DeCure's autonomous Neuro AI scientist is researching a drug-repurposing hypothesis for spinocerebellar ataxia type 15/16 — screening already-approved drugs against its 3-gene Open Targets disease module to publish open-access research. Research is fast; the path to publication is funded in milestone stages.
Disease moduleSpinocerebellar ataxia type 15/16 maps to a 3-gene Open Targets module — the target space DeCure's AI scientist screens approved drugs against.
DeCure.ai methodSignature reversal (LINCS) plus network proximity (STRING) rank already-approved drugs likely to perturb this module — the same engine that produces DeCure.ai's repurposing hypotheses.
Repurposing thesisScreening approved medicines against this disease module, then publishing the evidence for the strongest candidate. Known pharmacology and human exposure data make the first question sharper — they do not establish safety or efficacy in a new indication.
Research record
01
ResearchComing soon
Candidate research + dossier — target rationale, drug-repurposing thesis and evidence pack.proof: Published dossier + on-chain hash
02
ValidationComing soon
In-vitro biological validation at a contract research org (CRO).proof: CRO contract + in-vitro report
03
Peer review & paperComing soon
Peer-reviewed paper published open-access (preprint + journal).proof: DOI + open-access link + on-chain hash
Current lead
No approved-drug candidate for spinocerebellar ataxia type 15/16 is corroborated in the literature DeepSearch retrieved. Some conditions are managed with non-pharmacological care — a device, surgery or physical therapy — rather than a medicine; that may be the case here, or the literature we found may simply be too sparse yet to support a drug-repurposing angle.
Molecular view
SET and mariner transposase domain methyltransferase (SETMAR) — SETMAR is one of the genes genetically linked to this disease in Open Targets — shown as context, not as a drug target we're pursuing: no approved-drug candidate for this disease is yet corroborated in the literature we found.
Loading structure…
helix sheet sahdrag to rotate · scroll to zoom
RCSB Protein Data Bank · entry 3BO5 · 1.59 Å · ligand S-ADENOSYL-L-HOMOCYSTEINE (SAH). Experimental structure, not a prediction.
What the evidence adds up to
Spinocerebellar ataxia type 15/16 is not mentioned in any of the provided abstracts. The abstracts cover spinocerebellar ataxias broadly, and specific types 1, 2, 3, 6, and 7, but not type 15/16. No drug is tested or discussed in relation to that specific subtype.
For the broader category of spinocerebellar ataxias, the 2023 open pilot trial of topiramate assigned six patients with various hereditary forms of SCA to 50 mg/day for 24 weeks. Four patients completed the protocol without adverse events, and of those four, topiramate was effective for three. The abstract does not specify which SCA types were included, nor does it give quantitative response rates or survival data. A 2024 compassionate-use study of riluzole in six patients from two families with SCA type 7 reported a mean treatment duration of 4.8 years. Two patients had a less steep deterioration of ataxia after treatment compared to pre-treatment during the first 2.5 years; one showed an improvement of the SARA score soon after therapy and then overall stability for 3.5 years; two others showed improvement soon after therapy and stability for 5 and 3 years respectively. One visually impaired patient without neurological impairment did not worsen over 3.5 years. Improvements in visual function occurred in four patients, followed by stability up to 5 years, while two patients with advanced retinal damage showed no effect on vision. No adverse events were registered. The authors note this suggests a possible beneficial action of riluzole in SCA7, but the sample is small and uncontrolled.
A 2023 Japanese review states that no disease-modifying therapy has been established for spinocerebellar degeneration, and only symptomatic therapy is available. Taltirelin and protirelin are covered by health insurance for cerebellar ataxia symptoms in Japan and are expected to suppress symptom progression, but no trial data from these abstracts support that claim for SCA15/16. The 2011 review notes that effective therapies for ataxias are still lacking, despite progress in understanding pathogenesis. The 2025 IDEA study of 53 patients with early SCA1, 2, 3, and 6 found that few measures showed statistically significant changes at 12 months, and at 24 months the strongest associations of change were in patient-reported ADL scores. That study does not involve SCA15/16.
