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Journal Article
Antihyperglycemic effect of Bridelia ndellensis ethanol extract and fractions in streptozotocin-induced diabetic rats, 12/2005
The effects of the ethanol extract (1.25 g/kg) and fractions (1 g/kg) of Bridelia ndellensis stem bark on the blood glucose levels in streptozotocin-induced... 
hypoglycemic effect | Bridelia ndellensis | rats | Streptozotocin | diabetes
Journal
by Si, YL and Zhao, YL and Hao, HJ and Liu, JJ and Guo, YL and Mu, YM and Shen, J and Cheng, Y and Fu, XB and Han, WD
DIABETES, ISSN 0012-1797, 06/2012, Volume 61, Issue 6, pp. 1616 - 1625
Infusion of mesenchymal stem cells (MSCs) has been shown to effectively lower blood glucose in diabetic individuals, but the mechanism involved could not be... 
SKELETAL-MUSCLE | INSULIN-RESISTANCE | UMBILICAL-CORD | BONE-MARROW | ENDOCRINOLOGY & METABOLISM | TISSUE-REPAIR | GLUCOSE TRANSPORTERS | MODEL | STROMAL CELLS | STREPTOZOTOCIN-TREATED RAT | TRANSPLANTATION
Journal Article
Effect of Azadirachta indica   leaf extract on serum lipid profile changes in normal and streptozotocin induced diabetic rats, 12/2005
Effects of Azadirachta indica   leaf extract on serum lipid profile changes in normal and streptozotocin - induced diabetic rats have been studied with a view... 
cardiovascular disease | Streptozotocin induced diabetes | Serum lipid profiles | Azadirachta indica
Journal
Toxicology and Applied Pharmacology, ISSN 0041-008X, 02/2015, Volume 282, Issue 3, pp. 297 - 310
The phytochemical, curcumin, has been reported to play many beneficial roles. However, under diabetic conditions, the detail mechanism of its beneficial action... 
Oxidative and endoplasmic reticulum (ER) stress | Inflammation | Curcumin | ER/mitochondrial dependent and independent apoptosis | Diabetes | Antioxidant | ACTIVATED PROTEIN-KINASE | D-SACCHARIC ACID-1,4-LACTONE | BETA-CELLS | GLUCOSE-TRANSPORT | SIGNALING PATHWAY | INDUCED OXIDATIVE STRESS | PROTECTIVE ROLE | IN-VIVO | PHARMACOLOGY & PHARMACY | TOXICOLOGY | STREPTOZOTOCIN | NF-KAPPA-B | Diabetes Mellitus, Experimental - drug therapy | Rats, Wistar | Apoptosis - drug effects | Male | NF-kappa B - metabolism | Insulin - blood | Glucose Transporter Type 2 - metabolism | Diabetes Mellitus, Experimental - blood | Anti-Inflammatory Agents - therapeutic use | Diabetes Mellitus, Experimental - metabolism | Heme Oxygenase (Decyclizing) - metabolism | Cytokines - blood | Hypoglycemic Agents - therapeutic use | Cell Survival - drug effects | Blood Glucose - analysis | Curcumin - therapeutic use | Cytokines - metabolism | Anti-Inflammatory Agents - pharmacology | Curcumin - pharmacology | Pancreas - drug effects | Pancreas - pathology | Antioxidants - pharmacology | Pancreas - metabolism | Hypoglycemic Agents - pharmacology | Antioxidants - therapeutic use | Animals | NF-E2-Related Factor 2 - metabolism | Oxidative Stress - drug effects | Nitric Oxide - metabolism | Nitric Oxide Synthase Type II - metabolism | Glucose metabolism | Pancreatic beta cells | Blood sugar | Apoptosis | Index Medicus | APOPTOSIS | CURCUMIN | MATERIALS RECOVERY | MITOCHONDRIA | RIBOSE | PANCREAS | RATS | 60 APPLIED LIFE SCIENCES | STRESSES | INSULIN | LYMPHOKINES | GLUCOSE | INFLAMMATION | DIABETES MELLITUS
Journal Article
Journal of the Science of Food and Agriculture, ISSN 0022-5142, 03/2015, Volume 95, Issue 5, pp. 991 - 999
BACKGROUND In the present study, the composition of mango peel powder (MPP) collected from the mango pulp industry was determined and the effect of MPP on... 
