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Keyword [Trimethylamine-N-oxide]
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1. A Study About The Relation Between The Stroke With Gut Microbiota And Its Metabolite-trimethylamine-N-oxide
2. Relationship Between Trimethylamine-N-Oxide And Aquaporin-2 In The Mechanism Of Hypertension
3. A Preliminary Study On The Relation Between Stroke And Trimethylamine N-oxide And The Effect Of Tan-Huo-Fang On Trimethylamine N-oxide
4. Trimethylamine-N-Oxide (TMAO) Promotes Vascular Remodeling And Potential Mechanism In Mice
5. Role Of Trimethylamine N-oxide In Atherosclerotic Progression And The Modulative Effects Of Eliminating Sputum And Removing Stasis Formulation
6. Study On Mechanism Of Probiotics On Preventing And Treating Trimethylamine N-oxide-Induced Atherosclerosis
7. Study On The Implication Of The Gut Microbial Metabolite Trimethylamine-N-oxide On Venous Thrombosis
8. Gut Microbiota-Related Metabolites And Risks Of Gestational Diabetes And Macrosomia
9. The Prognostic Value Of Plasma Trimethylamine N-oxide Levels In Cerebrovascular Diseases
10. Effect Of Trimethylamine-N-oxide On CKD Rat Vascular Calcification And The Mechanisms Exploration
11. Mechanisms Of NaHCO3 And TMAO Regulate Renal Afferent Arteriolar Tone And Glomerular Filtration Rate In Hypertension
12. Intestinal Microbial Metabolite Trimethylamine Oxide And The Pathological Characteristics And Prognosis Of Acute Myocardial Infarction Plaques
13. Clinical Research On Changes Of Gut Microecology And TMAO Level In Patients With ST-segment Elevation Myocardial Infarction Or Unstable Angina Pectoris
14. Correlation Between Trimethylamine N-Oxide Content And Severity Of Coronary Atherosclerotic Stenosis
15. Plasma Trimethylamine N-oxide Levels And Prognosis In Patients With Acute Heart Failure
16. The Nested Case-control Study Of Trimethylamine N-oxide And Cardiovascular Disease Risk
17. Correlation Between Plasma TMAO Levels And Severity Of Coronary Artery Disease And Effects Of Ezetimibe On Plasma TMAO Levels
18. Effect Of Intestinal Trimethylamine-N-oxide On Diabetic Nephropathy Via MAPK/NF-κB Signaling Pathway
19. TMAO Affects Proliferation Of Cardiac Fibroblasts Via PI3K/AKT/mTOR Signaling Pathway
20. Resveratrol Attenuates Senescence Of Human Umbilical Vein Endothelial Cells (HUVECs) Induced By H2O2 Combined With Trimethylamine-N-oxide And Its Potential Mechanisms
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