What is still missing for spinocerebellar ataxia type 15/16 specifically: any clinical trial data, any drug tested in that population, any natural history study quantifying its progression, and any validated outcome measure for that subtype. The broader field lacks disease-modifying therapies and reliable early-change measures, and the few drug trials that exist are small, open-label, and not randomised.
Evidence
Retrieved by DeepSearch across 234,678,978 indexed works and resolved on OpenAlex — ranked by citations, including the results that did not work.
Current Opinion in Neurology · 2007 · 151 citations
Spinocerebellar ataxias: an update
AbstractPURPOSE OF REVIEW: Here we discuss recent advances regarding the molecular genetic basis of dominantly inherited ataxias. RECENT FINDINGS: Important recent observations include insights into the mechanisms by which expanded polyglutamine causes cerebellar degeneration; new findings regarding how noncoding expansions may cause disease; the discovery that conventional (i.e. nonrepeat) mutations underlie recently identified ataxias; and growing recognition that multiple biological pathways, when perturbed, can cause cerebellar degeneration. SUMMARY: The dominant ataxias, also known as spinocerebellar ataxias, continue to grow in number. Here we review the major categories of spinocerebellar ataxias: expanded polyglutamine ataxias; noncoding repeat ataxias; and ataxias caused by conventional mutations. After discussing features shared by these disorders, we present recent evidence supporting a toxic protein mechanism for the polyglutamine spinocerebellar ataxias and the recognition that both protein misfolding and perturbations in nuclear events represent key events in pathogenesis. Less is known about pathogenic mechanisms in spinocerebellar ataxias due to noncoding repeats, though a toxic RNA effect remains possible. Newly discovered, conventional mutations in spinocerebellar ataxias suggest a wide range of biological pathways can be disrupted to cause progressive ataxia. Finally, we discuss how new mechanistic insights can drive the push toward preventive treatment.
Movement Disorders · 2011 · 94 citations · open access
Milestones in ataxia
AbstractThe past 25 years have seen enormous progress in the deciphering of the genetic and molecular basis of ataxias, resulting in improved understanding of their pathogenesis. The most significant milestones during this period were the cloning of the genes associated with the common spinocerebellar ataxias, ataxia telangiectasia, and Friedreich ataxia. To date, the causative mutations of more than 30 spinocerebellar ataxias and 20 recessive ataxias have been identified. In addition, there are numerous acquired ataxias with defined molecular causes, so that the entire number of distinct ataxia disorders exceeds 50 and possibly approaches 100. Despite this enormous heterogeneity, a few recurrent pathophysiological themes stand out. These include protein aggregation, failure of protein homeostasis, perturbations in ion channel function, defects in DNA repair, and mitochondrial dysfunction. The clinical phenotypes of the most common ataxia disorders have been firmly established, and their natural history is being studied in ongoing large observational trials. Effective therapies for ataxias are still lacking. However, novel drug targets are under investigation, and it is expected that there will be an increasing number of therapeutic trials in ataxia.
Movement Disorders Clinical Practice · 2025 · 4 citations · open access
Longitudinal Changes in Patient‐ and Clinical‐Reported Outcomes in Early Spinocerebellar Ataxia Types 1, 2, 3, and 6 from the <scp>IDEA</scp> Study
AbstractBACKGROUND: Clinical outcomes assessments (COAs) in spinocerebellar ataxia (SCA) need to be standardized, ataxia-specific, sensitive to change, clinically relevant, and meaningful to patients. OBJECTIVES: To evaluate the longitudinal 1- and 2-year performances of different patient reported outcomes, including the Patient Reported Outcome Measure of Ataxia (PROM-Ataxia), and clinician reported outcomes, including FARS and SARA, in those with early manifest symptoms of SCA 1, 2, 3, and 6. METHODS: We studied 53 patients with early stage SCA1-3 and SCA6 from The Instrumented Data Exchange for Ataxia Study and 24 age-matched healthy controls. Participants were seen every 6 months for 2 years. Mixed models were used to estimate change over 12- and 24-months of follow-up. Changes on the FARS-FS and PGI-C were used as anchors to estimate meaningful changes. RESULTS: Among persons with SCA, mean age was 48.7 years and mean SARA score was 9.3. Few measures showed statistically significant changes at 12 months. At 24-months, the FARS-ADL, PROM-Ataxia total, PROM-Ataxia physical, and PROM-Ataxia ADL scores showed the strongest associations of change. CONCLUSIONS: Patient reported or derived outcome measures, such as FARS-ADL and ADL sub domain of the PROM-Ataxia, can capture longitudinal change in patients' symptom experience over a 2-year period and its impact on daily activities, even in those with early disease. More work is needed to identify outcomes that reliably capture change earlier.
