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Monoamine Antagonist Therapies for Methamphetamine Abuse Prazosin

Monoamine Antagonist Therapies for Methamphetamine Abuse Prazosin

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01178138
Acronym
MATMA
Enrollment
24
Registered
2010-08-09
Start date
2009-12-31
Completion date
2013-06-30
Last updated
2016-12-30

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

Conditions

Continuous Methamphetamine Abuse

Keywords

substance abuse

Brief summary

This protocol will test the safety, effectiveness and the metabolism and action of prazosin as a potential therapy for methamphetamine abuse. This will be accomplished by performing a series of human laboratory studies. In each of these studies, the safety and effectiveness of the test medication (prazosin) in the treatment of methamphetamine effects will be determined. The study hypothesis is that prazosin will block the methamphetamine receptor function, reducing the reinforcing effects of central nervous system effects in humans.

Detailed description

Methamphetamine (METH) use has increased in the US and worldwide in the past years. Although associated with profound medical, psychiatric, legal, and social problems, no effective medicines for METH abuse have been identified or approved for human use. It is vitally important to identify compounds that alter METH effects without increasing the risk of METH toxicity. While the brain chemical transmitter dopamine plays a major role in the pleasurable reinforcing and psychomotor stimulant effects of amphetamines, the transmitters norepinephrine and serotonin also contribute substantially to these effects. Recent evidence suggests that the functional links that exist between norepinephrine and serotonin systems may be profoundly important in METH effects and dependence. However, these neurotransmitter systems have not been tested as extensively as targets of pharmacologic interventions. Thus, the purpose of this study is to examine whether the alpha-1-b antagonist prazosin blocks the self-reported effects, cognitive performance and cardiovascular effects of METH in a dose-related manner. Subsequent protocols will test the effect of the serotonin antagonist, cyproheptadine, and the combined norepinephrine/serotonin antagonist, quetiapine. Healthy, non-treatment-seeking METH users will be recruited. They will undergo extensive prestudy medical and psychiatric screening. Twelve volunteers (ages 18-50 years; 50% female; 10% Minority) who sign the informed consent will be recruited to complete the study on prazosin. METH-abusing volunteers will undergo 6 sessions spaced 2-3 days apart. A single oral dose of prazosin (placebo, 1 mg, or 2 mg po) will be given in a randomized, double-blind design before METH or METH placebo administration in each session. METH will be given po in a dose (20 mg) that is well-tolerated by humans but that results in easily measurable effects by itself (Cruickshank and Dyer, 2009; Sevak et al, 2009; Parrot et al, 2011). Prior to and at several time points after prazosin/placebo,METH/placebo, or prazosin/METH administrations, self-report, cognitive performance and physiologic measures will be obtained. The studies we propose are significant as they have the potential to identify treatment medications and elucidate new mechanisms of action and desirable characteristics for future medications development. Understanding the effects of treatment drugs in the context of concomitant METH use is an essential component of identifying potential pharmacotherapies for METH dependence that 1) alters the self-reported/performance effects 2) alters the cardiovascular effects and 3) alters the concentration-effect (pharmacodynamic) relationships of METH in human METH users. Using this broad pharmacologic approach to these human laboratory studies will provide insight into the appropriate combination of positive treatment effects with minimal side effects for the ultimate development of a successful treatment for METH abuse. The results should be generalizable to METH abusers and to the development of new treatments for METH abuse that will benefit all members of society. Understanding pharmacologic interactions will lessen complications of drug abuse and provide more rapid introduction of effective new treatments into medical practice.

Interventions

DRUGPrazosin

Prazosin or oral placebo given before methamphetamine or iv placebo to determine effects of prazosin on methamphetamine.

Sponsors

National Institute on Drug Abuse (NIDA)
CollaboratorNIH
University of Arkansas
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
HEALTH_SERVICES_RESEARCH
Masking
TRIPLE (Subject, Caregiver, Investigator)

Eligibility

Sex/Gender
ALL
Age
18 Years to 50 Years
Healthy volunteers
Yes

Inclusion criteria

* Must be between the ages of 18-50 years (inclusive). * Must be a current methamphetamine user, with self-reported amount of IV use being greater than the total administered in the study. * Must have recent use confirmed by a urine toxicology screen positive for amphetamines. * Must not be seeking treatment for methamphetamine abuse/dependence.

