Placebo
Drug100 mg, oral, three times per day 200 mg, oral, three times per day 300 mg, oral, three times per day 400 mg, oral, three times per day 500 mg, oral, three times per day 600 mg, oral, three times per day
NCT Number: NCT00782340
The purpose of this study is to see whether droxidopa is effective in treating symptoms of neurogenic orthostatic hypotension in patients with Primary Autonomic Failure (Pure Autonomic Failure, Multiple System Atrophy, Parkinson's Disease), Non-diabetic neuropathy, or Beta Hydroxylase deficiency.
Looking for future studies?
Notify Me18 year and older
All sexes
Interventional
Phase 3
University of Calgary, Calgary, Alberta, Canada
Systolic blood pressure is transiently and minimally decreased in healthy individuals upon standing. Normal physiologic feedback mechanisms work through neurally-mediated pathways to maintain the standing blood pressure, and thus maintain adequate cerebral perfusion. The compensatory mechanisms that regulate blood pressure upon standing are dysfunctional in subjects with orthostatic hypotension (OH), a condition that may lead to inadequate cerebral perfusion with accompanying symptoms of syncope, dizziness or lightheadedness, unsteadiness and blurred or impaired vision, among other symptoms.
The autonomic nervous system has a central role in the regulation of blood pressure. Primary Autonomic Failure is manifested in a variety of syndromes. Orthostatic hypotension is a usual presenting symptom. Primary Autonomic Failure may be the primary diagnosis, and classifications include pure autonomic failure (PAF), also called idiopathic orthostatic hypotension (Bradbury-Eggleston syndrome) autonomic failure with multiple system atrophy (Shy-Drager syndrome) and also Parkinson's disease. Regardless of the primary condition, autonomic dysfunction underlies orthostatic hypotension.
Orthostatic hypotension may be a severely disabling condition which can seriously interfere with the quality of life of afflicted subjects. Currently available therapeutic options provide some symptomatic relief in a subset of subjects, but are relatively ineffective and are often accompanied by severe side effects that limit their usefulness. Support garments (tight-fitting leotard) may prove useful in some subjects, but is difficult to don without family or nursing assistance, especially for older subjects. Midodrine, fludrocortisone, methylphenidate, ephedrine, indomethacin and dihydroergotamine are among some of the pharmacological interventions that have been used to treat orthostatic hypotension, although only midodrine is specifically approved for this indication. The limitations of these currently available therapeutic options, and the incapacitating nature and often progressive downhill course of disease, point to the need for an improved therapeutic alternative.
The current withdrawal design study will measure the efficacy of droxidopa on symptoms of neurogenic orthostatic hypotension in patients randomized to continued droxidopa treatment versus placebo, following 14 days of double-blind treatment.
droxidopa
droxidopa [also, known as L-threo-3,4-dihydroxyphenylserine, L-threo-DOPS, or L-DOPS] is the International non-proprietary name (INN) for a synthetic amino acid precursor of norepinephrine (NE), which was originally developed by Sumitomo Pharmaceuticals Co., Limited, Japan. It has been approved for use in Japan since 1989. Droxidopa has been shown to improve symptoms of orthostatic hypotension that result from a variety of conditions including Shy Drager syndrome (Multiple System Atrophy), Pure Autonomic Failure, and Parkinson's disease. There are four stereoisomers of DOPS; however, only the L-threo-enantiomer (droxidopa) is biologically active.
The exact mechanism of action of droxidopa in the treatment of symptomatic NOH has not been precisely defined; however, its NE replenishing properties with concomitant recovery of decreased noradrenergic activity are considered to be of major importance.