streptozotocin induced diabetes | antioxidant enzymes | diabetes | mango peel | oxidative stress | Oxidative stress | Streptozotocin induced diabetes | Mango peel | Diabetes | Antioxidant enzymes | BIOACTIVE COMPOUNDS | FOOD SCIENCE & TECHNOLOGY | COMPONENTS | RAW | GENTISIC ACID | PURIFICATION | AGRICULTURE, MULTIDISCIPLINARY | CHEMISTRY, APPLIED | METABOLITE | Mangifera - chemistry | Overweight - complications | Liver - enzymology | Hypoglycemic Agents - economics | Kidney - pathology | Oxidative Stress | Rats, Wistar | Kidney - enzymology | Male | Diabetes Mellitus, Experimental - diet therapy | Oxidoreductases - blood | Plant Extracts - administration & dosage | Antioxidants - economics | Kidney - metabolism | Plant Extracts - economics | Hypoglycemic Agents - administration & dosage | Diabetes Mellitus, Experimental - complications | Diabetes Mellitus, Experimental - metabolism | Diabetic Nephropathies - prevention & control | Hyperlipidemias - complications | Kidney - physiopathology | Diabetes Mellitus, Experimental - physiopathology | Hypoglycemic Agents - therapeutic use | Hyperglycemia - prevention & control | Oxidoreductases - metabolism | Fruit - chemistry | Liver - metabolism | Plant Extracts - isolation & purification | Hyperlipidemias - prevention & control | Overweight - prevention & control | Industrial Waste - analysis | India | Industrial Waste - economics | Dietary Supplements - economics | Hypoglycemic Agents - isolation & purification | Antioxidants - therapeutic use | Animals | Antioxidants - isolation & purification | Antioxidants - administration & dosage | Lipid Peroxidation | Plant Extracts - therapeutic use | Food-Processing Industry - economics | Antioxidants | Polyphenols | Streptozocin | Blood sugar | Diets | Urine | Lipoproteins | Rats | Byproducts | Dietary fibre | Foods
Journal Article
PLoS ONE, ISSN 1932-6203, 11/2012, Volume 7, Issue 11, p. e50619
Journal Article
European Journal of Pharmacology, ISSN 0014-2999, 02/2016, Volume 773, pp. 13 - 23
Vascular endothelial dysfunction is regarded as the initial step of vascular complications in diabetes mellitus. This study investigated the amelioration of... 
Naringenin | Type 2 diabetic rats | Vascular dysfunction | Palmitic acid | Apigenin | Streptozotocin | OXIDATIVE STRESS | HIGH-FAT DIET | FLAVONOIDS | STREPTOZOTOCIN-TREATED RAT | CHOLESTEROL-FED RABBITS | INSULIN-RESISTANCE | ENDOTHELIAL-CELLS | IN-VIVO | CARDIOVASCULAR-DISEASE | PHARMACOLOGY & PHARMACY | NF-KAPPA-B | Human Umbilical Vein Endothelial Cells - metabolism | Humans | Body Weight - drug effects | Male | NF-kappa B - metabolism | Diabetes Mellitus, Type 2 - metabolism | RNA, Messenger - metabolism | Phenylephrine - pharmacology | Fasting - blood | Lipid Peroxidation - drug effects | Aorta, Thoracic - drug effects | Nitric Oxide - biosynthesis | Glucose Tolerance Test | Human Umbilical Vein Endothelial Cells - drug effects | Anti-Inflammatory Agents - pharmacology | Flavanones - pharmacology | RNA, Messenger - genetics | Insulin Resistance | Rats | Aorta, Thoracic - physiopathology | Rats, Sprague-Dawley | Vasoconstriction - drug effects | Diabetes Mellitus, Type 2 - blood | Animals | Diabetes Mellitus, Type 2 - physiopathology | Intercellular Adhesion Molecule-1 - genetics | Lipid Metabolism - drug effects | Vasodilation - drug effects | Blood Glucose - metabolism | Apigenin - pharmacology | RNA | Streptozocin | Blood sugar | Superoxide | Insulin | Endothelium | Glucose metabolism | Nitric oxide | Physiological aspects | Insulin resistance | Acetylcholine | Diabetes | Saturated fatty acids | Blood proteins
Journal Article
European Journal of Pharmacology, ISSN 0014-2999, 12/2015, Volume 769, pp. 313 - 323
Journal Article
Journal Article
Journal of Neurochemistry, ISSN 0022-3042, 07/2018, Volume 146, Issue 2, pp. 173 - 185
Diabetic peripheral neuropathy is one of the most common microvascular complications that occurs with both type 1 and type 2 diabetes mellitus. It has a... 
liraglutide | diabetic peripheral neuropathy | streptozotocin | inflammation | matrix metalloproteinases | oxidative stress | ACTIVATION | PREGABALIN | BIOCHEMISTRY & MOLECULAR BIOLOGY | RECEPTOR | DISORDERS | FACTOR-KAPPA-B | MODEL | NEUROSCIENCES | PAIN | GLUCAGON-LIKE PEPTIDE-1 | PARKINSONS-DISEASE | EXTRACT | Hypoglycemic Agents - therapeutic use | Rats, Wistar | Extracellular Matrix - drug effects | Glycated Hemoglobin A - metabolism | Body Weight - drug effects | Rats | Male | Diabetic Neuropathies - drug therapy | Antibiotics, Antineoplastic | Vitamin B Complex - toxicity | Animals | Inflammation - drug therapy | Liraglutide - therapeutic use | Pain Threshold - drug effects | Niacinamide - toxicity | Streptozocin - toxicity | Matrix Metalloproteinases - metabolism | Oxidative Stress - drug effects | Blood Glucose - metabolism | Diabetic Neuropathies - chemically induced | Diabetic Neuropathies - complications | Disease Models, Animal | Type 2 diabetes | Oxidative stress | Inflammation | NADPH | Neuroprotection | Body weight | Interleukin | Superoxide dismutase | Diabetes mellitus (insulin dependent) | Matrix metalloproteinase | Peripheral neuropathy | Remodeling | Prostaglandin endoperoxide synthase | Rodents | Cold treatment | Amputation | DNA fragmentation | Hemoglobin | Extracellular matrix | Metalloproteinase | Diabetes mellitus (non-insulin dependent) | Deoxyribonucleic acid--DNA | Pain perception | Cytokines | Complications | Diabetes mellitus | Gene expression | Insulin | Malondialdehyde | Quality of life | Latency | Nitric oxide | Nicotinamide | Microvasculature | Diabetes | Sciatic nerve
Journal Article