ProSciento Inc. ( Site 0001)
Chula Vista, California, 91911, United States
NCT Number: NCT03170544
This is an active- and placebo-controlled, single-site, four-part trial of MK-1092 in healthy adult participants, in participants with type 1 diabetes mellitus (T1DM), and in participants with type 2 diabetes mellitus (T2DM). The primary hypothesis for this study is that at a dose with sufficient safety, the mean maximal glucose infusion rate (GIRmax) after single subcutaneous (SC) administration of MK-1092 in adult participants with T1DM is within an acceptable range. (Part 3)
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Notify Me18 year–60 year
All sexes
Interventional
Phase 1
Chula Vista, California, 91911, United States
There will be 4 parts in this study. In Part 1, healthy adult participants will be randomized to receive blinded MK-1092 subcutaneously (SC) or glargine SC, as a single dose under the euglycemic clamp. Once a safe and tolerated dose that achieves GIRmax is identified in Part 1, Part 2 will start. In Part 2, 4 different healthy adult participants will be enrolled in a single panel and receive open-label MK-1092 SC as a single dose under the euglycemic clamp and also receive an intravenous infusion of Humalog®. In Part 3, adult participants with T1DM will be randomized to receive blinded MK-1092 SC or insulin glargine SC, as a single dose under the euglycemic clamp. Part 4 includes a 3-period (Periods 1, 2, and 3) design that will explore up to 3 single subcutaneous doses of MK-1092 or insulin glargine in participants with Type 2 diabetes mellitus.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Subject Inclusion Criteria
All participants
For Parts 1 and 2 (Healthy adult participants)
For Part 3 (Adult participants with T1DM):
For Part 4 (Adult participants with T2DM):
Subject Exclusion Criteria
All participants
For Part 1 and Part 2 (Healthy Adult Participants)
For Part 3 (Adult participants with T1DM):
For Part 4 (Adult participants with T2DM):
MK-1092, 4.0 nmol/kg, SC, as a single dose under the euglycemic clamp, in participants
MK-1092, 8.0 nmol/kg, SC, as a single dose under the euglycemic clamp, in participants
MK-1092, 16 nmol/kg, SC, as a single dose under the euglycemic clamp, in participants
MK-1092, 32 nmol/kg, SC, as a single dose under the euglycemic clamp, in participants
MK-1092, 64 nmol/kg, SC, as a single dose under the euglycemic clamp, in participants
Glargine 3.0 nmol/kg, SC, as a single dose
Lispro (Humalog®), 1.2 nmol/kg, IV infusion SC over 3 hours as a single dose starting ~12 hours after MK-1092 administration.
Other names: Humalog®
Placebo to glargine, SC, as a single dose
Placebo to MK-1092, SC, as a single dose
20% solution for continuous infusion for the duration of the glucose clamp as needed to maintain blood sugar at pre-clamp target levels.
Other names: Glucose
Participants will receive insulin IV, as needed, prior to dosing and clamp initiation and after dosing.
Time frame: Up to 112 days
An adverse event is defined as any unfavorable and unintended sign including an abnormal laboratory finding, symptom or disease associated with the use of a medical treatment or procedure, regardless of whether it is considered related to the medical treatment or procedure, that occurs during the course of the study. Adverse events that occurred beyond 14 days of dosing were considered Post-Trial AEs. Given the half-life of MK-1092 and glargine, any events observed beyond 14 days would not be considered a result of study drug and were therefore presented together.
Time frame: Up to 58 days
An adverse event is defined as any unfavorable and unintended sign including an abnormal laboratory finding, symptom or disease associated with the use of a medical treatment or procedure, regardless of whether it is considered related to the medical treatment or procedure, that occurs during the course of the study. Adverse events that occurred beyond 14 days of dosing were considered Post-Trial AEs. Given the half-life of MK-1092 and glargine, any events observed beyond 14 days would not be considered a result of study drug and were therefore presented together.
