriacylglycerolemia in High-Fat-Diet-Fed KK-AyMice
46. Nesfatin-1 evokes Ca 2+ signaling in isolated vagal afferent neurons via Ca 2+ influx through N-type channels
47. Diallyl sulfides in garlic activate both TRPA1 and TRPV1
48. TRIB1 downregulates hepatic lipogenesis and glycogenesis via multiple molecular interactions
49. Insulin Activates Vagal Afferent Neurons Including those Innervating Pancreas via Insulin Cascade and Ca2+ Influx: Its Dysfunction in IRS2-KO Mice with Hyperphagic Obesity
50. Bupropion can close KATP channel and induce insulin secretion
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