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Insulin Secretion in Diabetes Before and After Glycemic Control

Pathogenesis of the Impaired Incretin Effect in Type 2 Diabetes

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00469833
Enrollment
17
Registered
2007-05-07
Start date
2008-04-30
Completion date
2012-09-30
Last updated
2015-01-15

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Diabetes, Hyperglycemia

Keywords

Diabetes, Glucose Tolerance, Incretin, Insulin

Brief summary

The objective of this project is to understand defects in insulin secretion that contribute to abnormal glucose metabolism in patients with diabetes. In particular the effects of signals released from the intestine to stimulate insulin secretion will be tested. Patients with type 2 diabetes will have insulin secretion in response to glucose and intestinal factors before and after insulin treatment to lower their blood glucose. It is expected that the results of this work will provide valuable information for treating diabetic people.

Detailed description

The objective of this project is to understand defects in insulin secretion that contribute to abnormal glucose metabolism in patients with diabetes. Diabetes is a major problem for patients receiving care at VA medical centers among whom 20% are affected. Specifically, this project will seek to determine the mechanism(s) by which the incretin effect is impaired in diabetic patients. The incretin effect refers to the action of GI hormones and neural stimuli to increase insulin secretion after food intake, and accounts for approximately 50% of postprandial insulin secretion in nondiabetic humans. There are several studies indicating that this response is severely impaired in patients with type 2 diabetes. The mechanism(s) by which this occurs has not been explained. There is some evidence to suggest that secretion of the important incretins, glucagon-like peptide 1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP), may be impaired in diabetic individuals. There is also some data to suggest that the beta-cells in persons with diabetes are insensitive to the incretins. The problem with the current state of knowledge in this area is that previous work has involved small numbers of diabetic subjects, and did not directly test mechanisms by which the incretin effect is altered in diabetes. In this project we will determine the role of hyperglycemia to impair the incretin effect. Type 2 diabetic subjects will have the incretin effect measured before and after intensified diabetes treatment. This study will test the effect of chronic hyperglycemia on incretin mediated insulin secretion. In all studies, the incretin effect will be measured before and after these interventions using studies with a within subjects design. A combined glucose clamp/meal tolerance test protocol will be used to quantify the incretin effect. These studies will allow the role of incretin secretion, incretin action, and overall metabolic milieu, on postprandial insulin secretion to be defined. The results of these studies will add important new information for understanding abnormal beta-cell function in diabetes. By identifying the sites where the incretin effect is impaired this project will provide the basis for new approaches to treat diabetic patients. This is especially relevant with the recent availability of new medications that target the incretin pathways to lower blood glucose. The blood samples will be drawn and processed in the GCRC. The samples will be frozen and stored in Building 15, Room 401. Samples will be shipped to the Genome Research Institute by staff trained in IATA shipping procedures.

Interventions

DRUGinsulin glargine

Diabetic subjects will be treated with insulin glargine once daily for 2 months. Subjects will monitor their blood glucose and have their insulin dose adjusted in steps of 4-6 units to achieve a goal of less than or equal to 120 mg/dl for fasting blood glucose.

Sponsors

US Department of Veterans Affairs
Lead SponsorFED

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
30 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

* Aim 1: * (non-diabetics) * male/female 30-65 yrs old, * free of active medical disease, * no history of diabetes. * (diabetics) * HbA1c=6.5-8.5, * treated with metformin, a sulfonylurea, or combination, * Stable body wt with BMI 28-40. * Aim 2: Same as above * Aim 3: Diabetic with HgA1c 8.0-9.5

Exclusion criteria

* Aim 1: For both groups: no history of: pancreatitis, cardiac, gastrointestinal, renal or liver disease. * Aim 2: Same as above * Aim 3: Same as above, plus a diagnosis of incipient diabetic nephropathy severe nonproliferative, or proliferative retinopathy.

Design outcomes

Primary

MeasureTime frameDescription
ISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.180 minutesSubjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.
C-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.180 minutesSubjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.
Insulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.180 minutesSubjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.

