Advances in nanoparticle contrast agents for molecular imaging have made magnetic resonance imaging a promising modality for noninvasive visualization and assessment of vascular and cardiac disease processes. This review provides a description of the various nanoparticles exploited for imaging cardiovascular targets. Nanoparticle probes detecting inflammation, apoptosis, extracellular matrix, and angiogenesis may provide tools for assessing the risk of progressive vascular dysfunction and heart failure. The utility of nanoparticles as multimodal probes and/or theranostic agents has also been investigated. Although clinical application of these nanoparticles is largely unexplored, the potential for enhancing disease diagnosis and treatment i...
Though nanoparticles are being used for several biomedical applications, the safety of the same is s...
In recent decades, with the rapid development of nanotechnology, nanomaterials have been widely used...
Atherosclerosis is the main underlying cause of cardiovascular diseases (CVDs), which remain the num...
Molecular imaging is aimed at noninvasive visualization of fundamental (disease) biomarkers in livin...
Molecular imaging is aimed at noninvasive visualization of fundamental (disease) biomarkers in livin...
Cardiovascular diseases refer to a group of the circulatory system disorders, including atherosclero...
Nanoparticle contrast agents for MRI may aid in identifying atherosclerotic lesions that give rise t...
Nanotechnology has been integrated into healthcare system in terms of diagnosis as well as therapy. ...
Theranostics, literally derived from the combination of the words diagnostics and therapy, is an eme...
Nanoparticles are uniquely suited for the study and development of potential therapies against ather...
Molecular magnetic resonance imaging has recently emerged as a powerful tool for the detection and a...
Nanomaterials have much to offer, not only in deciphering innate immune cell biology and tracking ce...
Apoptosis, or programmed cell death, is a morphologically and biochemically distinct form of cell de...
Recently, multimodality molecular imaging has evolved into a fast-growing research field with goals ...
In this thesis research is described which was aimed to develop lipidic nanoparticles for the invest...
Though nanoparticles are being used for several biomedical applications, the safety of the same is s...
In recent decades, with the rapid development of nanotechnology, nanomaterials have been widely used...
Atherosclerosis is the main underlying cause of cardiovascular diseases (CVDs), which remain the num...
Molecular imaging is aimed at noninvasive visualization of fundamental (disease) biomarkers in livin...
Molecular imaging is aimed at noninvasive visualization of fundamental (disease) biomarkers in livin...
Cardiovascular diseases refer to a group of the circulatory system disorders, including atherosclero...
Nanoparticle contrast agents for MRI may aid in identifying atherosclerotic lesions that give rise t...
Nanotechnology has been integrated into healthcare system in terms of diagnosis as well as therapy. ...
Theranostics, literally derived from the combination of the words diagnostics and therapy, is an eme...
Nanoparticles are uniquely suited for the study and development of potential therapies against ather...
Molecular magnetic resonance imaging has recently emerged as a powerful tool for the detection and a...
Nanomaterials have much to offer, not only in deciphering innate immune cell biology and tracking ce...
Apoptosis, or programmed cell death, is a morphologically and biochemically distinct form of cell de...
Recently, multimodality molecular imaging has evolved into a fast-growing research field with goals ...
In this thesis research is described which was aimed to develop lipidic nanoparticles for the invest...
Though nanoparticles are being used for several biomedical applications, the safety of the same is s...
In recent decades, with the rapid development of nanotechnology, nanomaterials have been widely used...
Atherosclerosis is the main underlying cause of cardiovascular diseases (CVDs), which remain the num...