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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
PACE4-based molecular targeting of prostate cancer using an engineered ⁶⁴Cu-radiolabeled peptide inhibitor
Frédéric Couture1, Christine Levesque1, Véronique Dumulon-Perreault2
1Institut de Pharmacologie de Sherbrooke, Department of Surgery/Urology Division, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Abstract:
The potential of PACE4 as a pharmacological target in prostate cancer has been demonstrated as this proprotein convertase is strongly overexpressed in human prostate cancer tissues and its inhibition, using molecular or pharmacological approaches, results in reduced cell proliferation and tumor progression in mouse tumor xenograft models. We developed a PACE4 high-affinity peptide inhibitor, namely, the multi-leucine (ML), and sought to determine whether this peptide could be exploited for the targeting of prostate cancer for diagnostic or molecular imaging purposes. We conjugated a bifunctional chelator 1,4,7-triazacyclononane-1,4,7- triacetic acid (NOTA) to the ML peptide for copper-64 ((64)Cu) labeling and positron emission tomography (PET)- based prostate cancer detection. Enzyme kinetic assays against recombinant PACE4 showed that the NOTA-modified ML peptide displays identical inhibitory properties compared to the unmodified peptide. In vivo biodistribution of the (64)Cu/NOTA-ML peptide evaluated in athymic nude mice bearing xenografts of two human prostate carcinoma cell lines showed a rapid and high uptake in PACE4-expressing LNCaP tumor at an early time point and in PACE4-rich organs. Co-injection of unlabeled peptide confirmed that tumor uptake was target-specific. PACE4-negative tumors displayed no tracer uptake 15 minutes after injection, while the kidneys, demonstrated high uptake due to rapid renal clearance of the peptide. The present study supports the feasibility of using a (64)Cu/NOTA-ML peptide for PACE4-targeted prostate cancer detection and PACE4 status determination by PET imaging but also provides evidence that ML inhibitor-based drugs would readily reach tumor sites under in vivo conditions for pharmacological intervention or targeted radiation therapy.
Insights
Researchers developed a novel peptide for imaging prostate cancer. This peptide, labeled with copper-64, targets PACE4, a protein overexpressed in prostate tumors, enabling detection via PET imaging.
Area of Science:
- Biochemistry
- Molecular Imaging
- Oncology
Background:
- Proprotein convertase subtilisin/kexin type 4 (PACE4) is overexpressed in prostate cancer.
- PACE4 inhibition reduces prostate cancer cell proliferation and tumor progression.
- Targeting PACE4 offers potential for prostate cancer diagnostics and therapeutics.
Purpose of the Study:
- To evaluate a multi-leucine (ML) peptide inhibitor of PACE4 for prostate cancer molecular imaging.
- To develop a Copper-64 labeled NOTA-ML peptide for Positron Emission Tomography (PET) imaging.
- To assess the in vivo targeting specificity and biodistribution of the (64)Cu/NOTA-ML peptide.
Main Methods:
- Conjugation of 1,4,7-triazacyclononane-1,4,7-triacetic acid (NOTA) to the ML peptide.
- Radiolabeling of the NOTA-ML peptide with Copper-64 ((64)Cu).
- In vivo biodistribution studies in athymic nude mice bearing human prostate carcinoma xenografts.
Main Results:
- The NOTA-modified ML peptide retained PACE4 inhibitory activity.
- (64)Cu/NOTA-ML peptide showed rapid and high uptake in PACE4-expressing tumors.
- Tumor uptake was confirmed as target-specific, with minimal uptake in PACE4-negative tumors.
Conclusions:
- The (64)Cu/NOTA-ML peptide is feasible for PACE4-targeted prostate cancer detection using PET imaging.
- This approach can determine PACE4 expression status in tumors.
- ML inhibitor-based drugs show potential for in vivo pharmacological intervention or targeted radiation therapy.
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