Time frame: Up to approximately 24 hours post-dose
The GIRmax required to maintain blood glucose at each participants' individual clamp target, following administration of MK-1092 SC or glargine SC was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion. Mean and 95% CI were based on a linear fixed effects model containing a fixed effect for treatment (MK-1092 Doses, Glargine). In Part 3, 4 participants (across 2 dosing panels) received glargine. These 4 participants were analyzed together given the small numbers and the same treatment (same dose of glargine) received.
Time frame: Up to approximately 24 hours post-dose
The GIRmax required to maintain blood glucose at each participants' individual clamp target, following administration of MK-1092 SC or glargine SC was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion. Mean and 95% CI were based on a linear fixed effects model containing a fixed effect for treatment (MK-1092 doses, Glargine). In Part 1, 10 participants (across 5 dosing panels) received glargine. These 10 participants in Part 1 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: Up to approximately 24 hours post-dose
The GIRmax, following administration of MK-1092 SC or glargine SC, was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion. For Part 4, a linear mixed effects model containing a fixed effect for treatment (MK-1092, Glargine), a nested effect from participants within treatment, an interaction between treatment and period (treatment by period: Period = Period 1, 2, 3) and a random effect due to participants was used. MK-1092 was administered to a single cohort of participants in Periods 1, 2, and 3. Glargine was administered to a single cohort of participants as 3.0 nmol/kg SC in Periods 1, 2, and 3.
Time frame: Up to approximately 24 hours post-dose
The GIRmax required to maintain blood glucose at each participants' individual clamp target, following administration of MK-1092 SC or glargine SC was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion in Part 1 only. TWA(GIR)= Time-weighted average based on GIR values calculated as AUC (area under the curve) based on GIR values observed from time zero to t divided by t, t= 24 hours. Mean and 95% CI are based on a linear fixed effects model containing a fixed effect for treatment (MK-1092 Doses, Glargine). In Part 1, 10 participants (across 5 dosing panels) received glargine. These 10 participants in Part 1 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: Up to approximately 24 hours post-dose
The GIRmax required to maintain blood glucose at each participants' individual clamp target, following administration of MK-1092 SC or glargine SC was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion in Part 3 only. TWA(GIR)= Time-weighted average based on GIR values calculated as AUC (area under the curve) based on GIR values observed from time zero to t divided by t, t= 24 hours. Mean and 95% CI are based on a linear fixed effects model containing a fixed effect for treatment (MK-1092 Doses, Glargine). In Part 3, 4 participants (across 2 dosing panels) received glargine. These 4 participants were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: Up to approximately 24 hours post-dose
The GIRmax required to maintain blood glucose at each participants' individual clamp target, following administration of MK-1092 SC or glargine SC was determined by use of a continuous glucose infusion during the euglycemic clamp so that glucose levels remained in the euglycemic range and hypoglycemia was prevented. Blood glucose was monitored frequently (~every 5 minutes), allowing rapid changes to the rate of glucose infusion in Part 4 only. TWA(GIR)= Time-weighted average based on GIR values calculated as AUC (area under the curve) based on GIR values observed from time zero to t divided by t, t= 24 hours. Mean and 95% CI were based on a linear mixed effects model containing a fixed effect for treatment (MK, Glargine), period (Period 1, Period 2 and Period 3), a nested effect from participants within treatment, and interaction between treatment and period. MK-1092 or glargine was administered to a single cohort of participants in Periods 1, 2, and 3.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Cmax is a measure of the maximum amount of drug in the plasma after the dose is given in Parts 1 and 3 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
AUC0-inf is a measure of the total concentration levels of drug in the plasma after the dose is given in Parts 1 and 3 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
CL/F is the rate at which a drug is removed from the body via renal, hepatic, and other clearance pathways after the dose is given in Parts 1 and 3 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Tmax is the amount of the time to reach the maximum concentration in the plasma after the drug dose is given in Parts 1 and 3 only.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
