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Radiosynthesis, Quality Control, and Small Animal Positron Emission Tomography Imaging of 68Ga-Labelled Nano Molecules
Published on: October 4, 2024
Novel Biological and Molecular Characterization in Radiopharmaceutical Preclinical Design
Nicoletta Urbano1, Manuel Scimeca2,3,4, Anna Tolomeo5
1Nuclear Medicine Unit, Department of Oncohaematology, Policlinico "Tor Vergata", 00133 Rome, Italy.
Abstract:
In this study, the potential of a digital autoradiography system equipped with a super resolution screen has been evaluated to investigate the biodistribution of a 18F-PSMA inhibitor in a prostate cancer mouse model. Twelve double xenograft NOD/SCID mice (LNCAP and PC3 tumours) were divided into three groups according to post-injection time points of an 18F-PSMA inhibitor. Groups of 4 mice were used to evaluate the biodistribution of the radiopharmaceutical after 30-, 60- and 120-min post-injection. Data here reported demonstrated that the digital autoradiography system is suitable to analyse the biodistribution of an 18F-PSMA inhibitor in both whole small-animal bodies and in single organs. The exposure of both whole mouse bodies and organs on the super resolution screen surface allowed the radioactivity of the PSMA inhibitor distributed in the tissues to be detected and quantified. Data obtained by using a digital autoradiography system were in line with the values detected by the activity calibrator. In addition, the image obtained from the super resolution screen allowed a perfect overlap with the tumour images achieved under the optical microscope. In conclusion, biodistribution studies performed by the autoradiography system allow the microscopical modifications induced by therapeutic radiopharmaceuticals to be studied by comparing the molecular imaging and histopathological data at the sub-cellular level.
Insights
Digital autoradiography effectively analyzed 18F-PSMA inhibitor biodistribution in prostate cancer mouse models. This method accurately quantified radiopharmaceutical distribution in whole bodies and organs, correlating with traditional methods.
Area of Science:
- Nuclear Medicine
- Molecular Imaging
- Preclinical Research
Background:
- Prostate cancer diagnosis and treatment rely on understanding radiopharmaceutical biodistribution.
- Accurate biodistribution studies are crucial for developing targeted therapies like PSMA inhibitors.
Purpose of the Study:
- To evaluate a digital autoradiography system with a super-resolution screen for investigating 18F-PSMA inhibitor biodistribution.
- To assess the system's capability in analyzing radiopharmaceutical distribution in small animal models.
Main Methods:
- Utilized a digital autoradiography system with a super-resolution screen.
- Administered 18F-PSMA inhibitor to NOD/SCID mice with LNCAP and PC3 tumors.
- Collected biodistribution data at 30, 60, and 120 minutes post-injection.
Main Results:
- The digital autoradiography system accurately quantified 18F-PSMA inhibitor biodistribution in whole mice and organs.
- Results correlated well with activity calibrator measurements.
- Super-resolution screen images perfectly overlapped with optical microscopy tumor images.
Conclusions:
- Digital autoradiography is a suitable tool for small animal biodistribution studies of radiopharmaceuticals.
- This technique enables detailed molecular imaging and histopathological comparisons at the sub-cellular level.
- It aids in studying microscopic changes induced by therapeutic radiopharmaceuticals.
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