Molecular Imaging with Reporter Genes: Has Its Promise Been Delivered?
Where this comes from
- Record sourced from PubMed, PMID 31792128.
- Also identified by DOI 10.2967/jnumed.118.220004 and PMC identifier 12079160.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
The first reporter systems were developed in the early 1980s and were based on measuring the activity of an enzyme-as a surrogate measure of promoter-driven transcriptional activity-which is now known as a reporter gene system. The initial objective and application of reporter techniques was to analyze the activity of a specific promoter (namely, the expression of a gene that is under the regulation of the specific promoter that is linked to the reporter gene). This system allows visualization of specific promoter activity with great sensitivity. In general, there are 2 classes of reporter systems: constitutively expressed (always-on) reporter constructs used for cell tracking, and inducible reporter systems sensitive to endogenous signaling molecules and transcription factors that characterize specific tissues, tumors, or signaling pathways.This review traces the development of different reporter systems, using <i>fluorescent</i> and <i>bioluminescent</i> proteins as well as <i>radionuclide-based</i> reporter systems. The development and application of <i>radionuclide-based</i> reporter systems is the focus of this review. The question at the end of the review is whether the "promise" of reporter gene imaging has been realized. What is required for moving forward with <i>radionuclide-based</i> reporter systems, and what is required for successful translation to clinical applications?
Medical subject headings
- Genes, Reporter
- Molecular Imaging