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临床试验/NCT05119179
NCT05119179招募中4 期

Pharmacogenetics of the Response to GLP-1 in Mexican-Americans With Prediabetes

The University of Texas Health Science Center, Houston1 个研究点 分布在 1 个国家目标入组 300 人开始时间: 2021年11月22日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
4 期
状态
招募中
入组人数
300
试验地点
1
主要终点
Mean change in beta cell responsivity

研究概览

简要总结

This project uses both transcriptomic- and genomic-level data to identify mechanisms of individual responses to glucagon-like peptide-1 (GLP-1) in Mexican-Americans with prediabetes. The GLP-1 hormone is essential for glucose reduction, weight loss, cardiovascular risk reduction, and renal protection. Newly discovered mechanisms will illuminate causal links between disease genotype and phenotype, which may ultimately guide personalized therapeutic approaches for type 2 diabetes, prediabetes, obesity, cardiovascular disease, renal disease, and other related diseases.

详细描述

This clinical trial will uncover new mechanisms of inter-individual responses to endogenous and exogenous glucagon-like peptide-1 (GLP-1) in Hispanics/Latinos (H/Ls) with prediabetes. The results move the management of prediabetes, type 2 diabetes mellitus (T2DM), and relevant metabolic diseases to a more individualized approach in an understudied and at-risk population. Few options exist for prediabetes treatment, and the current pharmaceutical management of T2DM does not predict drug treatment failures, nor differences in individual treatment responses and adverse effects. A precise, genetics-based approach will provide superior therapeutic management for patients. GLP-1-based therapies reduce blood glucose, promote weight loss, decrease cardiovascular events, and improve renal function. Prior genetic studies, most done in Caucasians, identified associations between genetic variants and decreased GLP-1-induced insulin secretion, in an effort to guide individualized treatment. However, these associations do not provide a clear mechanistic relationship between genotype and phenotype. Transcriptomic analyses will uncover many of these mechanisms. Here, we propose to 1) test the association of single nucleotide polymorphisms (SNPs) that regulate expression (eQTLs) of 11 candidate genes in a range of relevant metabolic tissues with differential GLP-1 response, 2) perform RNA sequencing before and after treatment to identify eQTLs in blood that predict response to GLP-1 therapy and develop risk-based prediction models in H/Ls, and 3) determine the effects of genetic regulation of candidate genes and newly discovered eQTLs phenome-wide in a large existing biobank, BioVU. For aims 1 and 2, responses will be measured in 300 study subjects with prediabetes recruited from an established Mexican-American cohort via the oral minimal model method, before and after GLP-1 therapy, quantifying GLP-1 hormone efficacy and GLP-1-induced pancreatic beta cell insulin release and peripheral insulin sensitivity. Procedures include serial measurements of plasma glucose, insulin, C-peptide, and GLP-1, and peripheral blood collection for RNA sequencing. Our central hypotheses are: (1) metabolic tissue-based eQTLs of GLP-1-associated genes will be associated with physiological response to endogenous and exogenous GLP-1,(2) identification of eQTLs associated with GLP-1 treatment-induced changes in whole blood will identify new gene targets, and (3) this data will lead to the creation of eQTL-based prediction models for related diseases. The study is innovative because it uses a novel combination of eQTL analysis and oral minimal model to assess GLP-1 response, examines a population highly underrepresented in pharmacogenomic studies, and utilizes novel statistical methods and applications to study gene expression. The significance of this newly acquired mechanistic information will ultimately guide precision therapeutic regimens for diabetes prevention and treatment, weight loss, cardiovascular risk reduction, and related metabolic complications in an understudied population.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Men and women, ages 18 years and older
  • Diagnosis of Prediabetes - defined as either impaired fasting glucose (fasting glucose of 100-125 mg/dL), impaired glucose tolerance (2-hour postprandial blood glucose of 140-199 mg/dL after 75-gram oral glucose challenge), and/or a hemoglobin A1C ranging from 5.7% to 6.4%
  • High risk for progression to diabetes: defined as having at least one of the two following additional factors: Obesity (BMI ≥ 30 kg/m2) and/or metabolically unhealthy status. "Metabolically unhealthy status" is defined as at least two of the following: elevated blood pressure (SBP ≥ 130 mmHg and/or DBP ≥ 85 mmHg), elevated triglycerides ≥ 150 mg/dL, low HDL cholesterol (males < 40 mg/dL; females < 50 mg/dL), and elevated fasting glucose ≥ 100 mg/dL (Wu S et al., 2017).
  • Women of childbearing age must agree to use an acceptable method of pregnancy prevention (barrier methods, abstinence, hormonal contraception, intrauterine contraception, or surgical sterilization) for the duration of the study.
  • Patients must have the following laboratory values: Hematocrit ≥ 34 vol%, estimated glomerular filtration rate ≥ 60 mL/min per 1.73 m2, AST (SGOT) < 2.5 times ULN, ALT (SGPT) < 2.5 times ULN, alkaline phosphatase < 2.5 times ULN

