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Preferred Treatment of Type 1.5 Diabetes

Rosiglitazone Intervention Study in Patients With Type 1.5 Diabetes

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00194896
Enrollment
64
Registered
2005-09-19
Start date
2000-02-29
Completion date
2008-12-31
Last updated
2018-03-29

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

Conditions

Type 2 Diabetes Mellitus

Keywords

type 2 diabetes mellitus, autoantibodies, islet proteins, rosiglitazone, glyburide, c-peptide

Brief summary

The purpose of this research was to test whether one treatment was superior over another in the management of type 1.5 diabetes. Specifically we tested recently diagnosed antibody positive type 2 diabetic patients to determine whether treatment with rosiglitazone results in greater preservation of beta cell function compared to treatment with glyburide.

Detailed description

Type 1 diabetes and Type 2 diabetes have different underlying pathophysiologic processes. The disease process in classical Type 1 diabetes is an autoimmune destruction of the pancreatic beta cells. In contrast, the disease process in classical Type 2 diabetes is not autoimmune in nature, a decreased sensitivity to insulin action is central to the disease process, and a poorly understood but non-inflammatory beta cell lesion occurs which diminishes insulin secretion. In clinical practice, the diagnosis of Type 1 versus Type 2 diabetes is made phenotypically using variables such as age at onset, apparent abruptness of onset of hyperglycemia, presence of ketosis, degree of obesity (especially central and intra abdominal), prevalence of other autoimmune diseases, and apparent need for insulin replacement. This clinical distinction of Type 1 versus Type 2 diabetes is recognized to be imperfect. There is also a third group of individuals, who phenotypically are usually like classic Type 2 diabetics but who are positive for one or more of the autoantibodies commonly seen in the Type 1 disease process, namely islet cell antibodies (ICA) and/or insulin autoantibodies (IAA) and/or autoantibodies to glutamic acid decarboxylase (GAD Ab) and/or autoantibodies to the tyrosine phosphatase islet cell autoantibody 512 (IA 2 Ab). These patients, autoantibody positive \[Ab(+)\] Type 2 or Type 1.5 diabetes, were the focus of our study. Compared to antibody negative Type 2 diabetics, patients with Type 1.5 diabetes have a more rapid decline in beta cell function, fail sulfonylurea therapy and require insulin therapy earlier (4-13). Hypothesis: Rosiglitazone treatment will ameliorate or slow the underlying disease process in antibody positive Type 2 diabetes. Patients meeting the inclusion criteria came in for a baseline visit. The nature of the study was explained and informed consent obtained. A fasting blood sample was obtained for autoantibodies, glucose, C peptide of proinsulin molecule (C-peptide), glycosylated hemoglobin (HbA1c), genetic typing, and T lymphocyte (T cell) responses to islet antigens. The beta cell function test was performed. Patients were then randomized to either rosiglitazone or glyburide. All patients were encouraged to perform self blood glucose monitoring twice per day, before breakfast and before dinner. The treatment goals for all patients was the same: before breakfast and before dinner blood sugar levels between 90-130 milligrams per deciliter (mg/dI) and HbA1c of less then 7% without severe hypoglycemia. Patients unable to reach goal with monotherapy had metformin (initially) or acarbose (secondarily) added, as there is no evidence to suggest that either affect beta-cell function. The rosiglitazone treatment group commenced therapy with 4 milligram (mg) once per day and increased to twice per day if adequate glycemic control was not achieved. For glyburide, therapy was initiated with 2.5 mg in the morning or the patient was maintained on the dose they had been receiving prior to starting the study. The starting dose was raised by 2.5 mg in the evening and further up to a maximum of 10 mg twice a day if necessary to achieve desired glycemic control. If adequate control, HbA1c less than 7%, was not achieved on glyburide or rosiglitazone monotherapy, metformin was added and the dose gradually increased as needed and tolerated to a maximum of 1000 mg twice daily. If necessary, acarbose was also used up to a maximum dose of 100 mg thrice daily as needed and tolerated. After initiation of the study, patients were seen at 1 month and then every 3 months for up to 3 years. Those patients randomized to rosiglitazone had the liver enzyme alanine transaminase (ALT) monitored every 2 months. In addition, telephone contact was utilized to achieve and maintain glycemic goals. Each participant was followed for up to 3 years. Drs. Chiu and Palmer coordinated the study. If the patient and his/her private physician prefer, the treatment protocol was implemented by the patient's private physician.

