Schizophrenia is a devastating mental disorder with a prevalence of approximately 1% worldwide. While effective in reducing positive symptoms, current treatments have limited effects on cognitive and social cognition/processing deficits of schizophrenia, which are closely linked to real-world dysfunction and lack of socio-occupational integration. There is compelling evidence for impaired antioxidant defense system and inflammatory abnormalities in schizophrenia. A new therapeutic approach to the disease might well be to hinder oxidative damage, inflammation and its clinical sequelae. Alpha-lipoic acid (ALA) is a naturally occurring compound, synthesized in the mitochondria, that is currently approved to treat diabetic neuropathic pain. Drug repurposing is a fast, and cost-effective method that can overcome drug discovery challenges of targeting neuropsychiatric disorders. In a pilot investigation, adjunctive treatment with ALA led to robust improvement in negative and cognitive symptoms of ten patients with schizophrenia. This project aims to investigate the efficacy of ALA as a disease-modifying drug for the treatment of schizophrenia, by improving sociability and cognition, as well as to correlate patients' response with biomarkers that will shed light on the pathophysiology of this complex disease. It comprises 1) a prospective, randomized, double-blind, placebo-controlled trial to evaluate efficacy of ALA to treat cognitive and negative symptoms of patients with schizophrenia and 2) an investigation of changes in biomarkers of oxidative stress in response to adjunctive treatment with ALA. The proposed study could establish a new adjunctive treatment for schizophrenia, recognize a novel pharmacological approach and help unveil the biological basis of the disease.
The underlying pathogenesis of schizophrenia remains unknown, but aberrant reduction-oxidation has gained increasing support as an hypothesis to help explain the pathophysiology of the disease. Alpha-lipoic acid (ALA) is a naturally occurring antioxidant, essential for the function of different enzymes of mitochondria's oxidative metabolism, that is currently approved to treat diabetic neuropathic pain9. ALA and its reduced form, dihydrolipoic acid (DHLA), have important advantages over other antioxidant agents such as vitamin E and C, partly due to their amphiphilic properties, which confer antioxidant actions in the membrane as well as in the cytosol. A preclinical study conducted in our lab showed that ALA alone and combined with clozapine reverses schizophrenia associated symptoms and pro-oxidant changes induced by ketamine in mice. Before the widespread use of antipsychotics, two studies found that low doses of ALA relieved symptoms in patients with schizophrenia. More recently, my colleagues and I conducted an open label proof of concept study that provided encouraging evidence that low doses of ALA might be an effective adjunctive treatment for schizophrenia. Based on promising preliminary results, the investigators will now test ALA in a more rigorous placebo-controlled clinical study. Specific Aim1: To conduct a prospective, randomized, double-blind, placebo-controlled trial to evaluate the efficacy of adjuvant treatment with low doses (100mg) of ALA to treat cognitive and negative symptoms of patients with schizophrenia. The investigators will randomize 50 patients over 4 months. Specific Aim 2: To quantify changes in biomarkers of oxidative stress in response to adjunctive treatment with ALA. The hypothesis is that changes in these biomarkers will mediate the clinical response to ALA. Research Plan: To carry out a proof of concept 4-month prospective, randomized, double-blind, controlled trial of alpha-lipoic acid, at doses of 100 mg/day or identical placebo tablets, added to ongoing antipsychotics in 50 stable patients (ages 18-60 years, 25 patients per group) with diagnosis of schizophrenia. The study will be conducted at the Drug Research and Development Center (NPDM), at the Universidade Federal do Ceará, Fortaleza, Brazil. This center has a long history of performing placebocontrolled trials in clinical medicine (http://www.npdm.ufc.br/) and has the necessary infrastructure to successfully complete the proposed study protocol. All participants will give written informed consent prior to study enrollment.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
48
Administration of ALA (100 mg/day) for 4 months, as an adjunct to antipsychotic medication.
Administration of placebo, as an adjunct to antipsychotic medication.
Núcleo de Pesquisa e Desenvolvimento de Medicamentos - UFC
Fortaleza, Ceará, Brazil
Change in the Brief Psychiatry Rating Scale (BPRS) scores
18-item rating scale to assess changes in psychopathology; each item is scored 0-6, yielding a total between 0 and 108.
Time frame: Baseline and 16 weeks
Change in the Simpson-Angus Extrapyramidal Symptoms Scale (SAS) scores
10-item rating scale to assess extrapyramidal symptoms; each item is scored 0-4, yielding a total between 0 and 40.
