- ICH GCP
- US Clinical Trials Registry
- Clinical Trial NCT00707746
Safety and Efficacy Study of ISIS 301012 (Mipomersen) Administration in High Risk Statin Intolerant Subjects (ASSIST)
A Randomized, Double-Blind, Placebo-Controlled Study to Assess Safety and Efficacy of ISIS 301012 Administration in High Risk Statin Intolerant Subjects
Study Overview
Status
Conditions
Intervention / Treatment
Detailed Description
In humans, apoB is the principal apolipoprotein of the atherogenic lipoproteins, comprising very low-density lipoprotein (VLDL), intermediate density lipoprotein (IDL) and low density lipoprotein (LDL). ApoB messenger ribonucleic acid (mRNA) is abundantly present in the liver. Within the endoplasmatic reticulum, apoB requires lipidation by microsomal triglyceride transfer protein, which allows apoB to be incorporated in the VLDL particle within the lumen of the endoplasmatic reticulum. Non-lipidated apoB is readily degraded via ubiquitination. Notably, apoB within the VLDL particle is obligatory for hepatic secretion of VLDL. ApoB remains present within the VLDL-metabolism pathway, from secretion to clearance of the end product LDL by the liver LDL receptor. As a consequence, apoB reliably reflects the total burden of atherogenic lipoproteins. Thus, apoB carries strong prognostic value for cardiovascular events, which exceeds the predictive value of LDL-C. Conversely, decreased levels of apoB (e.g. in familial hypobetalipoproteinemia) have been associated with reduced levels of atherosclerosis. These genetic observations have prompted interest in pharmacologic inhibition of apoB synthesis.
Mipomersen (ISIS 301012) is an antisense drug targeted to human apoB, the principal apolipoprotein of LDL and its metabolic precursor, VLDL. Mipomersen (ISIS 301012) is complementary to the coding region of the mRNA for apoB, binding by Watson and Crick base pairing. The hybridization (binding) of mipomersen (ISIS 301012) to the cognate mRNA results in Ribonuclease (RNase) H-mediated degradation of the cognate mRNA, thus inhibiting translation of the apoB protein.
This was a randomized, double-blind, placebo-controlled Phase 2 study to assess the safety and efficacy of mipomersen administration in high-risk statin-intolerant patients with hypercholesterolemia. This study consisted of a ≤3-week screening period, 26 weeks of treatment, and a 24-week post-treatment follow-up period.
Eligible patients were randomized in a 2:1 ratio to receive mipomersen 200 mg or matching volume placebo subcutaneous (SC) injections weekly.
Following the screening visit, eligible patients returned to the study center for clinical evaluation every week for study drug administration and assessments.
Study Type
Enrollment (Actual)
Phase
- Phase 2
Contacts and Locations
Study Locations
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Amsterdam, Netherlands, 1105AZ
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-
Participation Criteria
Eligibility Criteria
Ages Eligible for Study
Accepts Healthy Volunteers
Genders Eligible for Study
Description
Inclusion Criteria:
- Diagnosis of statin intolerance
- Diagnosis of Coronary Artery Disease (CAD)
- Diagnosis of hypercholesterolemia
- Stable weight for > 6 weeks
Exclusion Criteria:
- Significant health problems in the recent past (≤24 weeks) including heart attack, heart surgery, heart failure, uncontrolled hypothyroidism, blood disorders, digestive problems, disease of central nervous system, cancer, liver or renal disease
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Treatment
- Allocation: Randomized
- Interventional Model: Parallel Assignment
- Masking: Quadruple
Arms and Interventions
Participant Group / Arm |
Intervention / Treatment |
|---|---|
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Placebo Comparator: Placebo
1 mL placebo saline, weekly subcutaneous injections for 26 weeks
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Other Names:
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Experimental: Mipomersen
200 mg (1 mL), weekly subcutaneous injections for 26 weeks
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Other Names:
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What is the study measuring?
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Percent Change From Baseline in Low-density Lipoprotein Cholesterol (LDL-C) at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
LDL-C was measured in mg/dL.
Samples were taken following an overnight fast.
