Sichuan provincial people's hospital
Chengdu, Sichuan, 610000, China
NCT Number: NCT03108521
Incretin-based therapy is currently one of the most popular diabetes treatment approaches. However, differences of response ware found in previous studies. We hypothesis that SNPs of DPP-4, GLP-1 and GLP-1R genes may play crucial roles in the response differences. Therefore, this study aims to investigate the correlation of incretin-related gene polymorphism and individual differences in the response of DPP-4 inhibators (take Sitagliptin as an example). In addition, The distribution differences of the SNPs in diabetics and non-diabetics are evaluated to study the relationships between the SNPs and diabetes onsets.
Looking for future studies?
Notify Me18 year–70 year
All sexes
Interventional
Phase 4
Chengdu, Sichuan, 610000, China
Single Nucleotide Polymorphism (SNP) plays an important role in the differences of clinical manifestations and drug responses of diseases. The vast majority of SNP sites are located in the non-coding region of the gene (about 95%), which is called SNP(non-coding SNP (ncSNP), while the other part of SNP is located in the coding region of the gene, which is called coding SNP (cSNP). Furthermore, cSNP can be divided into two categories: SNP that does not change the encoded amino acid sequence is called synonymous SNP(synonymous SNP, SSNP); SNP that changes amino acid sequence is called SNP(non-synonymous SNP (NSNP). Although not involved in coding amino acid, some ncSNPs may also affect the regulation of protein expression. Therefore, it is of great significance to study the effects of NC SNP and cSNP on the occurrence and development of diseases and drugs.
DPP-4 enzyme inhibitor is combined with DPP-4 enzyme in human body to reduce hydrolysis of active GLP-1, thus increasing the level of endogenous active GLP-1. Active GLP-1 combines with its receptor GLP-1R to promote insulin release and inhibit glucagon release in hyperglycemia state, and produces opposite effect in hypoglycemia state.
Based on the above principles, we speculate that SNP of genes that may affect the hypoglycemic effect of DPP-4 enzyme inhibitor are:
However, studies on the hypoglycemic effect of DPP-4, GLP-1 and their receptors on DPP-4 enzyme inhibitors in the treatment of T2DM are rare, which is not conducive to the evaluation of individualized treatment of such drugs. Therefore, this chapter intends to select SNP sites with high mutation frequencies of DPP-4, GLP-1 and GLP-1R genes to study the mutation frequencies of these SNPs in diabetic patients and non-diabetic patients and their effects on DPP-4 enzyme inhibitor sitagliptin's hypoglycemic effect on T2DM patients.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
For Sitagliptin group--
Inclusion criteria
Exclusion criteria
For non-T2D group--
No major diseases such as tumors, no dyslipidemia, chronic diseases such as hypertension, and non-diabetic patients whose blood sugar and glycated hemoglobin values cannot meet the criteria for diagnosis of T2DM, and the age is over 50 years old.
100mg.QD for 3 months
Other names: Januvia
Time frame: 12 weeks later
non-T2D subjects only tested HbA1c at baseline. Of the 71 patients who completed the study, 69 collected HbA1c at both baseline and study endpoint, and 2 subjects did not carry out HbA1c measurement for personal reasons.
Time frame: Baseline
24 SNPs genetic points of DPP-4, GLP-1 and GLP-1R.
Time frame: Basline and 12 weeks later. Fasting, 0.5h, 2h,3h after take 75g glucose orally.
Fasting Blood glucose, the postprandial 0.5-hour,2-hour,3-hour blood glucose were measured at baseline and at study end points, and the difference between baseline and study end points were compared.Participants in "Non-T2DM Group" were not taking Sitagliptin, so their blood glucose were not measured.
Time frame: Basline and 12 weeks later. Fasting and 0.5h, 2h,3h after take 75g glucose orally.
Fasting insulin, the postprandial 0.5-hour,2-hour,3-hour insulin were measured at baseline and at study end points, and the difference between baseline and study end points were compared.The changes in fasting insulin, the postprandial 0.5-hour,2-hour,3-hour insulin were compared among patients with different genotypes at baseline and at study end points.Participants in "Non-T2DM Group" were not taking Sitagliptin, so their insulin were not measured.
Time frame: Basline and 12 weeks later. Fasting and 2h after take 75g glucose orally.
Fasting C-peptide, the postprandial 2-hour C-peptide were measured at baseline and at study end points, and the difference between baseline and study end points were compared.The changes in fasting C-peptide, the postprandial 2-hour C-peptide were compared among patients with different genotypes at baseline and at study end points.Participants in "Non-T2DM Group" were not taking Sitagliptin, so their C-peptide were not measured.
Sichuan Provincial People's Hospital
Other
Study on Polymorphism of DPP-4 and GLP-1R Genes in Chinese Population and Its Empirical Study on Treatment of Diabetes
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT00038727
Body Weight, CVD
Rockville, Maryland, United States
View Trial DetailsNCT06029517
Arterial Occlusive Diseases, Arteriosclerosis
Buffalo, New York, United States
View Trial DetailsNCT01934660
Cardiovascular Disease, Cardiovascular Diseases
Bethesda, Maryland, United States
View Trial DetailsNCT07728162
Diabetes Mellitus, Disease Attributes
Bolu, Turkey (Türkiye)
View Trial Details