Time frame: Baseline and 16 weeks
Brain resting state activity
Functional Magnetic Resonance Imaging (fMRI) scans before and after treatment
Time frame: Baseline and 16 weeks
Gut Microbiota Composition
Analyses of patient's gut microbiota
Time frame: Baseline and 16 weeks
Change in Body Mass Index (BMI)
Weight and height will be combined to report BMI in kg/m\^2
Time frame: Baseline and 16 weeks
Change in Abdominal Circumference
Abdominal Circumference in cm
Time frame: Baseline and 16 weeks
Change in plasma Aspartate Aminotransferase (AST)
AST in U/L
Time frame: Baseline and 16 weeks
Change in plasma Aspartate Aminotransferase (AST) Alanine Aminotransferase (ALT)
ALT in U/L
Time frame: Baseline and 16 weeks
Change in Hemoglobin concentration (HC)
HC in g/dL
Time frame: Baseline and 16 weeks
Change in Hematocrit (Ht)
Ht in %
Time frame: Baseline and 16 weeks
Change in White blood cell count (WBC)
WBC in number per microliter
Time frame: Baseline and 16 weeks
Change in Neutrophil Count (NC)
NC in number per microliter
Time frame: Baseline and 16 weeks
Change in Platelet Count (PC)
PC in number per microliter
Time frame: Baseline and 16 weeks
Change in Glycohemoglobin (HbA1c)
HbA1c in %
Time frame: Baseline and 16 weeks
Change in serum level of Vitamin B12
Vitamin B12 in pg/mL
Time frame: Baseline and 16 weeks
Change in serum level of Folic Acid
Folic Acid in ng/mL
Time frame: Baseline and 16 weeks
Change in Plasma Glutathione (GSH)
GSH in ng/mL
Time frame: Baseline and 16 weeks
Change in serum level of Nitrite
Nitrite in nanomole/mililiter
Time frame: Baseline and 16 weeks
Change in serum level of Thiobarbituric acid reactive substances (TBARS)
TBARS in mmol of malonaldehyde/mL
Time frame: Baseline and 16 weeks
Change in serum level of Interleukin 1 β (IL-1β)
IL-1β in pg/mL
Time frame: Baseline and 16 weeks
Change in serum level of Interleukin-4
IL-4 in pg/mL
Time frame: Baseline and 16 weeks
Change in serum level of Interferon gamma (IFNγ)
IFNγ in pg/mL
Time frame: Baseline and 16 weeks
Change in serum level of Tumor necrosis factor alpha (TNF-α)
TNF-α in pg/mL
Time frame: Baseline and 16 weeks
Change in Indoleamine 2,3-dioxygenase (IDO) enzymatic activity
IDO activity in U IDO mol\^-1/mg\^-1
Time frame: Baseline and 16 weeks
Change in serum level of Eotaxin
Eotaxin in ng/mL
Time frame: Baseline and 16 weeks
Change in serum level of Isoprostanes
Isoprostanes in pg/mL
Time frame: Baseline and 16 weeks
Change in serum level of Calprotectin
Serum Calprotectin in ng/mL
Time frame: Baseline and 16 weeks
Change in serum level of Serotonin
Serotonin in ng/mL
Time frame: Baseline and 16 weeks
Change in Block Corsi Test
This test assesses visuo-spatial short term working memory. Participants are asked to mimick a researcher as he/she taps a sequence of up to nine identical spatially separated blocks. The test measures both the number of correct sequences and the longest sequence remembered.
Time frame: Baseline and 16 weeks
Change in serum level of Tryptophan
Tryptophan in micrograms/mL
Time frame: Baseline and 16 weeks
Change in Trail Making Test
Trail Making Test measured in time and number of errors. It tests visual attention and task switching. It consists of two parts in which the subject is instructed to connect a set of 25 dots as quickly as possible while still maintaining accuracy. Provide information about visual search speed, scanning, speed of processing, mental flexibility, executive functioning.
Time frame: Baseline and 16 weeks
Change in Subtest Digit Span
Individual tries to repeat digits forward, backward, and in ascending order. This test measures short term memory, working memory. The score is the maximum number of digits correctly remembered.
Time frame: Baseline and 16 weeks
Category (Animal) Fluency
Participants have to produce as many words as possible from a category in a given time (usually 60 seconds). Performance measure is the total number of words
Time frame: Baseline and 16 weeks
F-A-S test
It assesses phonemic fluency by requesting an individual to orally produce as many words as possible that begin with the letters F, A, and S within a prescribed time frame, usually 1 min.
Time frame: Baseline and 16 weeks
Rey Auditory Verbal Learning Test
Participants are asked to repeat list of 15 unrelated words; another list of 15 unrelated words are given and participants must again repeat the original list of 15 words and then again after 30 minutes. Score range: 0-15
Time frame: Baseline and 16 weeks
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