For patients with triglycerides <400 mg/dL, LDL-C was obtained using Friedewald's calculation; and for patients with triglycerides ≥400 mg/dL, LDL-C was directly measured by the central laboratory using ultracentrifugation.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Low-density Lipoprotein Cholesterol at Baseline and the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
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Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Summary of Participants With Adverse Events
Time Frame: Pre-treatment (prior to first dose), On-treatment (Day 1 to week 28), Post-treatment (Week 28-52)
|
The on-treatment time frame spanned the time during which the study drug was administered until the later of the primary efficacy time point and 14 days beyond the last study drug date. Adverse events (AEs) were considered related if assessed by the Investigator as possibly, probably or definitely related to study drug. Severity was assessed as:
Serious AEs (SAEs) are those that resulted in death, were life-threatening, required or prolonged inpatient hospitalization, resulted in persistent or significant disability/incapacity, congenital anomaly, or resulted in an important medical event that may have jeopardized the patient or required medical or surgical intervention. |
Pre-treatment (prior to first dose), On-treatment (Day 1 to week 28), Post-treatment (Week 28-52)
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Secondary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Percent Change From Baseline in Apolipoprotein B at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Apolipoprotein B was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Apolipoprotein B at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Percent Change From Baseline in Total Cholesterol at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Total cholesterol was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Total Cholesterol at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
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Percent Change From Baseline in Non-High-Density Lipoprotein Cholesterol at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Non-high-density lipoprotein cholesterol was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Non-High-Density Lipoprotein Cholesterol at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Other Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Percent Change From Baseline in Triglycerides at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Triglycerides were measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
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Triglycerides at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
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Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Percent Change From Baseline in Lipoprotein (a) at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Lipoprotein (a) was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
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Lipoprotein (a) at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
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Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Percent Change From Baseline in Apolipoprotein A1 at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Apolipoprotein A1 was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
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Apolipoprotein A1 at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Percent Change From Baseline in High-Density Lipoprotein Cholesterol at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
High-density lipoprotein cholesterol (HDL-C) was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
High-Density Lipoprotein Cholesterol at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
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Very Low Density Lipoprotein Cholesterol at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Percent Change From Baseline in Very Low Density Lipoprotein Cholesterol at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Very low density lipoprotein cholesterol was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Percent Change From Baseline in the Ratio of Low-Density Lipoprotein Cholesterol to High-Density Lipoprotein Cholesterol at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The ratio of low-density lipoprotein (LDL) cholesterol to high-density lipoprotein (HDL) cholesterol was measured in mg/dL.
Samples were taken following an overnight fast.
The primary efficacy time point was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
|
Ratio of Low-Density Lipoprotein Cholesterol to High-Density Lipoprotein Cholesterol at Baseline and at the Primary Efficacy Time Point
Time Frame: Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
The primary efficacy time point (PET) was the post-baseline visit closest to 14 days after the last dose of study treatment.
|
Baseline (the average of the screening and Day 1 pre-treatment assessments) and the Primary Efficacy Time point (PET; Week 28 or the post-baseline visit closest to 14 days after the last dose).
|
Collaborators and Investigators
Sponsor
Collaborators
Publications and helpful links
General Publications
- Patel N, Hegele RA. Mipomersen as a potential adjunctive therapy for hypercholesterolemia. Expert Opin Pharmacother. 2010 Oct;11(15):2569-72. doi: 10.1517/14656566.2010.512006.
- Visser ME, Wagener G, Baker BF, Geary RS, Donovan JM, Beuers UH, Nederveen AJ, Verheij J, Trip MD, Basart DC, Kastelein JJ, Stroes ES. Mipomersen, an apolipoprotein B synthesis inhibitor, lowers low-density lipoprotein cholesterol in high-risk statin-intolerant patients: a randomized, double-blind, placebo-controlled trial. Eur Heart J. 2012 May;33(9):1142-9. doi: 10.1093/eurheartj/ehs023. Epub 2012 Apr 16.
Study record dates
Study Major Dates
Study Start
Primary Completion (Actual)
Study Completion (Actual)
Study Registration Dates
First Submitted
First Submitted That Met QC Criteria
First Posted (Estimate)
Study Record Updates
Last Update Posted (Estimate)
Last Update Submitted That Met QC Criteria
Last Verified
More Information
Terms related to this study
Keywords
Additional Relevant MeSH Terms
Other Study ID Numbers
- 301012-CS19
- 2007-005140-24 (EudraCT Number)
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