Founding offer · lifetime membership for a single £24, exclusive to our first members · closes 20 June Claim your place →
Global Research Partnerships £24 Lifetime Log inCreate free account

Funded Projects › H2020

BATCure · Developing new therapies for Batten disease

H2020Status: CLOSED1 January 201630 June 2019EU funding €5,995,769Call H2020-PHC-2014-2015

The goal of BATCure is to advance the development of new therapeutic options for a group of rare lysosomal diseases - neuronal ceroid lipofuscinoses (NCL) or Batten disease. There are > thousand affected across Europe, with a combined incidence of c.1:100 000. The NCLs are devastating and debilitating genetic disorders that mainly affect children, who suffer progressive dementia and motor decline, visual failure and epilepsy, leading to a long period of complete dependence on others, and eventually a premature death. Existing palliative treatment can reduce, but does not eliminate, the burden of seizures and the progressively worsening effects on the whole body due to decreasing CNS influence and control. There are no curative treatments in the clinic for any type of NCL. We will follow a novel integrated strategy to identify specific gene and small molecule treatments for three genetic types of Batten disease that include the most prevalent world-wide, juvenile CLN3 disease, and in southern and mediterranean Europe, CLN6 and CLN7 diseases.To develop new therapies for these 3 types of Batten disease, BATCure will:1. Create new models, tools and technologies for developing and testing therapies2. Further delineate disease biology and gene function to identify new therapeutic target pathways utilising yeast and pluripotent stem cell models3. Identify biochemical therapeutic target pathways, facilitate effective evaluation of preclinical therapies and improve diagnostics4. Extend a comprehensive natural history beyond the brain to include cardiology, the spinal cord, PNS, psychiatric and metabolic changes5. Identify new and repurpose existing small molecule therapy6. Triage new compound treatments in zebrafish, a high-throughput small vertebrate model 7. Deliver and monitor new treatments using mouse models8. Provide a novel mechanism to involve patients and their families to inform and fully contribute to therapy development and prepare for clinical trials

Consortium · 14 organisations

coordinator

UNIVERSITY COLLEGE LONDON

UK · €1,873,454

participant

BATTEN DISEASE FAMILY ASSOCIATION

UK · €62,338

participant

FONDAZIONE TELETHON ETS

IT · €566,248

participant

THE ROYAL VETERINARY COLLEGE

UK · €104,213

participant

THE MANCHESTER METROPOLITAN UNIVERSITY

UK · €224,708

participant

AcureOmics AB

SE · €314,375

participant

ORPHAZYME APS

DK · €289,250

participant

UNIVERSITAETSKLINIKUM HAMBURG-EPPENDORF

DE · €815,350

participant

LATVIJAS ORGANISKAS SINTEZES INSTITUTS

LV · €399,625

participant

ACONDICIONAMIENTO TARRASENSE ASSOCIACION

ES · €213,963

participant

PRONEXUS ANALYTICAL AB

SE · €300,641

participant

KING'S COLLEGE LONDON

UK · €207,640

participant

CARDIFF UNIVERSITY

UK · €223,966

participant

UNIVERSIDAD DE SALAMANCA

ES · €400,000

Research fields

View the official record on CORDIS →

← Find collaborators and more funded projects

Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.