Interventions

DRUGrosiglitazone

Tablet taken orally at a dosage of 4 mg once per day and increase to twice per day if adequate glycemic control was not achieved. Study drug was taken up to 3 years.

DRUGglyburide

Tablet taken orally, initially 2.5 mg in the morning or dose subject received prior to starting the study. Dosage was increased by 2.5 mg in the evening up to a maximum of 10 mg twice a day if necessary to achieve desired glycemic control. Study drug was taken up to 3 years.

Sponsors

Seattle Institute for Biomedical and Clinical Research
CollaboratorOTHER
GlaxoSmithKline
CollaboratorINDUSTRY
University of Washington
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
35 Years to 69 Years
Healthy volunteers
No

Inclusion criteria

* Age at onset of diabetes - 35-69 years old. * No history of ketonuria or ketoacidosis. * Not requiring insulin to achieve glycemic control. * Not receiving more than two oral hypoglycemic agents. * Not taking a thiazolidinedione agent. * HbA1c in established patients (on an oral hypoglycemia agent for over 4 months) of greater than 6% and under 10%. * Fasting c-peptide greater than or equal to 0.8 ng/ml. * Women must be either post-menopausal or on adequate birth control (i.e. oral contraceptives, tubal ligation, hysterectomy, condoms, or diaphragm) or use abstinence.

Exclusion criteria

* Patients with history of chronic pancreatitis or other secondary causes of diabetes. * Patients receiving systemic corticosteroids. * Patients with severe systemic illness (e.g. recent MI, CHF or cerebral vascular disease). * Creatinine greater than 1.4 or liver enzymes greater than 2 times the upper limits of normal. * Not able to adhere to the protocol.

Design outcomes

Primary

MeasureTime frameDescription
Changes in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.36 monthsChanges in beta cell function assessed by fasting and stimulated C-peptide measured at 36 months.

Secondary

MeasureTime frameDescription
Patients Positive for T Cell Responses to Islet Proteins at 36 Months.36 monthsNumber of participants positive for T cell reactivity to islet proteins at 36 months.

Countries

United States

Participant flow

Recruitment details

Recruited through endocrinology physicians.

Participants by arm

ArmCount
Rosiglitazone Autoantibody Positive
Rosiglitazone is an oral antidiabetic agent which acts primarily by increasing insulin sensitivity. The rosiglitazone treatment group commenced therapy with 4 milligram (mg) once per day and increase to twice per day if adequate glycemic control was not achieved. Autoantibody positive for one or multiple islet autoantibodies. These autoantibodies include insulin autoantibodies(IAA), islet cell autoantibodies (ICA), glutamic acid decarboxylase (GAD),and/or islet cell autoantibodies 512 (IA2).
15
Rosiglitazone Autoantibody Negative
Rosiglitazone is an oral antidiabetic agent which acts primarily by increasing insulin sensitivity. The rosiglitazone treatment group commenced therapy with 4 mg once per day and increase to twice per day if adequate glycemic control was not achieved. Autoantibody negative for insulin autoantibodies (IAA), islet cell autoantibodies (ICA), glutamic acid decarboxylase (GAD), and islet cell autoantibodies 512 (IA2).
15
Glyburide Autoantibody Positive
Glyburide is a sulfonylurea. Glyburide therapy was initiated with 2.5 mg in the morning or the patient was maintained on the dose they had been receiving prior to starting the study. This starting dose was raised by 2.5 in the evening and further up to a maximum of 10 mg twice a day if necessary to achieve desired glycemic control. Autoantibody positive for one or multiple islet autoantibodies. These autoantibodies include insulin autoantibodies(IAA), islet cell autoantibodies (ICA), glutamic acid decarboxylase (GAD), islet cell autoantibodies 512 (IA2).
13
Glyburide Autoantibody Negative
Glyburide is a sulfonylurea. Glyburide therapy was initiated with 2.5 mg in the morning or the patient was maintained on the dose they had been receiving prior to starting the study. This starting dose was raised by 2.5 in the evening and further up to a maximum of 10 mg twice a day if necessary to achieve desired glycemic control. Autoantibody negative for insulin autoantibodies (IAA), islet cell autoantibodies (ICA), glutamic acid decarboxylase (GAD), and islet cell autoantibodies 512 (IA2).
21
Total64

