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Dynamic Imaging of Chimeric Antigen Receptor T Cells with [18F]Tetrafluoroborate Positron Emission Tomography/Computed Tomography
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Immunoscintigraphy as potential tool in the clinical evaluation of HER2/neu targeted therapy
Eli C F Dijkers1, Elisabeth G E de Vries, Jos G W Kosterink
1Department of Hospital and Clinical Pharmacy, University Medical Center Groningen, PO Box 30.001, Groningen 9700 RB, The Netherlands.
Abstract:
Many new targeted anticancer drugs have been developed. In order for these drugs to be effective, the tumor target has to be present during treatment. Currently there are only a few biomarkers available to help the physician select the appropriate targeted drug for the patient and often tumor tissue is required for biomarker assays. Immunoscintigraphy might be able to improve diagnostic imaging, to guide antibody based therapy and to support early antibody development. Many different radiopharmaceuticals have been developed and used to visualize all kind of different targets especially in oncology. Intact radiolabeled antibodies generally show high tumor uptake but low tumor-to-blood ratios, particularly at early time points. Radiolabeled antibody fragments and proteins show widely differing values for tumor uptake and tumor-to-blood contrast. One of the promising targets for visualization might be HER2/neu. HER2/neu scans may prove useful for tumor staging, guiding of targeted therapy and measuring target occupancy in early drug development. Immunoscintigraphic clinical studies performed with intact antibodies indicate that HER2/neu imaging is feasible. Additional research will be performed to prove its value and make this technique applicable on a larger scale. The aim of this review is to describe the types of radiopharmaceuticals that are available, and the potential role of immunoscintigraphy in improving diagnostic imaging, guiding monoclonal antibody (mAb)-based therapy and supporting the development of mAb-based drugs using the HER2/neu target as an example.
Insights
Immunoscintigraphy shows promise for visualizing cancer targets like HER2/neu, potentially improving targeted therapy selection and drug development. This technique aids in diagnostic imaging and guides antibody-based treatments for better patient outcomes.
Area of Science:
- Oncology
- Radiopharmaceuticals
- Molecular Imaging
Background:
- Targeted anticancer drugs require the presence of specific tumor targets for efficacy.
- Current biomarker assays often necessitate tumor tissue and are limited in number.
- Immunoscintigraphy offers potential for improved diagnostic imaging and therapy guidance.
Purpose of the Study:
- To review available radiopharmaceuticals for cancer target visualization.
- To explore the role of immunoscintigraphy in enhancing diagnostic imaging.
- To assess immunoscintigraphy's utility in guiding monoclonal antibody (mAb)-based therapy and supporting drug development using HER2/neu as an example.
Main Methods:
- Review of radiopharmaceuticals and their application in immunoscintigraphy.
- Analysis of HER2/neu as a target for imaging and therapy guidance.
- Evaluation of clinical studies on HER2/neu immunoscintigraphy.
Main Results:
- Radiolabeled antibodies and fragments show variable tumor uptake and contrast.
- HER2/neu is a promising target for visualization, staging, and therapy guidance.
- Clinical studies suggest HER2/neu immunoscintigraphy is feasible.
Conclusions:
- Immunoscintigraphy can improve diagnostic imaging and guide targeted therapies.
- HER2/neu imaging holds potential for staging and assessing target occupancy in drug development.
- Further research is needed to establish immunoscintigraphy for broader clinical application.
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