Contact information
matthew.wood@paediatrics.ox.ac.uk
01865 272419
Louise Gillane
mjaw-pa@paediatrics.ox.ac.uk
Matthew Wood
Professor of Neuroscience
Matthew Wood graduated in Medicine from the University of Cape Town in 1987, working in clinical Neuroscience before gaining a doctorate in Physiological Sciences from the University of Oxford in 1993. He is currently University Lecturer, and Fellow and Tutor in Medicine and Physiology at Somerville College.
Matthew’s research is in field of gene therapy for degenerative disorders of the nervous system and muscle. The main focus is the investigation of novel therapeutic approaches utilising short nucleic acids to target messenger RNA. Targeting RNA has the potential to allow modification of the target transcript, reprogramming of endogenous genetic defects or the targeting of specific disease alleles, all the while maintaining endogenous regulation of the target gene. Current work is investigating the potential of single-stranded antisense oligonucleotides for the modification of mRNA splicing, for example in Duchenne muscular dystrophy. In addition, the potential of double-stranded RNA for gene silencing, known as RNA interference (RNAi), is being investigated for the silencing of target genes and mutant alleles both in muscle and in the nervous system. In particular, RNAi has great potential as a future therapeutic agent for currently untreatable neurodegenerative disorders such as Parkinson’s disease.
Key publications
Delivery of siRNA to the mouse brain by systemic injection of targeted exosomes
Journal article
Alvarez-Erviti L. et al, (2011), Nature Biotechnology, 29, 341 - 345
Recent publications
Timing matters: Exon skipping therapy is most effective when initiated early in a mouse model of Duchenne muscular dystrophy
Journal article
Stenler S. et al, (2026), Molecular Therapy Nucleic Acids, 37
Accurately modeling RNase H-mediated antisense oligonucleotide efficacy
Journal article
Hill B. et al, (2026), Molecular Therapy Nucleic Acids, 37
Click Chemistry-Based Strategy for Modular Ligand Attachment to siRNAs: Toward Extrahepatic RNAi
Preprint
Rädler JA. et al, (2026)
Myonuclear Domain-Associated and Central Nucleation-Dependent Spatial Restriction of Dystrophin Protein Expression
Journal article
Chwalenia K. et al, (2026), Journal of Cachexia Sarcopenia and Muscle, 17
Systemic Inflammation Modulates Clearance and Drives Extra-Hepatic Distribution of Extracellular Vesicles
Journal article
Pavlova S. et al, (2026), Journal of Extracellular Vesicles, 15
- Ageing, Geratology and Degenerative Diseases
- Bioinformatics, Statistics and Computational Biology
- Cancer
- Cardiovascular Sciences
- Developmental Biology and Stem Cells
- Genes, Genetics, Epigenetics and Genomics
- Microbiology, Infection and Tropical Medicine
- Molecular, Cell, Systems and Structural Biology
- Musculoskeletal Science
- Neuroscience
- Ophthalmology, visual and circadian sciences
- Paediatrics
- Translational Medicine and Medical Technology