Baseline characteristics

CharacteristicRosiglitazone Autoantibody NegativeGlyburide Autoantibody PositiveRosiglitazone Autoantibody PositiveGlyburide Autoantibody NegativeTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
2 Participants1 Participants1 Participants3 Participants7 Participants
Age, Categorical
Between 18 and 65 years
13 Participants12 Participants14 Participants18 Participants57 Participants
Age, Continuous56.4 years
STANDARD_DEVIATION 8.7
53.7 years
STANDARD_DEVIATION 9
55.4 years
STANDARD_DEVIATION 8.8
57.5 years
STANDARD_DEVIATION 6.9
55.8 years
STANDARD_DEVIATION 1.6
Region of Enrollment
United States
15 participants13 participants15 participants21 participants64 participants
Sex: Female, Male
Female
4 Participants2 Participants4 Participants8 Participants18 Participants
Sex: Female, Male
Male
11 Participants11 Participants11 Participants13 Participants46 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
— / —— / —— / —— / —
other
Total, other adverse events
0 / 150 / 151 / 131 / 21
serious
Total, serious adverse events
1 / 152 / 150 / 133 / 21

Outcome results

Primary

Changes in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.

Changes in beta cell function assessed by fasting and stimulated C-peptide measured at 36 months.

Time frame: 36 months

Population: Analysis per protocol

ArmMeasureGroupValue (MEAN)Dispersion
Rosiglitazone Autoantibody PositiveChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Fasting C-peptide-0.4 ng per mlStandard Deviation 1
Rosiglitazone Autoantibody PositiveChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Glucagon Stimulated C-peptide-0.6 ng per mlStandard Deviation 1.6
Rosiglitazone Autoantibody NegativeChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Glucagon Stimulated C-peptide-2.8 ng per mlStandard Deviation 2.5
Rosiglitazone Autoantibody NegativeChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Fasting C-peptide-1.4 ng per mlStandard Deviation 1.6
Glyburide Autoantibody PositiveChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Fasting C-peptide0.1 ng per mlStandard Deviation 1.2
Glyburide Autoantibody PositiveChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Glucagon Stimulated C-peptide3.1 ng per mlStandard Deviation 12.1
Glyburide Autoantibody NegativeChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Fasting C-peptide0.3 ng per mlStandard Deviation 1.1
Glyburide Autoantibody NegativeChanges in Beta Cell Function Assessed by Fasting and Stimulated C-peptide Measured at 36 Months.Glucagon Stimulated C-peptide0.3 ng per mlStandard Deviation 2.2
Secondary

Patients Positive for T Cell Responses to Islet Proteins at 36 Months.

Number of participants positive for T cell reactivity to islet proteins at 36 months.

Time frame: 36 months

ArmMeasureValue (NUMBER)Dispersion
Rosiglitazone Autoantibody PositivePatients Positive for T Cell Responses to Islet Proteins at 36 Months.1 participants 0
Rosiglitazone Autoantibody NegativePatients Positive for T Cell Responses to Islet Proteins at 36 Months.2 participants 0
Glyburide Autoantibody PositivePatients Positive for T Cell Responses to Islet Proteins at 36 Months.2 participants 0
Glyburide Autoantibody NegativePatients Positive for T Cell Responses to Islet Proteins at 36 Months.3 participants 0

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