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Published on: February 3, 2015
68Ga labeled Olmutinib: Design, synthesis, and evaluation of a novel PET EGFR probe
Hua Cheng1, Liyan Bai2, Xi Zhang3
1Department of Nuclear Medicine, Fudan University Shanghai Cancer Center, Shanghai, China; Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA 02129, USA.
Abstract:
Radiolabeled tyrosine kinase inhibitors (TKIs) offer a promising approach for molecular imaging of EGFR-positive cancers. Despite the development of various EGFR small-molecule probes, none of the 68Ga-labeled small-molecule probes based on the chelator DOTA have shown tumor-specific uptake. To address this challenge, we selected Olmutinib, a third-generation EGFR covalent inhibitor, as a PET imaging tracer for EGFR-positive tumors. We synthesized the precursor DOTA-Olmutinib through a five-step process and subsequently radiolabeled it with 68Ga to prepare 68Ga-DOTA-Olmutinib. 68Ga-DOTA-Olmutinib displayed moderate lipophilicity (log P = 0.85) and exhibited high stability in vitro and in vivo. Western blot analysis was used to detect the level of EGFR in multiple tumor cells. In cell uptake experiments, 68Ga-DOTA-Olmutinib exhibited enhanced uptake specifically in tumor cells with a higher level of EGFR supporting it as an EGFR-specific tracer. Additionally, PET/CT imaging with 68Ga-DOTA-Olmutinib showed significant tumor uptake at 60 min with 4 % ID/g post-injection, marking a breakthrough, though the uptake is not yet ideal. Overall, our results suggest that 68Ga-labeled Olmutinib holds promise as a potential PET tracer for detecting EGFR-positive cancers.
Insights
Researchers developed 68Ga-labeled Olmutinib, a novel PET imaging tracer. This tracer shows promise for detecting Epidermal Growth Factor Receptor (EGFR)-positive cancers by targeting tumors with high EGFR levels.
Area of Science:
- Nuclear medicine
- Oncology
- Radiochemistry
Background:
- Radiolabeled tyrosine kinase inhibitors (TKIs) are crucial for molecular imaging of EGFR-positive cancers.
- Existing 68Ga-labeled small-molecule probes using DOTA show limited tumor-specific uptake.
Purpose of the Study:
- To develop a novel PET imaging tracer for EGFR-positive tumors using Olmutinib, a third-generation EGFR covalent inhibitor.
- To evaluate the efficacy of 68Ga-DOTA-Olmutinib as a PET tracer for detecting EGFR-positive cancers.
Main Methods:
- Synthesis of the DOTA-Olmutinib precursor via a five-step process.
- Radiolabeling with 68Ga to produce 68Ga-DOTA-Olmutinib.
- In vitro and in vivo stability assessments, Western blot analysis for EGFR levels, cell uptake experiments, and PET/CT imaging.
Main Results:
- 68Ga-DOTA-Olmutinib demonstrated moderate lipophilicity (log P = 0.85) and high stability.
- Enhanced uptake was observed in tumor cells with high EGFR levels, confirming specificity.
- PET/CT imaging revealed significant tumor uptake (4% ID/g at 60 min post-injection).
Conclusions:
- 68Ga-labeled Olmutinib shows potential as a PET tracer for detecting EGFR-positive cancers.
- While promising, further optimization is needed to improve tumor uptake levels.
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