Current partner codePEPTIDESDE
NCT00505765·Phase 2·INTERVENTIONAL

A Multicenter Study of NAP (AL-108) in Schizophrenia

Status

Completed

Phase

Phase 2

Enrollment

63

Locations

8

Results

Posted

Publications

12

Study summary

What the protocol is testing.

The TURNS is a NIMH-funded contract for the evaluation of new compounds for the treatment of cognitive impairments in schizophrenia (HHSN 27820044 1003C; P.I.: Steve Marder, M.D.). Despite advances in the safety, tolerability, and effectiveness of antipsychotic medications for the treatment of schizophrenia, many patients continue to be plagued by impairments in social and work functioning. Persons with schizophrenia commonly show deficits in a number of areas of cognition that include impairments in attention, memory, and executive functioning (the ability and organize one's behavior). Importantly, a large body of literature now shows a link between cognition and community functioning in schizophrenia. It is believed that treatments that improve cognitive deficits may lead to improvements in work and social functioning. One approach to improve the community functioning of patients with schizophrenia is to develop new agents that treat the cognitive deficits of the illness. A promising agent is called AL-108. This drug is administered as a nasal spray. Studies in animals suggest that this drug may protect neurons and may improve cognition in schizophrenia. The current study is a twelve-week multicenter, double-blind, randomized clinical trial of two doses of AL-108 (5 and 30 mg/day intranasally) versus placebo in the treatment of persistent cognitive dysfunction in schizophrenia. The study medication will be added to patients' current atypical antipsychotic medication or to their current injectable first-generation antipsychotic medication. The primary outcome measure will consist of the composite score of the MATRICS neuropsychological battery. Secondary outcome measures will include scores on symptoms, functional outcome, and safety measures. Sixty clinically stable patients with schizophrenia, drawn from eight sites, will participate in the study. Twenty-five patients will be enrolled at UCLA.

Full detailed description

Background AL-108 is an intranasal drug product containing NAP, an 8 amino-acid peptide (Asn-Ala-Pro-Val-Ser-Ile-Pro-Gln; NAPVSIPQ, MW=824.9) fragment of the much larger (approx. 124KD) Activity-Dependent Neuroprotective Protein (ADNP), which participates in neurodevelopment and neuroprotection. In mice, ADNP knockouts are lethal exhibiting CNS dysgenesis. ADNP mediates its effects in part through interaction with microtubules. Because of its large size, ADNP is assumed to not penetrate the BBB and thus cannot be used pharmacologically. NAP was chosen because it represents the epitope most associated with microtubule interaction and neuroprotection. NAP is absorbed following IV or intranasal administration, and has been shown to cross the BBB. Rationale for NAP treatment: tubulin function in brain function The cytoskeleton plays a key role in maintaining the highly asymmetrical shape and structural polarity of neurons that are essential for neuronal physiology. The cytoskeleton is made up of microfilaments, intermediate filaments and microtubules. Microfilaments (4-9 nm diameter) are made up of actin monomers and they function mainly to provide mechanical support and locomotion to the cell. Intermediate filaments are cytoplasmic fibers of \~10nm diameter. They provide supporting framework within the cell. Microtubules (\~24nm diameter) consist of tubulin and microtubule associate proteins. They function to transport nutrients and chemical messengers along the cell. Neurofibrillary tangles are twisted bundles of neurofibrils formed when the microtubule-associated protein, tau, dissociates from microtubules and clusters to form an insoluble mass. Under normal conditions tau binds to microtubules, stabilizing neuronal structure and integrity. Hyperphosphorylation of tau is assumed to be the cause for the formation of neurofibrillary tangles. Although neurofibrillary tangles are most associated with cognitive dysfunction in Alzheimers disease, some increase in neurofibrillary pathology has also been reported in schizophrenia, potentially as consequence of antipsychotic medication (1). Thus, mechanisms underlying microtubular function may be relevant to schizophrenia as well. In association with tubulin polymerization into microtubules, NAP influences tau dynamics by increasing the ratio of non-phosphorylated tau to phosphorylated tau, implying a dynamic process of cellular maintenance of the microtubular network, which is essential for the survival of the cell. In brain, tubulin frameworks are stabilized by recently described STOP proteins (2) (aka MAP6). Linkages to allelic variation in STOP genes has been reported in schizophrenia, along with altered STOP protein expression in some brain regions (3). STOP knockdown mice show disturbances in dopaminergic neurotransmission (4) along with deficits in PPI and hypermotility that were partially reversed with clozapine (5). Thus, neuropathological features of schizophrenia may be due, in part, to abnormal STOP-related stabilization of microtubular structure, and NAP may stabilize STOP-related abnormal neurophysiological processes in schizophrenia.

Interventions

Treatment arms and agents.

