Molecular Imaging of Inflammatory Disease.
Meredith A JonesWilliam M MacCuaigAlex N FrickensteinSeda CamalanMetin N GurcanJennifer Holter-ChakrabartyKatherine T MorrisMolly W McNallyKristina K BoothSteven CarterWilliam E GrizzleLacey R McNallyPublished in: Biomedicines (2021)
Inflammatory diseases include a wide variety of highly prevalent conditions with high mortality rates in severe cases ranging from cardiovascular disease, to rheumatoid arthritis, to chronic obstructive pulmonary disease, to graft vs. host disease, to a number of gastrointestinal disorders. Many diseases that are not considered inflammatory per se are associated with varying levels of inflammation. Imaging of the immune system and inflammatory response is of interest as it can give insight into disease progression and severity. Clinical imaging technologies such as computed tomography (CT) and magnetic resonance imaging (MRI) are traditionally limited to the visualization of anatomical information; then, the presence or absence of an inflammatory state must be inferred from the structural abnormalities. Improvement in available contrast agents has made it possible to obtain functional information as well as anatomical. In vivo imaging of inflammation ultimately facilitates an improved accuracy of diagnostics and monitoring of patients to allow for better patient care. Highly specific molecular imaging of inflammatory biomarkers allows for earlier diagnosis to prevent irreversible damage. Advancements in imaging instruments, targeted tracers, and contrast agents represent a rapidly growing area of preclinical research with the hopes of quick translation to the clinic.
Keyphrases
- oxidative stress
- magnetic resonance imaging
- computed tomography
- contrast enhanced
- high resolution
- chronic obstructive pulmonary disease
- inflammatory response
- cardiovascular disease
- rheumatoid arthritis
- magnetic resonance
- end stage renal disease
- primary care
- healthcare
- newly diagnosed
- type diabetes
- chronic kidney disease
- stem cells
- positron emission tomography
- ejection fraction
- prognostic factors
- cell therapy
- bone marrow
- coronary artery disease
- drug delivery
- fluorescence imaging