Synpromics Announces Collaboration with UCL to Develop Revolutionary Gene Therapy for Parkinson’s Disease

28 Nov 2017
Abigail Berry
Administrator / Office Personnel

Industry news

Synpromics Ltd has announced a new collaboration with UCL to generate a range of synthetic gene promoters for the central nervous system (CNS), to develop a gene therapy for Parkinson’s disease.

The joint project will see the company develop novel gene promoters that specifically control the expression of therapeutic genes in different sub-populations of neurons. In the first instance, UCL will use these new gene switches to develop a gene therapy-based approach for the treatment of Young-Onset Parkinson’s disease.

Commenting on the collaboration, Dr Michael Roberts, Founder and Chief Scientific Officer of Synpromics stated: “Tightly controlling the therapeutic gene is an essential element in the development of any successful gene therapy and Synpromics’ technology offers the best means to achieve that control. This collaboration will allow the company to develop a gene therapy approach for a largely unmet clinical need, where tight gene control is an absolute requirement. It also gives us the opportunity to work with UCL, one of the few world-leading institutions actively developing novel gene-based therapies.”

The collaboration is expected to last over 24 months with work being split equally between the two partners.

“We are delighted to be working with the leaders in gene control, Synpromics Ltd, to develop gene therapy for Young-Onset Parkinson’s disease. Parkinson’s is the second most common untreatable progressive brain disease and novel therapeutic approaches are required. This collaboration allows us to develop tailor-made gene therapy vectors for untreatable brain disorders,” said Dr Simon Waddington (UCL Institute for Women's Health).

Synpromics continues to drive forward with the development of its innovative approach to better control of gene function with this strategic move into CNS applications. This adds to the work already done in liver and muscle and the company’s proprietary inducible promoter platform. Synpromics works with leading clinicians focused on trying to develop cures for genetic diseases with significant unmet need, enabled by its innovative gene control technology, to improve human health.

See our coverage of Neuroscience 2017 here >>

Links

Tags

Genome AnalysisGenomics, the study of genomes, includes functional genomics, evolutionary genomics and comparative genomics. There are many genomic technologies such as DNA sequencing of whole genomes, computational biology and bioinformatics. DNA and nucleic acids must be isolated and concentrated from cells for analysis with kits, automated analyzers and software. Other useful technologies for studying genomics include PCR, microarrays and electrophoresis.Cellular PathologyCellular Pathology deals with the microscopic analysis of tissue samples and cells. Sample preparation and processing includes fixation, staining, sectioning and slide mounting, using equipment such microtomes and cryostats. In choosing immunohistochemistry and immunocytochemistry kits, consider chromogens, staining method, antibodies, microscopes and imaging.Gene Expression and Molecular CloningMolecular cloning is a set of techniques that utilizes vectors to transfer recombinant DNA into host cells and is an essential tool for investigating the expression of genes and proteins in bacterial or mammalian cells. A variety of vectors optimized for gene cloning and expression in a range of host organisms are available, alongside competent cells for genetic replication. Here, you can explore a range of molecular tools, high-quality genomic and cDNA libraries, premade clones, transformation and transfection reagents and mutagenesis or gene expression detection assays and expression arrays. Find the best gene expression and molecular cloning products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Parkinsons DiseaseNeurodegenerationNeurodegeneration refers to the progressive deterioration of the structure and function of the nervous system, often seen in diseases like Alzheimer's and Parkinson's. Research focuses on early detection and potential therapies. Explore neurodegeneration research tools in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.Gene TherapyGene therapy is a technique that modifies or replaces genes within an individual's cells to treat or prevent diseases. This approach holds potential for curing genetic disorders, cancers, and certain viral infections. Advances in gene editing technologies like CRISPR are driving the growth of gene therapy. Explore gene therapy tools and technologies in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.
Synpromics Announces Collaboration with UCL to Develop Revolutionary Gene Therapy for Parkinson’s Disease