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Development of a 68Gallium-Labeled D-Peptide PET Tracer for Imaging Programmed Death-Ligand 1 Expression
Published on: February 3, 2023
Design, Synthesis, and Biological Evaluation of a Small-Molecule PET Agent for Imaging PD-L1 Expression
Liang Xu1,2, Lixia Zhang1,2, Beibei Liang1,2
1School of Basic Medical Sciences, Wenzhou Medical University, Wenzhou 325035, China.
Abstract:
Immunotherapy blocking programmed cell death protein 1/programmed death ligand 1 (PD-1/PD-L1) pathway has achieved great therapeutic effect in the clinic, but the overall response rate is not satisfactory. Early studies showed that response to treatment and overall survival could be positively related to PD-L1 expression in tumors. Therefore, accurate measurement of PD-L1 expression will help to screen cancer patients and improve the overall response rate. A small molecular positron emission tomography (PET) probe [18F]LP-F containing a biphenyl moiety was designed and synthesized for measurement of PD-L1 expression in tumors. The PET probe [18F]LP-F was obtained with a radiochemical yield of 12.72 ± 1.98%, a radiochemical purity of above 98% and molar activity of 18.8 GBq/μmol. [18F]LP-F had good stability in phosphate buffer saline (PBS) and mouse serum. In vitro assay indicated that [18F]LP-F showed moderate affinity to PD-L1. Micro-PET results showed that the tumor accumulation of [18F]LP-F in A375 tumor was inferior to that in A375-hPD-L1 tumor. All the results demonstrated that [18F]LP-F could specifically bind to PD-L1 and had a potential application in non-invasive evaluation of PD-L1 expression in tumors.
Insights
A new positron emission tomography (PET) probe, [18F]LP-F, was developed to measure programmed death-ligand 1 (PD-L1) expression in tumors. This probe shows potential for non-invasively evaluating PD-L1 levels to improve cancer immunotherapy response rates.
Area of Science:
- Radiochemistry
- Molecular Imaging
- Oncology
Background:
- Immunotherapy targeting the programmed cell death protein 1/programmed death-ligand 1 (PD-1/PD-L1) pathway offers therapeutic benefits but has suboptimal response rates.
- PD-L1 expression in tumors correlates with treatment response and survival, necessitating accurate measurement for patient selection.
- Non-invasive methods for assessing PD-L1 expression are crucial for optimizing cancer immunotherapy.
Purpose of the Study:
- To design and synthesize a novel small molecular positron emission tomography (PET) probe, [18F]LP-F, for quantifying PD-L1 expression in tumors.
- To evaluate the radiochemical properties, stability, and binding affinity of the [18F]LP-F probe.
- To assess the in vivo specificity and tumor uptake of [18F]LP-F using micro-PET imaging.
Main Methods:
- Synthesis and radiolabeling of the [18F]LP-F PET probe.
- Assessment of radiochemical yield, purity, molar activity, and stability in vitro.
- In vitro binding assays to determine affinity for PD-L1.
- In vivo micro-PET imaging in tumor-bearing mouse models to evaluate biodistribution and tumor accumulation.
Main Results:
- The [18F]LP-F probe was successfully synthesized with a radiochemical yield of 12.72 ± 1.98%, high purity (>98%), and good molar activity (18.8 GBq/μmol).
- [18F]LP-F demonstrated good stability in PBS and mouse serum, with moderate in vitro affinity for PD-L1.
- Micro-PET imaging revealed significantly higher tumor accumulation of [18F]LP-F in A375-hPD-L1 tumors compared to A375 tumors, indicating specific binding to PD-L1.
Conclusions:
- The novel PET probe [18F]LP-F can be effectively synthesized and exhibits favorable characteristics for PET imaging.
- [18F]LP-F demonstrates specific binding to PD-L1, as evidenced by differential tumor uptake in vivo.
- This probe holds potential for non-invasive assessment of PD-L1 expression, aiding in patient selection for PD-1/PD-L1 targeted immunotherapies.
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