Functional imaging of proteolytic activity is an emerging strategy to quantify disease and response to therapy at the molecular level. We present a new peptide-based imaging probe technology that advances these goals by exploiting enzymatic activity to deposit probes labelled with near-infrared (NIR) fluorophores or radioisotopes in cell membranes of disease-associated proteolysis. This strategy allows for non-invasive detection of protease activity in vivo and ex vivo by tracking deposited probes in tissues. We demonstrate non-invasive detection of thrombin generation in a murine model of pulmonary embolism using our protease-activated peptide probes in microscopic clots within the lungs with NIR fluorescence optical imaging and positron-e...
Probes that allow site-specific protein labeling have become critical tools for visualizing biologic...
The effect of intralysosomal proteolysis of near- infrared fluorescent (NIRF) self-quenched macromol...
Although various activatable optical probes have been developed to visualize metalloproteinase (MMP)...
Progress in pharmaceutical development is highly-dependent on preclinical in vivo animal studies. Sm...
Biomedical imaging has become an important tool in the study of "-omics" fields by allowing the noni...
Progress in pharmaceutical development is highly-dependent on preclinical in vivo animal studies. Sm...
Biomedical in vivo sensing methods in the near-infrared (NIR) range, which that provide relatively h...
Neutrophil elastase (NE), a typical hematopoietic serine protease, has significant roles in inflamma...
The design of near-infrared fluorescent (NIRF) probes that are activated by specific proteases has, ...
Proteolysis, involved in many processes in living organisms, is tightly regulated in space and time ...
Background: Proteolysis, involved in many processes in living organisms, is tightly regulated in spa...
Aberrant protease activity is a shared feature of most degenerative pathophysiologies, and could pot...
ObjectivesThe goal of this study was to develop and validate a new fibrin-targeted imaging agent tha...
International audienceA near-infrared fluorescent (NIRF) substrate-based probe (SBP) was conceived t...
Probes that allow site-specific protein labeling have become critical tools for visualizing biologic...
The effect of intralysosomal proteolysis of near- infrared fluorescent (NIRF) self-quenched macromol...
Although various activatable optical probes have been developed to visualize metalloproteinase (MMP)...
Progress in pharmaceutical development is highly-dependent on preclinical in vivo animal studies. Sm...
Biomedical imaging has become an important tool in the study of "-omics" fields by allowing the noni...
Progress in pharmaceutical development is highly-dependent on preclinical in vivo animal studies. Sm...
Biomedical in vivo sensing methods in the near-infrared (NIR) range, which that provide relatively h...
Neutrophil elastase (NE), a typical hematopoietic serine protease, has significant roles in inflamma...
The design of near-infrared fluorescent (NIRF) probes that are activated by specific proteases has, ...
Proteolysis, involved in many processes in living organisms, is tightly regulated in space and time ...
Background: Proteolysis, involved in many processes in living organisms, is tightly regulated in spa...
Aberrant protease activity is a shared feature of most degenerative pathophysiologies, and could pot...
ObjectivesThe goal of this study was to develop and validate a new fibrin-targeted imaging agent tha...
International audienceA near-infrared fluorescent (NIRF) substrate-based probe (SBP) was conceived t...
Probes that allow site-specific protein labeling have become critical tools for visualizing biologic...
The effect of intralysosomal proteolysis of near- infrared fluorescent (NIRF) self-quenched macromol...
Although various activatable optical probes have been developed to visualize metalloproteinase (MMP)...