Secondary

MeasureTime frameDescription
HbA1c Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.2 monthsType 2 diabetic subjects had HbA1c measured before and after 2 months of basal insulin glargine treatment.

Countries

United States

Participant flow

Recruitment details

Recruited from VAMC from 2010-2012

Pre-assignment details

No subjects excluded

Participants by arm

ArmCount
Arm 1
Within subjects comparison; before and after treatment. Beta-cell function measured with OGTT/hyperglycemic clamp
17
Total17

Withdrawals & dropouts

PeriodReasonFG000
Overall StudyNo IV access2

Baseline characteristics

CharacteristicArm 1
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
17 Participants
Age, Continuous58.1 years
STANDARD_DEVIATION 6.6
Region of Enrollment
United States
17 participants
Sex: Female, Male
Female
1 Participants
Sex: Female, Male
Male
16 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
0 / 15
serious
Total, serious adverse events
0 / 15

Outcome results

Primary

C-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.

Subjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.

Time frame: 180 minutes

ArmMeasureGroupValue (MEAN)Dispersion
Oral GlucoseC-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.C-peptide at 8 weeks10.89 nmol/LStandard Error 2.2
Oral GlucoseC-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.C-peptide at baseline7.10 nmol/LStandard Error 0.92
IV GlucoseC-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.C-peptide at 8 weeks6.02 nmol/LStandard Error 0.88
IV GlucoseC-peptide Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.C-peptide at baseline5.63 nmol/LStandard Error 0.97
Primary

Insulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.

Subjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.

Time frame: 180 minutes

ArmMeasureGroupValue (MEAN)Dispersion
Oral GlucoseInsulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin at baseline546.9 pmol/LStandard Error 162.6
Oral GlucoseInsulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin at 8 weeks934.6 pmol/LStandard Error 282.2
IV GlucoseInsulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin at baseline316.4 pmol/LStandard Error 59
IV GlucoseInsulin Concentration in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin at 8 weeks395.6 pmol/LStandard Error 106.3
Primary

ISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.

Subjects had glucose clamps for 270 minutes with serial sampling of blood for measurement of insulin and C-peptide. At 90 minutes into the clamp they consumed 75 g of oral glucose solution. Meal-stimulated insulin secretion was summarized as the mean plasma C-peptide from 90-270 minutes. This outcome measure was compared for each subject before treatment and after 2 months of insulin treatment to lower blood glucose. Subjects were started on 20 units of insulin glargine after their first visit and asked to measure their morning blood glucose daily. The dose of insulin was increased in increments of 4-6 units every 3 days targeting an average morning glucose level of less then 120 mg/dl. After 2 months of treatment the primary outcome was repeated with a second glucose clamp / oral glucose tolerance test, identical to the first.

Time frame: 180 minutes

ArmMeasureGroupValue (MEAN)Dispersion
Oral GlucoseISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin secretion at baseline0.67 pmol/minStandard Error 0.07
Oral GlucoseISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin secretion at 8 weeks1.11 pmol/minStandard Error 0.22
IV GlucoseISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin secretion at baseline0.75 pmol/minStandard Error 0.1
IV GlucoseISR in Response to a Glucose Clamp and Oral Glucose Ingestion Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.Insulin secretion at 8 weeks0.76 pmol/minStandard Error 0.11
Secondary

HbA1c Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.

Type 2 diabetic subjects had HbA1c measured before and after 2 months of basal insulin glargine treatment.

Time frame: 2 months

ArmMeasureGroupValue (MEAN)Dispersion
Oral GlucoseHbA1c Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.HbA1c at baseline8.6 % glycosylated hemoglobinStandard Error 0.2
Oral GlucoseHbA1c Before and After 2 Months of Insulin Treatment to Improve Average Glycemia.HbA1c at 8 weeks7.1 % glycosylated hemoglobinStandard Error 0.2

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026