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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
A Theranostic Small-Molecule Prodrug Conjugate for Neuroendocrine Prostate Cancer
Paulina Gonzalez1, Sashi Debnath1, Yu-An Chen2
1Department of Radiology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Abstract:
After androgen deprivation therapy, a significant number of prostate cancer cases progress with a therapy-resistant neuroendocrine phenotype (NEPC). This represents a challenge for diagnosis and treatment. Based on our previously reported design of theranostic small-molecule prodrug conjugates (T-SMPDCs), herein we report a T-SMPDC tailored for targeted positron emission tomography (PET) imaging and chemotherapy of NEPC. The T-SMPDC is built upon a triazine core (TZ) to present three functionalities: (1) a chelating moiety (DOTA: 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid) for PET imaging when labeled with 68Ga (t1/2 = 68 min) or other relevant radiometals; (2) an octreotide (Octr) that targets the somatostatin receptor 2 (SSTR2), which is overexpressed in the innervated tumor microenvironment (TME); and (3) fingolimod, FTY720-an antagonist of sphingosine kinase 1 that is an intracellular enzyme upregulated in NEPC. Polyethylene glycol (PEG) chains were incorporated via conventional conjugation methods or a click chemistry reaction forming a 1,4-disubstituted 1,2,3-triazole (Trz) linkage for the optimization of in vivo kinetics as necessary. The T-SMPDC, DOTA-PEG3-TZ(PEG4-Octr)-PEG2-Trz-PEG3-Val-Cit-pABOC-FTY720 (PEGn: PEG with n repeating ethyleneoxy units (n = 2, 3, or 4); Val: valine; Cit: citrulline; pABOC: p-amino-benzyloxycarbonyl), showed selective SSTR2 binding and mediated internalization of the molecule in SSTR2 high cells. Release of FTY720 was observed when the T-SMPDC was exposed to cathepsin B, and the released FTY720 exerted cytotoxicity in cells. In vivo PET imaging showed significantly higher accumulation (2.1 ± 0.3 %ID/g; p = 0.02) of [68Ga]Ga-DOTA-PEG3-TZ(PEG4-Octr)-PEG2-Trz-PEG3-Val-Cit-pABOC-FTY720 in SSTR2high prostate cancer xenografts than in the SSTR2low xenografts (1.5 ± 0.4 %ID/g) at 13 min post-injection (p.i.) with a rapid excretion through the kidneys. Taken together, these proof-of-concept results validate the design concept of the T-SMPDC, which may hold a great potential for targeted diagnosis and therapy of NEPC.
Insights
This study introduces a novel theranostic small-molecule prodrug conjugate (T-SMPDC) for diagnosing and treating therapy-resistant neuroendocrine prostate cancer (NEPC). The T-SMPDC enables targeted imaging and chemotherapy, showing promise for NEPC management.
Area of Science:
- Oncology
- Radiochemistry
- Medicinal Chemistry
Background:
- Prostate cancer can develop a therapy-resistant neuroendocrine phenotype (NEPC).
- Diagnosis and treatment of NEPC present significant challenges.
- Existing therapies lack targeted approaches for NEPC.
Purpose of the Study:
- To develop a theranostic small-molecule prodrug conjugate (T-SMPDC) for NEPC.
- To enable targeted positron emission tomography (PET) imaging and chemotherapy of NEPC.
- To validate the T-SMPDC design for NEPC diagnosis and treatment.
Main Methods:
- Conjugation of DOTA, octreotide (Octr), and fingolimod (FTY720) onto a triazine core with PEG linkers.
- Synthesis of the T-SMPDC: DOTA-PEG3-TZ(PEG4-Octr)-PEG2-Trz-PEG3-Val-Cit-pABOC-FTY720.
- In vitro evaluation of SSTR2 binding, internalization, and FTY720 release/cytotoxicity.
- In vivo PET imaging of [68Ga]-labeled T-SMPDC in prostate cancer xenografts.
Main Results:
- The T-SMPDC demonstrated selective somatostatin receptor 2 (SSTR2) binding and internalization in SSTR2-high cells.
- Released FTY720 showed cytotoxicity, and cathepsin B mediated its release from the T-SMPDC.
- In vivo PET imaging revealed significantly higher accumulation of [68Ga]-T-SMPDC in SSTR2-high xenografts compared to SSTR2-low xenografts.
- Rapid renal excretion of the T-SMPDC was observed.
Conclusions:
- The T-SMPDC design is validated as a promising platform for NEPC.
- This theranostic approach offers potential for targeted diagnosis and therapy of NEPC.
- Further investigation is warranted to explore the clinical application of T-SMPDCs in NEPC.
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