MRI of tumor angiogenesis
Top Cited Papers
- 10 July 2007
- journal article
- review article
- Published by Wiley in Journal of Magnetic Resonance Imaging
- Vol. 26 (2) , 235-249
- https://doi.org/10.1002/jmri.20991
Abstract
Angiogenesis has long been established as a key element in the pathophysiology of tumor growth and metastasis. Increasingly, new molecularly targeted antiangiogenic drugs are being developed in the fight against cancer. These drugs bring with them a need for an accurate means of diagnosing tumor angiogenesis and monitoring response to treatment. Imaging techniques can offer this in a noninvasive way, while also providing functional information about the tumor. Among the many clinical imaging techniques available, MRI alone can provide relatively good spatial resolution and specificity, without ionizing radiation and with limited side effects. Arterial spin labeling (ASL) and blood oxygenation level‐dependent (BOLD) imaging techniques can be employed to confer indirect measures of angiogenesis, such as blood flow and blood volume, without the need for external contrast agents. Dynamic contrast‐enhanced (DCE)‐MRI is rapidly emerging as a standard method for directly measuring angiogenesis during angiogenesis‐inhibitor drug trials. As macromolecular MR contrast agents become available, they will inevitably be utilized in the assessment of tumor perfusion and vessel permeability. Meanwhile, technological advances have made imaging at a molecular level a possibility. They have brought the potential to directly target MR contrast agents to markers of angiogenesis, such as the αvβ3 integrin. Before this is used clinically, however, substantial gains in sensitivity brought about by improved coils, pulse sequences, and contrast agents will be needed. Herein we discuss the techniques currently available for MRI of angiogenesis, along with their respective advantages and disadvantages, and what the future holds for this evolving field of imaging. J. Magn. Reson. Imaging 2007.Keywords
This publication has 94 references indexed in Scilit:
- Circulating Endothelial Cells, Endothelial Progenitor Cells, and Endothelial Microparticles in CancerNeoplasia, 2006
- Magnetic Resonance Imaging and Confocal Microscopy Studies of Magnetically Labeled Endothelial Progenitor Cells Trafficking to Sites of Tumor AngiogenesisThe International Journal of Cell Cloning, 2005
- Functional and molecular mapping of uncoupling between vascular permeability and loss of vascular maturation in ovarian carcinoma xenografts: The role of stroma cells in tumor angiogenesisInternational Journal of Cancer, 2005
- Phase I clinical and pharmacokinetic study of PTK/ZK, a multiple VEGF receptor inhibitor, in patients with liver metastases from solid tumoursEuropean Journal Of Cancer, 2005
- Application of a Macromolecular Contrast Agent for Detection of Alterations of Tumor Vessel Permeability Induced by RadiationClinical Cancer Research, 2004
- Comparison of BOLD contrast and Gd‐DTPA dynamic contrast‐enhanced imaging in rat prostate tumorMagnetic Resonance in Medicine, 2004
- Micro-PET Imaging of αvβ3-Integrin Expression with 18F-Labeled Dimeric RGD PeptideMolecular Imaging, 2004
- Gadolinium-labeled dendrimers as biometric nanoprobes to detect vascular permeabilityJournal of Materials Chemistry, 2003
- New perspectives in clinical oncology from angiogenesis researchEuropean Journal Of Cancer, 1996
- Iron deprivation‐induced apoptosis in HL‐60 cellsFEBS Letters, 1994