Empagliflozin and Hepatic Glucose Metabolism

Effect of Empagliflozin on Hepatic Glucose Metabolism: Role of Autonomic Nervous System

the aim of this study is to examine the role of autonomic nervous system in the increase in hepatic glucose production in response to glucosuria caused by inhibition of renal glucose uptake

Study Overview

Status

Completed

Conditions

Intervention / Treatment

Detailed Description

Purpose/Objectives: To investigate the effect of empagliflozin, an SGLT2 inhibitor on hepatic glucose production and the role of autonomic nervous system in mediating the increase in hepatic glucose production in response glucosuria Research Design/Plan: the role of autonomic nervous system in the increase in hepatic glucose production caused by empagliflozin will be examined with norepinephrine (NE) turnover in two protocols. The first protocol is cross sectional, in which 36 T2DM patients will receive hepatic glucose production (HGP) and NE turnover will be measured before and after empagliflozin or placebo administration. In protocol 2, diabetic and non-diabetic subjects will receive baseline HGP, NE turnover, hepatic glucose uptake (HGU) and liver fat measurement before at 2 days after the start and 12 weeks after empagliflozin or placebo treatment.

Methods: the following techniques will be employed (1) Measurement of hepatic glucose production with 3H-glucose infusion, with and without glucose clamp, (2) substrate oxidation with indirect calorimetry and plasma ketone/lactate/insulin/glucagon concentrations; (3) Measurement of HGU with Oral-IV double tracer infusion; (4) Measurement of whole body norepinephrine turnover with 3H-norepinephrine infusion; (5) Measurement of heart rate variability; (6) Measurement of liver fat content with 1H-MRS Clinical Relevance: The results of the present studies will help identify the mechanism responsible for the increase in HGP caused by empagliflozin and the increase in ketone production. The first action of the drug ameliorates its clinical efficacy while the second increases the risk of adverse events (ketoacidosis). Identifying the mechanisms underlying these actions will help developing therapeutic strategies which increase the drug clinical efficacy and mitigates its adverse events.

Study Type

Interventional

Enrollment (Actual)

72

Phase

  • Phase 4

Contacts and Locations

This section provides the contact details for those conducting the study, and information on where this study is being conducted.

Study Locations

    • Texas
      • San Antonio, Texas, United States, 78229
        • Diabetes Division, UTHSCSA

Participation Criteria

Researchers look for people who fit a certain description, called eligibility criteria. Some examples of these criteria are a person's general health condition or prior treatments.

Eligibility Criteria

Ages Eligible for Study

18 years to 65 years (Adult, Older Adult)

Accepts Healthy Volunteers

Yes

Description

Inclusion Criteria:

  • eGFR>60 ml/min healthy volunteers type 2 diabetes patients who otherwise healthy

Exclusion Criteria:

  • eGFR <60 T2DM patients on insulin, GLP-1 RA or SGLT2 treatment Major organ disease type 1 diabetes

Study Plan

This section provides details of the study plan, including how the study is designed and what the study is measuring.

How is the study designed?

Design Details

  • Primary Purpose: Basic Science
  • Allocation: Randomized
  • Interventional Model: Parallel Assignment
  • Masking: Double

Arms and Interventions

Participant Group / Arm
Intervention / Treatment
Experimental: Treatment
empagliflozin 25 mg per day
subjects will receive daily dose of 25mg of empagliflozin for 3 months
Placebo Comparator: control
matching placebo 1 pill per day
Placebo
Other Names:
  • Placebo

What is the study measuring?

Primary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Effect of Empagliflozin on Autonomic Nervous System
Time Frame: Baseline and 12 weeks

autonomic activity will be measured with as NE turnover rate.

Total-body NE turnover rate was measured with 3H-NE infusion. A prime (3.8 µCi)-continuous (0.38 µCi/min) infusion of 3H-NE was started and continued for 60 minutes. Arterialized blood samples were collected before the start and between the 40-60 minute time period after the start of 3H-NE infusion. Total body NE turnover rate was calculated as the 3H-NE infusion rate (dpm/min) divided by the steady state plasma 3H-NE specific activity (dpm/pg) after 30 minutes

Baseline and 12 weeks

Secondary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Hepatic Glucose Production
Time Frame: Baseline and 12 weeks
HGP will be measured with tracer dilution technique
Baseline and 12 weeks

Other Outcome Measures

Outcome Measure
Measure Description
Time Frame
Absolute Percentage Change From Baseline to 12 Weeks in Hepatic Fat Content
Time Frame: Baseline and12 weeks
the effect of treatment on hepatic fat content will be measured with MRS.
Baseline and12 weeks

Collaborators and Investigators

This is where you will find people and organizations involved with this study.

Sponsor

Collaborators

Investigators

  • Principal Investigator: Muhammad Abdul-Ghani, MD, PhD, Diabetes Division, UTHSCSA

Study record dates

These dates track the progress of study record and summary results submissions to ClinicalTrials.gov. Study records and reported results are reviewed by the National Library of Medicine (NLM) to make sure they meet specific quality control standards before being posted on the public website.

Study Major Dates

Study Start (Actual)

May 20, 2018

Primary Completion (Actual)

January 30, 2023

Study Completion (Actual)

January 30, 2024

Study Registration Dates

First Submitted

June 17, 2017

First Submitted That Met QC Criteria

June 17, 2017

First Posted (Actual)

June 21, 2017

Study Record Updates

Last Update Posted (Actual)

August 28, 2024

Last Update Submitted That Met QC Criteria

August 7, 2024

Last Verified

August 1, 2024

More Information

Terms related to this study

Other Study ID Numbers

  • HSC20170214H
  • 2R01DK097554-06 (U.S. NIH Grant/Contract)

Plan for Individual participant data (IPD)

Plan to Share Individual Participant Data (IPD)?

NO

Drug and device information, study documents

Studies a U.S. FDA-regulated drug product

Yes

Studies a U.S. FDA-regulated device product

No

product manufactured in and exported from the U.S.

Yes

This information was retrieved directly from the website clinicaltrials.gov without any changes. If you have any requests to change, remove or update your study details, please contact register@clinicaltrials.gov. As soon as a change is implemented on clinicaltrials.gov, this will be updated automatically on our website as well.

Clinical Trials on Hepatic Glucose Metabolism

Clinical Trials on Empagliflozin 25 MG

Search Similar Trials