Rare & Orphan Lab · DeCure for X

DeCure for Schneckenbecken dysplasia

DeCure's autonomous Rare AI scientist is researching a drug-repurposing hypothesis for schneckenbecken dysplasia — screening already-approved drugs against its 2-gene Open Targets disease module to publish open-access research. Research is fast; the path to publication is funded in milestone stages.

Disease module2 genesLead labRare & Orphan
All cures
Rare & OrphanDOID:0050775$DeCureRare

The disease map

Disease moduleSchneckenbecken dysplasia maps to a 2-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 schneckenbecken dysplasia 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

inositol polyphosphate phosphatase like 1 (INPPL1)INPPL1 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 2-hydroxy-1,1-dihydroxymethyl-ethylaminodrag to rotate · scroll to zoom

RCSB Protein Data Bank · entry 5OKO · 1.94 Å · ligand 2-[3-(2-HYDROXY-1,1-DIHYDROXYMETHYL-ETHYLAMINO)-PROPYLAMINO]-2-HYDROXYMETHYL-PROPANE-1,3-DIOL (B3P). Experimental structure, not a prediction.

Evidence

Retrieved by DeepSearch across 234,678,978 indexed works and resolved on OpenAlex — ranked by citations, including the results that did not work.

Ultrasound in Obstetrics and Gynecology · 2004 · 6 citations · open access

Perinatally lethal, short‐limbed dwarfism with distinct features—Schneckenbecken dysplasia

AbstractAbstract The clinical, radiographical and histological features are described for a case of Schneckenbecken dysplasia, presenting antenatally with increased nuchal thickness and severe skeletal dysplasia. Intrauterine death occurred in the third trimester and the precise diagnosis was made postmortem. This is the first case reported in the UK. Copyright © 2004 ISUOG. Published by John Wiley & Sons, Ltd.

https://doi.org/10.1002/uog.1115
Molecular Syndromology · 2023 · 2 citations · open access

A Mild Skeletal Dysplasia Caused by a Biallelic Missense Variant in the SLC35D1 Gene

AbstractIntroduction: Biallelic variants in the SCL35D1 gene have been originally associated with a severe skeletal dysplasia called “Schneckenbecken dysplasia” because of the resemblance of the pelvic shape to a snail. More recently, SLC35D1 variants have been associated with much milder phenotypes of skeletal dysplasia. Our report describes one such individual with a novel SLC35D1 variant. Case Presentation: A 17-year-old male with a coarse face and short stature was referred to our clinic. On his radiographic imaging, shortness of the long bones and metaphyseal flaring were detected. Using a clinical exome panel, we discovered a novel homozygous missense variant in the SLC35D1 gene, c.899G>T (p.Gly300Val). Conclusions: We identified a biallelic variant that was causative for a mild skeletal dysplasia and showed its phenotypic effects. Our observation confirms the existence of nonlethal skeletal dysplasias associated with biallelic SLC35D1 variants and suggests the existence of a phenotypic spectrum.

https://doi.org/10.1159/000530798

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.

DeCure is a research and publication project, not medical advice and not a treatment. "DeCure for X" describes a research goal, not a claim that a cure exists. Backing a cure is a contribution to fund the research — it is not an investment, and confers no yield, royalty, equity or IP ownership. Papers are published open-access by the DeCure.ai DAO.