Area of research
Genetics · Cardiology and Cardiovascular Medicine
Research interest
Research focused on Virology and microRNA, with related work in Myocardial infarction, MAPK/ERK pathway, In vivo. Notable publications include 'MicroRNA therapy stimulates uncontrolled cardiac repair after myocardial infarction in pigs', 'Persistence of viral RNA, pneumocyte syncytia and thrombosis are hallmarks of advanced COVID-19 pathology', and 'MiR-378 Controls Cardiac Hypertrophy by Combined Repression of Mitogen-Activated Protein Kinase Pathway Factors'.
Cross-species comparison reveals that Hmga1 reduces H3K27me3 levels to promote cardiomyocyte proliferation and cardiac regeneration
Identification of FDA-approved drugs that induce heart regeneration in mammals
Persistent <scp>SARS‐CoV</scp>‐2 infection in patients seemingly recovered from <scp>COVID</scp>‐19
Therapeutic efficacy of AAV-mediated restoration of PKP2 in arrhythmogenic cardiomyopathy
Ribonucleicacid interference or small molecule inhibition of<i>Runx</i>1 in the border zone prevents cardiac contractile dysfunction following myocardial infarction
Thymosin β4 and prothymosin α promote cardiac regeneration post-ischaemic injury in mice
SUMO2 Protects Against Tau-induced Synaptic and Cognitive Dysfunction
SARS-CoV-2, myocardial injury and inflammation: insights from a large clinical and autopsy study
<i>SREBP2</i> gene therapy targeting striatal astrocytes ameliorates Huntington’s disease phenotypes
I06 SREBP2 delivery to striatal astrocytes normalizes transcription of cholesterol biosynthesis genes and ameliorates pathological features in huntington’s disease
Persistence of viral RNA, pneumocyte syncytia and thrombosis are hallmarks of advanced COVID-19 pathology
Genetic lineage tracing reveals poor angiogenic potential of cardiac endothelial cells
SREBP2 delivery to striatal astrocytes normalizes transcription of cholesterol biosynthesis genes and ameliorates pathological features in Huntington’s Disease
MicroRNA therapy stimulates uncontrolled cardiac repair after myocardial infarction in pigs
Common Regulatory Pathways Mediate Activity of MicroRNAs Inducing Cardiomyocyte Proliferation
mCerulean3-Based Cameleon Sensor to Explore Mitochondrial Ca2+ Dynamics In Vivo
The Mitochondrial Calcium Uniporter Controls Skeletal Muscle Trophism In Vivo
Manufacturing and Characterization of a Recombinant Adeno-Associated Virus Type 8 Reference Standard Material
MiR-378 Controls Cardiac Hypertrophy by Combined Repression of Mitogen-Activated Protein Kinase Pathway Factors