Exclusion criteria

* Ill health (major cardiovascular, renal, endocrine, hepatic disorder, to be determined by history provided by the prospective subject or laboratory evaluation as outlined below). * Current diagnosis of other drug or alcohol physical dependence (other than nicotine or caffeine). * History of major organic psychiatric disorder (psychosis, schizophrenia, bipolar, mania) or significant psychiatric symptoms at the time of evaluation for study participation, including suicidal ideation. * Pregnancy, plans to become pregnant, or fertile women without adequate means of contraception. * Present or recent use of over-the-counter or prescription psychoactive drug or drug that would have major interaction with drugs to be tested. * Liver function tests greater than three times normal, blood urea nitrogen and creatinine outside of normal range, or thyroid function tests outside of normal range. * EKG abnormalities including but not limited to: bradycardia (\<60 bpm); prolonged corrected QT interval interval (\>450 msec); Wolff-Parkinson-White syndrome; wide complex tachycardia; 2nd degree, Mobitz type II heart block; 3rd degree heart block; left or right bundle branch block. * Medical contraindication to or prior serious adverse effects from METH or stimulants (i.e., seizures, cardiac arrest) or medical contraindication to test agents (see risks section). Significant physical or psychiatric illness which might impair the ability to safely complete the study or that might be complicated by the study drugs, including prior seizures (after age 8) or other active neurological disease or clinically significant abnormalities on physical examination or screening laboratory values. * Current enrollment in a methamphetamine, alcohol, or other drug treatment program or current legal problems relating to METH, alcohol, or other drug use, including awaiting trial or supervision by a parole or probation officer. * Left ventricular ejection fraction \< 40% as determined in the screening echocardiogram. * Body Mass Index \>35 or \<18. * Currently trying to quit METH use. * History of serious adverse event or hypersensitivity to methamphetamine or other study drugs * Currently taking any medication (including highly active antiretroviral therapy for HIV) other than over-the-counter nonsteroidal anti-inflammatory medications, topical medications, inhaled asthma therapy, and over-the-counter nonsedating antihistamines. * Any other condition the PI or staff feels will put the subject at risk for entering the study.

Design outcomes

Primary

MeasureTime frameDescription
Self-report Effects of High.0 hr time point after prazosin and 1 hr time point after methamphetamineVisual analog scales measuring effects prazosin on methamphetamine; change in methamphetamine high. Visual analog scales allow the subject to give a rating of methamphetamine effects. For instance, how high the dose makes you . The study tested how much prazosin changed the effects of methamphetamine as measured by these visual analog scales. Visual analog scale is a 100 mm scale, ranging from 0 (no effect) to 100 (maximum effect). In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The visual analog scale was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the visual analog scale was measured again.
Heart Effects of Prazosin on Methamphetamine0 hr time point after prazosin and 1 hr time point after methamphetamineHeart effects of prazosin on methamphetamine; In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The heart rate was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the heart rate was measured again.
Blood Pressure Effects of Prazosin on Methamphetamine0 hr time point after prazosin and 1 hr time point after methamphetamineBlood pressure effects of prazosin on methamphetamine; In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The blood pressure was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the blood pressure was measured again.

Countries

United States

Participant flow

Participants by arm

ArmCount
Prazosin Effects on Methamphetamine
The order of placebo vs. active medication will be randomized. oral placebo and methamphetamine 20mg po: Methamphetamine 20mg po will be given 30 minutes after oral placebo. General Study Design. The Methamphetamine Tolerance regimen will always occur in the first study session. The medication regimen in sessions 2-6 will be randomized to one of the following five combinations of oral prazosin and iv methamphetamine. Session 1 (Monday) Sessions 2 - 6 (Wed, Fri, Mon, Wed, Fri). * Oral placebo + methamphetamine (0, 15, 15 mg/70 kg) * Oral placebo + methamphetamine placebo (0, 0, 0 mg/70 kg) * Prazosin 1 mg po + methamphetamine placebo (0, 0, 0 mg/70 kg) * Prazosin 2 mg po + methamphetamine placebo (0, 0, 0 mg/70 kg) * Prazosin 1 mg po + methamphetamine (0, 15, 15 mg/70 kg) * Prazosin 2 mg po + methamphetamine (0, 15, 15 mg/70 kg)
3
Total3

Withdrawals & dropouts

PeriodReasonFG000
Overall StudyLost to Follow-up8
Overall StudyPhysician Decision8
Overall StudyWithdrawal by Subject7

Baseline characteristics

CharacteristicPrazosin Effects on Methamphetamine
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
3 Participants
Age, Continuous42.6 years
STANDARD_DEVIATION 9.2
Gender
Female
3 Participants
Gender
Male
0 Participants
Region of Enrollment
United States
3 participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
1 / 3
serious
Total, serious adverse events
0 / 3

Outcome results

Primary

Blood Pressure Effects of Prazosin on Methamphetamine

Blood pressure effects of prazosin on methamphetamine; In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The blood pressure was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the blood pressure was measured again.