Droxidopa has been marketed in Japan since 1989. Data from clinical studies and post-marketing surveillance programs conducted in Japan show that the most commonly reported adverse drug reactions with droxidopa are increased blood pressure, nausea, and headache. In clinical studies, the prevalence and severity of droxidopa adverse effects appear to be similar to those reported by the placebo control arm.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
To be eligible for inclusion, each patient must fulfill the following criteria:
Exclusion criteria
100 mg, oral, three times per day 200 mg, oral, three times per day 300 mg, oral, three times per day 400 mg, oral, three times per day 500 mg, oral, three times per day 600 mg, oral, three times per day
100 mg, oral, three times per day 200 mg, oral, three times per day 300 mg, oral, three times per day 400 mg, oral, three times per day 500 mg, oral, three times per day 600 mg, oral, three times per day
Time frame: 7 days
The OHQ is the average of two sub-scales, the Orthostatic Hypotension Symptom Assessment Scale (OHSA) and the Orthostatic Hypotension Daily Activities Scale (OHDAS). Each asks the patient to rate their symptoms or disease impact over the past week. The OHSA sub-scale is the average of six items: 1) Dizziness, lightheadedness, feeling faint or feeling like you might black out; 2) Problems with vision; 3) Weakness; 4) Fatigue; 5) Trouble concentrating; and 6) Head/neck discomfort. The OHDAS sub-scale is the average of four items: 1) Standing for a short time; 2) Standing for a long time; 3) Walking for a short time; and 4) Walking for a long time. Each item is scored on a Likert scale from 0 to 10, with 10 being the most severe.
For the change from randomization, negative numbers represent improvement from randomization in OHQ score.
Time frame: 7 days
OHDAS composite scale range: 0 (none) -10 (worst), likert scale. Change: score at end of study minus score at randomization. A negative score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Time frame: 7 days
OHSA composite scale range: 0 (none) -10 (worst), likert scale. Change: score at end of study minus score at randomization. A negative score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Time frame: 7 days
OHDAS Item 1 scale range: 0 (none) -10 (worst), likert scale. Change: score at end of study minus score at randomization. A negative score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Time frame: 7 days
OHDAS Item 3 scale range: 0 (none) -10 (worst), likert scale. Change: score at end of study minus score at randomization. A negative score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Time frame: 7 days
OHSA item 1 scale range: 0 (none) -10 (worst), likert scale. Change: score at end of study minus score at randomization. A negative score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Time frame: 7 days
The CGI-S is a 7 point scale ranging from a score of 1 (no symptoms) to 7 (severe symptoms). Patients were grouped according to OH severity at the end of the randomization period as follows;
Normal-Borderline OH (CGI-S 1-2), Mild-Moderate OH (CGI-S 3-4), Marked OH-Most Ill with OH (CGI-S 5-7).
Time frame: 7 days
The CGI-S is a 7 point scale ranging from a score of 1 (no symptoms) to 7 (severe symptoms). Patients were grouped according to OH severity at the end of the randomization period as follows;
Normal-Borderline OH (CGI-S 1-2), Mild-Moderate OH (CGI-S 3-4), Marked OH-Most Ill with OH (CGI-S 5-7).
Time frame: 7 days
Change: standing systolic blood pressure at end of study minus standing systolic blood pressure at randomization. A positive score indicates an improvement during the double-blind randomized phase relative to value at randomization.
Chelsea Therapeutics
Industry
Phase III, Multi-Center, Study to Assess the Clinical Effect of Droxidopa in Subjects With Primary Autonomic Failure, Dopamine Beta Hydroxylase Deficiency or Non-Diabetic Neuropathy and Symptomatic NOH
Acronym: NOH301
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
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.
Published trials that share one or more normalized conditions with this study.
NCT00633880
Autonomic Nervous System Diseases, Basal Ganglia Diseases
Birmingham, Alabama, United States
View Trial DetailsNCT00738062
Autonomic Nervous System Diseases, Basal Ganglia Diseases
Birmingham, Alabama, United States
View Trial DetailsNCT01132326
Dopamine Beta Hydroxylase Deficiency, Neurogenic Orthostatic Hypotension
View Trial DetailsNCT03482297
Autonomic Failure, Autonomic Nervous System Diseases
Nashville, Tennessee, United States
View Trial Details