Phloretin and phloridzin improve insulin sensitivity and enhance glucose uptake by subverting PPARγ/Cdk5 interaction in differentiated adipocytes - ScienceDirect
SGLT2-Hemmer als neue Diabetesmedikamente - d-journal
Phloretin protects against cardiac damage and remodeling via restoring SIRT1 and anti-inflammatory effects in the streptozotocin-induced diabetic mouse model | Aging
Empagliflozin: Prävention statt Therapie – SGLT2-Hemmer könnten Diabetes sogar verhindern
Phloridzin Partially Ameliorates the Development of Diabetes in Mice... | Download Scientific Diagram
Comparative oral and intravenous pharmacokinetics of phlorizin in rats having type 2 diabetes and in normal rats based on phase II metabolism - Food & Function (RSC Publishing)
Phloridzin: Biosynthesis, distribution and physiological relevance in plants - ScienceDirect
Effect of phloridzin on blood glucose in diabetic and non-diabetic... | Download Scientific Diagram
Proposed antidepressant-like mechanisms of phloridzin (PHLO) with the... | Download Scientific Diagram
Nutrients | Free Full-Text | Phloridzin, an Apple Polyphenol, Exerted Unfavorable Effects on Bone and Muscle in an Experimental Model of Type 2 Diabetes in Rats
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Antioxidants | Free Full-Text | Enzymatic Production of 3-OH Phlorizin, a Possible Bioactive Polyphenol from Apples, by Bacillus megaterium CYP102A1 via Regioselective Hydroxylation
The potential applications and further use of phloridzin: (a) as an... | Download Scientific Diagram
Apple Root 95% Phloridzin Organic Extract
Insulin Sensitivity-Enhancing Activity of Phlorizin Is Associated with Lipopolysaccharide Decrease and Gut Microbiota Changes in Obese and Type 2 Diabetes (db/db) Mice | Journal of Agricultural and Food Chemistry
Effect of diabetes, insulin, and phlorizin treatment on CiC mRNA and... | Download Scientific Diagram
effect of phlorizin on diabetic nephropathy of sdt fatty rats. urinary... | Download Scientific Diagram
Phloridzin Ameliorates Lipid Deposition in High-Fat-Diet-Fed Mice with Nonalcoholic Fatty Liver Disease via Inhibiting the mTORC1/SREBP-1c Pathway | Journal of Agricultural and Food Chemistry