Clinical Case Reports · 2023 · 3 citations · open access
A trial of topiramate for patients with hereditary spinocerebellar ataxia
AbstractIn an open pilot trial, six patients with various hereditary forms of spinocerebellar ataxia (SCA) were assigned to topiramate (50 mg/day) for 24 weeks. Four patients completed the protocol without adverse events. Of these four patients, topiramate was effective for three patients. Some patients with SCA could respond to treatment with topiramate.
Long-Term Follow-Up before and during Riluzole Treatment in Six Patients from Two Families with Spinocerebellar Ataxia Type 7
AbstractBACKGROUND: Currently no curative treatment exists for spinocerebellar ataxias (SCAs). Riluzole repurposing was proposed as a symptomatic treatment in different types of cerebellar ataxia. We report a long-term-follow up under riluzole treatment in SCA type 7. METHODS: Six patients received Riluzole 50 mg twice daily on a compassionate use program for a mean of 4.8 years (range 3.5-9). We measured ataxia onset and progression through the Scale for the Assessment and Rating of Ataxia (SARA), and collected extensive ophthalmological data before and after Riluzole treatment. Electrocardiogram and laboratory profile for drug safety were performed every six months. RESULTS: Riluzole treatment showed no effect on visual function in two patients with an advanced retinal damage. Improvements of visual function occurred in four patients followed by ophthalmologic stability up to 5 years after starting treatment. Two patients had a less steep deterioration of ataxia after treatment compared to pre-treatment, during the first 2,5 years of therapy. One showed soon after therapy an improvement of the SARA score, and then overall stability lasting 3,5 years, followed by ataxia worsening. One visually impaired patient without neurological impairment did not worse until the last visit after 3,5 years of follow-up. The remaining 2 patients showed an improvement of SARA scores soon after therapy, and an overall stability lasting respectively 5 and 3 years. No adverse event was registered during the observation period. DISCUSSION: This study suggests a possible beneficial action of Riluzole in SCA7 and provides a detailed description of the ophthalmologic profile of these patients.
AbstractNo disease-modifying therapy has been established for spinocerebellar degeneration and multiple system atrophy, and only symptomatic therapy is currently available. Taltirelin and protirelin are drugs covered by health insurance for cerebellar ataxia symptoms, and are expected to suppress the progression of symptoms. Muscle relaxants are used for spasticity associated with spinocerebellar degeneration, and vasopressors and therapeutic agents for dysuria are used for autonomic symptoms of multiple system atrophy. It is necessary to develop a new therapeutic agent with a different mechanism of action, aimed specifically at modifying the disease progression in patients with spinocerebellar degeneration and multiple system atrophy.
Annals of Movement Disorders · 2023 · 0 citations · open access
Stem cell therapy for spinocerebellar ataxias
AbstractStem cells have proved to be the “wonder treatment” for various genetic diseases and holds great potential for the treatment of numerous, but presently incurable maladies. However, stem cells may not be the answer for all such diseases. With the rampant growth of clinics offering stem cell therapy for almost every incurable disease, it is prudent that the indications, ethical considerations, and potential side effects of this treatment are known to the physicians and patients. In this article, we have summarized the available evidence on stem cell therapy in spinocerebellar ataxias.
Disease module: DeepOracle (Open Targets). Structures: RDKit from PubChem SMILES. Literature: retrieved by DeepSearch across 234,678,978 indexed works (targeted per-candidate search), resolved on OpenAlex.
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