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Radionuclide reporter gene imaging for cardiac gene therapy
Masayuki Inubushi1, Nagara Tamaki
1Department of Molecular Imaging, Hokkaido University Graduate School of Medicine, Kita 15 Nishi 7 Kita-ku, Sapporo 060-8638, Japan. inubushi@med.hokudai.ac.jp
Introduction:
In the field of cardiac gene therapy, angiogenic gene therapy has been most extensively investigated. The first clinical trial of cardiac angiogenic gene therapy was reported in 1998, and at the peak, more than 20 clinical trial protocols were under evaluation. However, most trials have ceased owing to the lack of decisive proof of therapeutic effects and the potential risks of viral vectors. In order to further advance cardiac angiogenic gene therapy, remaining open issues need to be resolved: there needs to be improvement of gene transfer methods, regulation of gene expression, development of much safer vectors and optimisation of therapeutic genes. For these purposes, imaging of gene expression in living organisms is of great importance. In radionuclide reporter gene imaging, "reporter genes" transferred into cell nuclei encode for a protein that retains a complementary "reporter probe" of a positron or single-photon emitter; thus expression of the reporter genes can be imaged with positron emission tomography or single-photon emission computed tomography. Accordingly, in the setting of gene therapy, the location, magnitude and duration of the therapeutic gene co-expression with the reporter genes can be monitored non-invasively. In the near future, gene therapy may evolve into combination therapy with stem/progenitor cell transplantation, so-called cell-based gene therapy or gene-modified cell therapy.
Conclusion:
Radionuclide reporter gene imaging is now expected to contribute in providing evidence on the usefulness of this novel therapeutic approach, as well as in investigating the molecular mechanisms underlying neovascularisation and safety issues relevant to further progress in conventional gene therapy.
Insights
Radionuclide reporter gene imaging offers a non-invasive method to monitor angiogenic gene therapy, addressing challenges in gene transfer and expression for improved cardiac treatments. This technique is crucial for advancing cell-based gene therapies.
Area of Science:
- Cardiovascular Research
- Molecular Imaging
- Gene Therapy
Background:
- Angiogenic gene therapy for cardiac conditions has faced challenges due to lack of efficacy and safety concerns with viral vectors.
- Advancements require improved gene transfer, expression regulation, safer vectors, and optimized therapeutic genes.
- Non-invasive imaging of gene expression is critical for addressing these challenges.
Purpose of the Study:
- To highlight the importance of imaging gene expression in advancing cardiac angiogenic gene therapy.
- To introduce radionuclide reporter gene imaging as a tool for monitoring gene therapy efficacy and safety.
- To discuss the potential of gene therapy combined with cell transplantation.
Main Methods:
- Utilizes reporter genes that encode proteins binding to radionuclide probes.
- Enables imaging of gene expression using positron emission tomography (PET) or single-photon emission computed tomography (SPECT).
- Allows non-invasive monitoring of therapeutic gene co-expression alongside reporter genes.
Main Results:
- Radionuclide reporter gene imaging facilitates monitoring of gene therapy's location, magnitude, and duration.
- This imaging modality supports the evaluation of gene therapy's therapeutic effects and safety.
- It aids in understanding the molecular mechanisms of neovascularization.
Conclusions:
- Radionuclide reporter gene imaging is expected to validate novel therapeutic approaches in cardiac gene therapy.
- It will aid in investigating molecular mechanisms of neovascularization and safety concerns.
- This imaging technique is vital for the future progress of conventional gene therapy and cell-based gene therapy.
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