t1/2 is the time required for a given drug concentration in the plasma to decrease by 50% after the drug dose is given in Parts 1 and 3 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Cmax is a measure of the maximum amount of drug in the plasma after the dose is given in Parts 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
AUC0-inf is a measure of the total concentration levels of drug in the plasma after the dose is given in Part 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
CL/F is the rate at which a drug is removed from the body via renal, hepatic, and other clearance pathways after the dose is given in Part 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Tmax is the amount of the time to reach the maximum concentration in the plasma after the drug dose is given in Part 4 only.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
t1/2 is the time required for a given drug concentration in the plasma to decrease by 50% after the drug dose is given in Part 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Cmax is a measure of the maximum amount of drug in the plasma after the dose is given in Parts 1 and 3 only. Healthy participants received glargine in Panel A-E, and participants with T1DM received glargine in Panel G and H. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation. In Part 1, 9 participants (across 5 dosing panels) received glargine and had quantifiable glargine levels, and, in Part 3, 4 participants (across 2 dosing panels) received glargine and had quantifiable glargine levels. These 9 participants in Part 1 were analyzed together and these 4 participants in Part 3 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
AUC0-inf is a measure of the total concentration levels of drug in the plasma after the dose is given in Parts 1 and 3 only. Healthy participants received glargine in Panel A-E, and participants with T1DM received glargine in Panel G and H. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation. In Part 1, 8 participants (across 5 dosing panels) received glargine and had sufficient terminal phase data, and, in Part 3, 3 participants (across 2 dosing panels) received glargine and had sufficient terminal phase data. These 8 participants in Part 1 were analyzed together and these 3 participants in Part 3 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Tmax is the amount of the time to reach the maximum concentration in the plasma after the drug dose is given in Parts 1 and 3 only. Healthy participants received glargine in Panel A-E, and participants with T1DM received glargine in Panel G and H. In Part 1, 9 participants (across 5 dosing panels) received glargine and had quantifiable glargine levels, and, in Part 3, 4 participants (across 2 dosing panels) received glargine and had quantifiable glargine levels. These 9 participants in Part 1 were analyzed together and these 4 participants in Part 3 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
t1/2 is the time required for a given drug concentration in the plasma to decrease by 50% after the drug dose is given in Parts 1 and 3 only. Healthy participants received glargine in Panel A-E, and participants with T1DM received glargine in Panel G and H. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation. In Part 1, 8 participants (across 5 dosing panels) received glargine and had sufficient terminal phase data, and, in Part 3, 3 participants (across 2 dosing panels) received glargine and sufficient terminal phase data. These 8 participants in Part 1 were analyzed together and these 3 participants in Part 3 were analyzed together given the small numbers and same treatment (same dose of glargine) received.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
Cmax is a measure of the maximum amount of drug in the plasma after the dose is given in Parts 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28)
AUC0-inf is a measure of the total concentration levels of drug in the plasma after the dose is given in Part 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28) ]
Tmax is the amount of the time to reach the maximum concentration in the plasma after the drug dose is given in Part 4 only.
Time frame: -15 min (predose), 10 min, 30 min, 1.0 hr, 1.5 hr, 2.0 hr, 3.0 hr, 4.0 hr, 6.0 hr, 9.0 hr, 12 hr, 18 hr, 24 hr, an additional sample will be collected and at the end of the clamp, 2d, 3d, 4d, 5d and 7d after SC dose and at post-trial (Day 14 and Day 28) ]
t1/2 is the time required for a given drug concentration in the plasma to decrease by 50% after the drug dose is given in Part 4 only. The method of dispersion referenced below of geometric coefficient of variation is actually percent geometric coefficient of variation.
Merck Sharp & Dohme LLC
Industry
A Single Ascending Dose Clinical Trial to Study the Safety, Tolerability, Pharmacokinetics, and Pharmacodynamics of MK-1092 in Healthy Subjects, Subjects With Type 1 Diabetes Mellitus, and Subjects With Type 2 Diabetes Mellitus.
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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.
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