DRUG

AL-108

AL-108, 5 mg/day- one spray in each nostril once per day

DRUG

AL-108

AL-108, 30 mg/day- 3 sprays in each nostril, twice per day

DRUG

Placebo

Placebo- 3 sprays in each nostril, twice per day

DRUG

Placebo

Placebo- one spray in each nostril, once per day

Timeline

From registration to results.

  1. First posted

    Jul 23, 2007

  2. Study start

    Jul 2007

  3. Primary completion

    Apr 2009

  4. Study completion

    Apr 2009

  5. Results posted

    Jan 27, 2017

  6. Registry updated

    Mar 10, 2017

Outcomes

What the study measures.

Primary outcomes

Change in MATRICS Consensus Cognitive Battery Composite Score Change

Time frame · Baseline, week 6

The MATRICS Consensus Cognitive Battery (MCCB) measures functioning across various cognitive domains and is comprised of ten tests that assess seven cognitive domains (speed of processing, attention/vigilance, working memory, verbal learning, visual learning, reasoning and problem solving, and social cognition) Its measurements are based on timed paper-and-pencil, computerized, and orally-administered tests, as well as spatial tests using geometric cubes. MCCB composite T scores are between 40 and 60 (normal range) and \< 40 (below normal range).

Change in MATRICS Consensus Cognitive Battery (MCCB)

Time frame · Baseline, 12 weeks

The MATRICS Consensus Cognitive Battery (MCCB) measures functioning across various cognitive domains and is comprised of ten tests that assess seven cognitive domains (speed of processing, attention/vigilance, working memory, verbal learning, visual learning, reasoning and problem solving, and social cognition) Its measurements are based on timed paper-and-pencil, computerized, and orally-administered tests, as well as spatial tests using geometric cubes. MCCB composite T scores are between 40 and 60 (normal range) and \< 40 (below normal range).

Secondary outcomes

Change in UCSD Performance-Based Skills Assessment (UPSA) Summary Scores

Time frame · Baseline, week 6

UPSA includes 5 skill areas (subscales) with scores that each range from 0-20. The UPSA yields an overall total score which is the sum of the five subscales and ranges from 0-100. Higher scores are associated with more independent living.

Change in UCSD Performance-Based Skills Assessment (UPSA) Summary Scores

Time frame · Baseline, 12 weeks

UPSA includes 5 skill areas (subscales) with scores that each range from 0-20. The UPSA yields an overall total score which is the sum of the five subscales and ranges from 0-100. Higher scores are associated with more independent living.

Change in SCoRS Interviewer Global Rating

Time frame · Baseline, 6 weeks

Schizophrenia Cognition Rating Scale (SCoRS) assessed functional capacity by completing a 20-question rating scale via interviews with the subject and an informant, focusing on cognitive impairment and its impact on daily functioning. After the interview, the interviewer rated subject's overall difficulty on a Global Scale of 1-10. Higher scores indicate greater cognitive impairment.

Change in SCoRS Interviewer Global Rating

Time frame · Baseline, 12 weeks

Schizophrenia Cognition Rating Scale (SCoRS) assessed functional capacity by completing a 20-question rating scale via interviews with the subject and an informant, focusing on cognitive impairment and its impact on daily functioning. After the interview, the interviewer rated subject's overall difficulty on a Global Scale of 1-10. Higher scores indicate greater cognitive impairment.

Eligibility

Who can take part.

Minimum age
18 Years
Maximum age
60 Years
Sex
ALL
Healthy volunteers
No

Inclusion Criteria: * DSM IV/DSM IV TR diagnosis of schizophrenia * Capable of providing informed consent * Males and Females * Age: 18 and 60 * Caucasian or Non Caucasian * Subjects will be treated with one of the following second generation antipsychotics: risperidone, olanzapine, quetiapine, ziprasidone, or aripiprazole for the previous two months, with no change in dose in the last month, and/or with injectable depot antipsychotics (fluphenazine or haloperidol decanoate) with no change in last 3 months. * Subjects will meet the following symptom criteria: * Average Brief Psychiatric Rating Scale (BPRS) item score \>3 (mild) * Simpson-Angus Scale total score less than or equal to 6 * Calgary Depression Scale total score less than or equal to 10 * Subjects will meet the following cognitive performance criteria: * Performance less than the maximum cutoff (in parentheses) for ONE of the following MCCB tests: * Letter-number span (20); * HVLT total (31); and * CPT d-prime (3.47) * Able to complete the baseline MCCB validly as assessed by Chief Neuropsychologist or NP tester * Raw score of 6 or greater on the WTAR Exclusion Criteria: * Current treatment with oral conventional antipsychotics (e.g. fluphenazine, haloperidol) or clozapine. * Subjects with a DSM-IV diagnosis of alcohol or substance abuse (other than nicotine) within the last month or a DSM-IV diagnosis of alcohol or substance dependence (other than nicotine) within the last 6 months * Subjects with a history of significant head injury/trauma, as defined by one or more of the following: * Loss of consciousness (LOC) for more than 1 hour * Recurring seizures resulting from the head injury * Clear cognitive sequellae of the injury * Cognitive rehabilitation following the injury * Subjects with a clinically significant neurological, metabolic, hepatic, renal, hematological, pulmonary, cardiovascular, gastrointestinal, and/or urological disorder (e.g. unstable angina, decompensated congestive heart failure, CNS infection or history of HIV seropositivity), which would pose a risk to the patient if they were to participate in the study or that might confound the results of the study. * Clinically significant abnormalities in physical examination, ECG, or laboratory assessments. * Clinically significant renal disease. * Women who are pregnant or of child-bearing potential, either not surgically-sterile nor using appropriate methods of birth control * Women who are breast-feeding * Prior participation in a clinical trial of investigational medication within 60 days.

