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1.
Indian J Exp Biol ; 2014 Jul; 52(7): 683-691
Article in English | IMSEAR | ID: sea-153748

ABSTRACT

Ursolic acid (UA) is a pentacyclic triterpenoid compound that naturally occurs in fruits, leaves and flowers of medicinal herbs. This study investigated the dose-response efficacy of UA (0.01 and 0.05%) on glucose metabolism, the polyol pathway and dyslipidemia in streptozotocin/nicotinamide-induced diabetic mice. Supplement with both UA doses reduced fasting blood glucose and plasma triglyceride levels in non-obese type 2 diabetic mice. High-dose UA significantly lowered plasma free fatty acid, total cholesterol and VLDL-cholesterol levels compared with the diabetic control mice, while LDL-cholesterol levels were reduced with both doses. UA supplement effectively decreased hepatic glucose-6-phosphatase activity and increased glucokinase activity, the glucokinase/glucose-6-phosphatase ratio, GLUT2 mRNA levels and glycogen content compared with the diabetic control mice. UA supplement attenuated hyperglycemia-induced renal hypertrophy and histological changes. Renal aldose reductase activity was higher, whereas sorbitol dehydrogenase activity was lower in the diabetic control group than in the non-diabetic group. However, UA supplement reversed the biochemical changes in polyol pathway to normal values. These results demonstrated that low-dose UA had preventive potency for diabetic renal complications, which could be mediated by changes in hepatic glucose metabolism and the renal polyol pathway. High-dose UA was more effective anti-dyslipidemia therapy in non-obese type 2 diabetic mice.


Subject(s)
Animals , Antineoplastic Agents, Phytogenic/pharmacology , Blotting, Western , Diabetes Complications/etiology , Diabetes Complications/pathology , Diabetes Complications/prevention & control , Diabetes Mellitus, Experimental/complications , Diabetes Mellitus, Experimental/drug therapy , Diabetes Mellitus, Experimental/metabolism , Diabetes Mellitus, Type 2/complications , Diabetes Mellitus, Type 2/drug therapy , Diabetes Mellitus, Type 2/metabolism , Dyslipidemias/drug therapy , Dyslipidemias/etiology , Dyslipidemias/pathology , Glucokinase/metabolism , Glucose/metabolism , Glucose Transporter Type 2/genetics , Glucose-6-Phosphatase/metabolism , Glycogen/metabolism , Hyperglycemia/complications , Kidney Diseases/etiology , Kidney Diseases/pathology , Kidney Diseases/prevention & control , Male , Mice , Mice, Inbred ICR , Mice, Inbred NOD , Polymers/metabolism , RNA, Messenger/genetics , Real-Time Polymerase Chain Reaction , Reverse Transcriptase Polymerase Chain Reaction , Signal Transduction/drug effects , Triterpenes/pharmacology
2.
Indian J Hum Genet ; 2013 Jan; 19(1): 84-86
Article in English | IMSEAR | ID: sea-147641

ABSTRACT

Fanconi-Bickel syndrome is an extremely rare hereditary metabolic disease, characterized by hepatomegaly due to glycogen storage, refractory hypophosphatemic rickets, marked growth retardation and proximal renal tubular acidosis. Recurrent bone fractures are one of the hallmark findings. It is a single gene disorder; the responsible gene belongs to the facilitative glucose transporters 2 (GLUT2) family gene or (SLC2A2) mapped to the q26.1-26.3 locus on chromosome 3, and encodes the GLUT protein 2. This protein is expressed in pancreatic ί-cells, hepatocytes, renal tubules, and intestinal mucosa. Several mutations in the GLUT2 gene have been reported in different ethnicities. Herein we report an Iranian girl with a missed diagnosis of osteogenesis imperfecta. She was referred with the history of frequent fractures, and severe motor delay and was suspected to osteogenesis imperfecta. Following the case we detected refractory rickets instead of OI, sever growth failure, proximal renal tubulopathy and RTA, and enlarged kidneys, progressive hepatomegaly, and GSD on liver biopsy. Glucose and galactose tolerance tests confirmed abnormal carbohydrate metabolism. Molecular analysis on GLUT2 gene revealed a homozygous novel mutation in exon 5; it was 15 nucleotide deletion and 7 nucleotide insertion and caused a frame shift mutation, produced a premature truncated protein (P.A229QFsX19). This mutation has not been reported before in the relevant literature.


Subject(s)
Child, Preschool , Delayed Diagnosis , Fanconi Syndrome/diagnosis , Fanconi Syndrome/epidemiology , Fanconi Syndrome/genetics , Female , Glucose Transporter Type 2/genetics , Humans , Iran , Mutation , Osteogenesis Imperfecta/diagnosis , Osteogenesis Imperfecta/epidemiology , Osteogenesis Imperfecta/genetics
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