Time frame: 0 hr time point after prazosin and 1 hr time point after methamphetamine

ArmMeasureGroupValue (MEAN)Dispersion
Prazosin Placebo and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline119.3 mmHgStandard Deviation 14.6
Prazosin Placebo and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine131.7 mmHgStandard Deviation 15.5
Prazosin 1 mg and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline110.3 mmHgStandard Deviation 8.5
Prazosin 1 mg and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine114.3 mmHgStandard Deviation 9.5
Prazosin 2 mg and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline113.5 mmHgStandard Deviation 10.6
Prazosin 2 mg and Methamphetamine PlaceboBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine122 mmHgStandard Deviation 4.2
Prazosin 1 mg and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline126.5 mmHgStandard Deviation 7.8
Prazosin 1 mg and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine131 mmHgStandard Deviation 14.1
Prazosin 2 mg and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline105 mmHgStandard Deviation 0
Prazosin 2 mg and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine107 mmHgStandard Deviation 0
Prazosin Placebo and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure baseline123 mmHgStandard Deviation 20.7
Prazosin Placebo and Methamphetamine 20 mgBlood Pressure Effects of Prazosin on Methamphetaminesystolic blood pressure after methamphetamine119.7 mmHgStandard Deviation 6.7
Primary

Heart Effects of Prazosin on Methamphetamine

Heart effects of prazosin on methamphetamine; In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The heart rate was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the heart rate was measured again.

Time frame: 0 hr time point after prazosin and 1 hr time point after methamphetamine

ArmMeasureGroupValue (MEAN)Dispersion
Prazosin Placebo and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate baseline78.7 beats per minuteStandard Deviation 12.5
Prazosin Placebo and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine72.7 beats per minuteStandard Deviation 14.1
Prazosin 1 mg and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate baseline74 beats per minuteStandard Deviation 10.1
Prazosin 1 mg and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine83.3 beats per minuteStandard Deviation 10.4
Prazosin 2 mg and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate baseline74 beats per minuteStandard Deviation 0
Prazosin 2 mg and Methamphetamine PlaceboHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine81 beats per minuteStandard Deviation 9.9
Prazosin 1 mg and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate baseline75.5 beats per minuteStandard Deviation 3.5
Prazosin 1 mg and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine81.5 beats per minuteStandard Deviation 9.2
Prazosin 2 mg and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate baseline80 beats per minuteStandard Deviation 0
Prazosin 2 mg and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine70 beats per minuteStandard Deviation 0
Prazosin Placebo and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate baseline80 beats per minuteStandard Deviation 9.1
Prazosin Placebo and Methamphetamine 20 mgHeart Effects of Prazosin on MethamphetamineHeart rate methamphetamine82 beats per minuteStandard Deviation 6.2
Primary

Self-report Effects of High.

Visual analog scales measuring effects prazosin on methamphetamine; change in methamphetamine high. Visual analog scales allow the subject to give a rating of methamphetamine effects. For instance, how high the dose makes you . The study tested how much prazosin changed the effects of methamphetamine as measured by these visual analog scales. Visual analog scale is a 100 mm scale, ranging from 0 (no effect) to 100 (maximum effect). In each session, each subject received prazosin (1 or 2 mg) or prazosin placebo. The visual analog scale was measured. Then, one hour later, methamphetamine placebo or methamphetamine (20mg) was given and the visual analog scale was measured again.

Time frame: 0 hr time point after prazosin and 1 hr time point after methamphetamine

ArmMeasureGroupValue (MEAN)Dispersion
Prazosin Placebo and Methamphetamine PlaceboSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin Placebo and Methamphetamine PlaceboSelf-report Effects of High.VAS after methamphetamine0 units on a scaleStandard Deviation 0
Prazosin 1 mg and Methamphetamine PlaceboSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin 1 mg and Methamphetamine PlaceboSelf-report Effects of High.VAS after methamphetamine0 units on a scaleStandard Deviation 0
Prazosin 2 mg and Methamphetamine PlaceboSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin 2 mg and Methamphetamine PlaceboSelf-report Effects of High.VAS after methamphetamine0 units on a scaleStandard Deviation 0
Prazosin 1 mg and Methamphetamine 20 mgSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin 1 mg and Methamphetamine 20 mgSelf-report Effects of High.VAS after methamphetamine10 units on a scaleStandard Deviation 14.1
Prazosin 2 mg and Methamphetamine 20 mgSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin 2 mg and Methamphetamine 20 mgSelf-report Effects of High.VAS after methamphetamine15 units on a scaleStandard Deviation 0
Prazosin Placebo and Methamphetamine 20 mgSelf-report Effects of High.VAS baseline0 units on a scaleStandard Deviation 0
Prazosin Placebo and Methamphetamine 20 mgSelf-report Effects of High.VAS after methamphetamine16.7 units on a scaleStandard Deviation 15.3

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