Study locations

8 registered sites.

United States. Showing up to 24 locations stored in the fast local snapshot.

UCLA

Los Angeles, California, United States

Maryland Psychiatric Research Center

Catonsville, Maryland, United States

Massachusetts General Hospital

Boston, Massachusetts, United States

Harvard Medical School

Boston, Massachusetts, United States

Washington University School of Medicine

St Louis, Missouri, United States

Columbia University Medical Center

New York, New York, United States

Nathan Kline Institute

Orangeburg, New York, United States

Duke University Medical Center

Durham, North Carolina, United States

Publications

Results and literature.

PMID 15515151McMahon RP, Arndt S, Conley RR. More powerful two-sample tests for differences in repeated measures of adverse effects in psychiatric trials when only some patients may be at risk. Stat Med. 2005 Jan 15;24(1):11-21. doi: 10.1002/sim.1837.PMID 17476650Edwards D, Madsen J. Constructing multiple test procedures for partially ordered hypothesis sets. Stat Med. 2007 Dec 10;26(28):5116-24. doi: 10.1002/sim.2905.PMID 16369168Jackman AH, Doty RL. Utility of a three-item smell identification test in detecting olfactory dysfunction. Laryngoscope. 2005 Dec;115(12):2209-12. doi: 10.1097/01.mlg.0000183194.17484.bb.PMID 15665412Gozes I, Divinski I. The femtomolar-acting NAP interacts with microtubules: Novel aspects of astrocyte protection. J Alzheimers Dis. 2004 Dec;6(6 Suppl):S37-41. doi: 10.3233/jad-2004-6s605.PMID 11782102Rothermundt M, Arolt V, Bayer TA. Review of immunological and immunopathological findings in schizophrenia. Brain Behav Immun. 2001 Dec;15(4):319-39. doi: 10.1006/brbi.2001.0648.PMID 15999027Rapaport MH, Delrahim KK. An abbreviated review of immune abnormalities in schizophrenia. CNS Spectr. 2001 May;6(5):392-7. doi: 10.1017/s1092852900021763.PMID 16198059Kelly DL, Conley RR. A randomized double-blind 12-week study of quetiapine, risperidone or fluphenazine on sexual functioning in people with schizophrenia. Psychoneuroendocrinology. 2006 Apr;31(3):340-6. doi: 10.1016/j.psyneuen.2005.08.010. Epub 2005 Sep 28.PMID 2583049Gozes I, Meltzer E, Rubinrout S, Brenneman DE, Fridkin M. Vasoactive intestinal peptide potentiates sexual behavior: inhibition by novel antagonist. Endocrinology. 1989 Dec;125(6):2945-9. doi: 10.1210/endo-125-6-2945.PMID 16822898Rotstein M, Bassan H, Kariv N, Speiser Z, Harel S, Gozes I. NAP enhances neurodevelopment of newborn apolipoprotein E-deficient mice subjected to hypoxia. J Pharmacol Exp Ther. 2006 Oct;319(1):332-9. doi: 10.1124/jpet.106.106898. Epub 2006 Jul 5.PMID 12895417Oddo S, Caccamo A, Shepherd JD, Murphy MP, Golde TE, Kayed R, Metherate R, Mattson MP, Akbari Y, LaFerla FM. Triple-transgenic model of Alzheimer's disease with plaques and tangles: intracellular Abeta and synaptic dysfunction. Neuron. 2003 Jul 31;39(3):409-21. doi: 10.1016/s0896-6273(03)00434-3.PMID 15804391Braga RJ, Mendlowicz MV, Marrocos RP, Figueira IL. Anxiety disorders in outpatients with schizophrenia: prevalence and impact on the subjective quality of life. J Psychiatr Res. 2005 Jul;39(4):409-14. doi: 10.1016/j.jpsychires.2004.09.003. Epub 2004 Nov 13.PMID 15135910Alcalay RN, Giladi E, Pick CG, Gozes I. Intranasal administration of NAP, a neuroprotective peptide, decreases anxiety-like behavior in aging mice in the elevated plus maze. Neurosci Lett. 2004 May 6;361(1-3):128-31. doi: 10.1016/j.neulet.2003.12.005.

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