排除标准

  • History of Type 1 or Type 2 diabetes mellitus
  • Pregnant or breastfeeding women
  • Medications: metformin, DPP-4 inhibitors, GLP-1 receptor agonists, SGLT-2 inhibitors, thiazolidinediones, insulin, sulfonylureas, meglitinides, alpha-glucosidase inhibitors, and/or corticosteroids over the last 3 months.
  • Active malignancy
  • History of clinically significant cardiac, hepatic, pancreatic or renal disease.
  • History of any serious hypersensitivity reaction to the study medication (or any other incretin mimetic)
  • Prisoners or subjects who are involuntarily incarcerated
  • Prior history of pancreatitis, medullary thyroid cancer, or multiple endocrine neoplasia type 2 (MEN 2)
  • Family history of medullary thyroid cancer (a rare form of thyroid cancer) or MEN
  • However, as many individuals may not be aware of the specific type of thyroid cancer, will also exclude any family history of thyroid cancer or MEN
  • Hospitalization for COVID-19 in last 3 months

研究组 & 干预措施

Semaglutide

Experimental

Semaglutide 0.25 mg subcutaneously weekly for 4 weeks, followed by semaglutide 0.5 mg subcutaneously weekly for 8 weeks.

干预措施: Semaglutide (Drug)

结局指标

主要结局

Mean change in beta cell responsivity

时间窗: 12 weeks

A rate which measures the ability of beta cells to secrete insulin

Disposition Index

时间窗: 12 weeks

Product of beta cell responsivity and insulin sensitivity (see above)

Gene expression changes for minor variants of eQTLs for WFS1

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Mean change in GLP-1 Area Under the Curve (AUC)

时间窗: 12 weeks

Comparison of GLP-1 AUC measurements before and after drug intervention

Gene expression changes for minor variants of eQTLs for TCF7L2

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for CHST3

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

GLP-1-Induced Potentiation

时间窗: 12 weeks

Measurement of GLP-1 (glucagon-like peptide 1) hormonal efficacy in relationship to postprandial insulin secretion

Gene expression changes for minor variants of eQTLs for KCNQ1

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for SORCS1

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Insulin Sensitivity

时间窗: 12 weeks

Measurement of the efficacy of insulin action at peripheral tissues

Gene expression changes for minor variants of eQTLs for THADA

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for CNR1

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for CTRB1

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for GLP1R

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Previously unidentified cis-eQTLs associated with change in gene expression due to GLP-1 challenge

时间窗: 12 weeks

Study has statistical power to detect previously unidentified eQTLs

Gene expression changes for minor variants of eQTLs for CTRB2

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

Gene expression changes for minor variants of eQTLs for MTNR1B

时间窗: 12 weeks

eQTLs (expresion quantitative trait loci) are genes which affect the mRNA expression of another target gene.

次要结局

  • Polygenic prediction model for GLP-1 therapy-associated outcomes(5 years)
  • Mean change in glucose Area Under the Curve (AUC)(12 weeks)
  • Mean change in C-peptide Area Under the Curve (AUC)(12 weeks)
  • Creation of eQTL-based disease prediction models(5 years)
  • Change in hemoglobin A1C(12 weeks)
  • Mean change in insulin Area Under the Curve (AUC)(12 weeks)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Absalon D Gutierrez

Associate Professor of Medicine

The University of Texas Health Science Center, Houston

研究点 (1)

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