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Quantitativein vivocell-surface receptor imaging in oncology: kinetic modeling and paired-agent principles from nuclear medicine and optical imaging
- Source :
- Physics in Medicine and Biology. 60:R239-R269
- Publication Year :
- 2015
- Publisher :
- IOP Publishing, 2015.
-
Abstract
- The development of methods to accurately quantify cell-surface receptors in living tissues would have a seminal impact in oncology. For example, accurate measures of receptor density in vivo could enhance early detection or surgical resection of tumors via protein-based contrast, allowing removal of cancer with high phenotype specificity. Alternatively, accurate receptor expression estimation could be used as a biomarker to guide patient-specific clinical oncology targeting of the same molecular pathway. Unfortunately, conventional molecular contrast-based imaging approaches are not well adapted to accurately estimating the nanomolar-level cell-surface receptor concentrations in tumors, as most images are dominated by nonspecific sources of contrast such as high vascular permeability and lymphatic inhibition. This article reviews approaches for overcoming these limitations based upon tracer kinetic modeling and the use of emerging protocols to estimate binding potential and the related receptor concentration. Methods such as using single time point imaging or a reference-tissue approach tend to have low accuracy in tumors, whereas paired-agent methods or advanced kinetic analyses are more promising to eliminate the dominance of interstitial space in the signals. Nuclear medicine and optical molecular imaging are the primary modalities used, as they have the nanomolar level sensitivity needed to quantify cell-surface receptor concentrations present in tissue, although each likely has a different clinical niche.
- Subjects :
- Oncology
medicine.medical_specialty
Receptor expression
Receptors, Cell Surface
Models, Biological
Article
Interstitial space
In vivo
Cell surface receptor
Neoplasms
Internal medicine
medicine
Animals
Humans
Radiology, Nuclear Medicine and imaging
Radionuclide Imaging
Receptor
Radiological and Ultrasound Technology
business.industry
Chemistry
Optical Imaging
Binding potential
Phenotype
Nuclear Medicine
Radiopharmaceuticals
Molecular imaging
Nuclear medicine
business
Subjects
Details
- ISSN :
- 13616560 and 00319155
- Volume :
- 60
- Database :
- OpenAIRE
- Journal :
- Physics in Medicine and Biology
- Accession number :
- edsair.doi.dedup.....0125ac34e0f8ab9b52dad5ffc516b75e
- Full Text :
- https://doi.org/10.1088/0031-9155/60/14/r239