Effects of Metformin and Sitagliptin Monotherapy on Expression of Intestinal and Renal Sweet Taste Receptors and Glucose Transporters in a Rat Model of Type 2 Diabetes.
Animals
Diabetes Mellitus, Type 2
/ drug therapy
Disease Models, Animal
Gene Expression Regulation
/ drug effects
Glucose Transport Proteins, Facilitative
/ genetics
Insulin Resistance
/ genetics
Intestine, Small
/ drug effects
Kidney
/ drug effects
Metformin
/ pharmacology
RNA, Messenger
/ genetics
Rats, Zucker
Receptors, G-Protein-Coupled
/ genetics
Signal Transduction
/ drug effects
Sitagliptin Phosphate
/ pharmacology
Taste
/ drug effects
Journal
Hormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme
ISSN: 1439-4286
Titre abrégé: Horm Metab Res
Pays: Germany
ID NLM: 0177722
Informations de publication
Date de publication:
May 2020
May 2020
Historique:
pubmed:
7
4
2020
medline:
27
2
2021
entrez:
7
4
2020
Statut:
ppublish
Résumé
Disordered intestinal sweet taste receptors (STRs) are implicated in glucose homeostasis by involving in incretin secretion and glucose absorption. However, the effects of antidiabetic medications on STRs, downstream molecules, and glucose transporters expression are unknown. In our study, ZDF rats (n=24) were randomly treated by metformin (MET, 215.15 mg/kg), sitagliptin (SIT, 10.76 mg/kg), or saline for 4 weeks. Fasting blood glucose and insulin levels were measured, and HOMA-IR and QUICKI index were calculated. One week later, we detected relative mRNA expression of T1R2/T1R3, α-gustducin, TRPM5 and glucose transporters including SGLT1, SGLT2, and GLUT2 in the small intestine and kidney. We found that though both metformin and sitagliptin effectively decreased fasting blood glucose, only metformin improved HOMA-IR and QUICKI (p<0.05). MRNA levels of STRs and sweet taste molecules in duodenum and jejunum were not different among three groups, but those in ileum were dramatically upregulated after SIT (vs. MET p<0.05; vs. CON p<0.01). SGLT1 and GLUT2 in ileum were markedly increased after SIT (p<0.01). In the kidney, expression of SGLT2 and GLUT2 were downregulated in both SIT and MET group (p<0.05). In conclusion, metformin and sitagliptin exerted different effects on expression of STRs and glucose transporters in the gut and kidney. STRs, downstream molecules, and glucose transporters in distal small intestinal were sensitively increased in response to sitagliptin than metformin treatment. Renal glucose transporters were downregulated after metformin and sitagliptin treatment.
Substances chimiques
Glucose Transport Proteins, Facilitative
0
RNA, Messenger
0
Receptors, G-Protein-Coupled
0
Metformin
9100L32L2N
Sitagliptin Phosphate
TS63EW8X6F
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
329-335Subventions
Organisme : NSFC 81670728
ID : National Natural Science Foundation of China
Organisme : 2019PJD027
ID : Shanghai Pujiang Program
Organisme : 20181807
ID : Clinical research funding in Renji Hospital affiliated to Shanghai Jiaotong University
Organisme : PYZY16-020
ID : Shanghai Municipal Education Commission-Gaofeng Clinical Medicine Grant Support
Informations de copyright
© Georg Thieme Verlag KG Stuttgart · New York.
Déclaration de conflit d'intérêts
The authors declare that they have no conflict of interest.