Area of research
Public Health, Environmental and Occupational Health · Infectious Diseases
Research interest
Research interests include Biology, Streptococcus pyogenes, Microbiology, Plasmin, Chemistry, and Receptor.
Molecular characterization of the interaction between human IgG and the M-related proteins from Streptococcus pyogenes
Streptococcus pyogenes M1T1 Variants Induce an Inflammatory Neutrophil Phenotype Including Activation of Inflammatory Caspases
An optimised GAS-pharyngeal cell biofilm model
Assessing the Role of Pharyngeal Cell Surface Glycans in Group A Streptococcus Biofilm Formation
Current Understanding of Group A Streptococcal Biofilms
Characterizing the role of tissue-type plasminogen activator in a mouse model of Group A streptococcal infection
Preferential Acquisition and Activation of Plasminogen Glycoform II by PAM Positive Group A Streptococcal Isolates
Disease Manifestations and Pathogenic Mechanisms of Group A Streptococcus
R270C polymorphism leads to loss of function of the canine P2X7 receptor
Developing<i>Galleria mellonella</i>as a model host for human pathogens
Bacterial Filtration Using Carbon Nanotube/Antibiotic Buckypaper Membranes
Plasmin(ogen) Acquisition by Group A <b><i>Streptococcus</i></b> Protects against C3b-Mediated Neutrophil Killing
Site-restricted plasminogen activation mediated by group A streptococcal streptokinase variants
Bacterial Plasminogen Receptors: Mediators of a Multifaceted Relationship
Tracing the evolutionary history of the pandemic group A streptococcal M1T1 clone
Streptokinase variants from <i><scp>S</scp>treptococcus pyogenes</i> isolates display altered plasminogen activation characteristics – implications for pathogenesis
The Role of Streptokinase as a Virulence Determinant of Streptococcus pyogenes – Potential for Therapeutic Targeting
Molecular signatures of long‐lived proteins: autolytic cleavage adjacent to serine residues
Functional expression of the damage-associated molecular pattern receptor P2X7 on canine kidney epithelial cells