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Chemokine Receptor CXCR4 Radioligand Targeted Therapy Using 177Lutetium-pentixather for Pulmonary Neuroendocrine
Melissa A Fath1, Dijie Liu2, Jordan T Ewald1
1Free Radical and Radiation Biology Program, Department of Radiation Oncology, Holden Comprehensive Cancer Center, University of Iowa, Iowa City, Iowa 52240.
Abstract:
Intermediate to high-grade lung neuroendocrine tumors (NETs; i.e., atypical carcinoid tumors) and neuroendocrine carcinomas (NECs) are currently difficult to cure. These tumors were found to express the CXCR4 G-protein coupled receptor that can be targeted with radioligands. PCR and flow cytometric analysis of lung NET and NEC cell lines using an anti-CXCR4 antibody demonstrated that all cell lines tested expressed CXCR4. PET/CT imaging with 68Galium-pentixafor in mouse xenografts of NETs and NECs verified tumor targeting that was blocked by a CXCR4 agonist. Clonogenic survival analysis demonstrated a more than additive enhancement of killing when 1 μM auranofin (a thioredoxin reductase inhibitor) was used as a radiosensitizer in combination with 177Lu-pentixather (10 μCi). DMS273 small cell lung cancer xenografts in female nude mice treated with 25 μCi/g 177Lu-pentixather induced inhibition of tumor growth and resulted in an increase in overall survival without causing unacceptable normal tissue toxicities. Immunohistochemical staining of 95 retrospective human samples (containing 90 small cell lung carcinomas) demonstrated 84% CXCR4 positivity. In a multivariable analysis of this cohort that included age, gender, stage, primary site, SSTR2 status, and CXCR4 status, Cox regression models determined that only distant metastasis at presentation (P < 0.01) and a CXCR4 H-score >30 (P = 0.04) were significantly associated with reduced survival. Prospective clinical testing of patient tumors identified CXCR4-positivity in 76% of 21 NECs, 67% of 15 lung NETs (including 8 of 10 atypical carcinoids), and 0% of 25 non-lung NETs (including 5 NETS G3s). These data support the hypothesis that CXCR4-targeted theranostics can be utilized effectively for select NETs and NECs.
Insights
Targeting CXCR4 with radioligands shows promise for treating difficult-to-cure lung neuroendocrine tumors (NETs) and neuroendocrine carcinomas (NECs). This approach, combined with radiosensitizers, improved tumor cell killing and survival in preclinical models.
Area of Science:
- Oncology
- Nuclear Medicine
- Molecular Imaging
Background:
- Intermediate to high-grade lung neuroendocrine tumors (NETs) and neuroendocrine carcinomas (NECs) have limited curative options.
- The CXCR4 receptor is expressed on these tumors and presents a potential therapeutic target.
- Targeting CXCR4 with radioligands offers a novel theranostic approach.
Purpose of the Study:
- To evaluate the efficacy of CXCR4-targeted radioligands for lung NETs and NECs.
- To assess the combination of CXCR4-targeted therapy with radiosensitizers.
- To investigate the prognostic significance of CXCR4 expression in lung NETs and NECs.
Main Methods:
- CXCR4 expression was analyzed in lung NET and NEC cell lines via PCR and flow cytometry.
- PET/CT imaging with 68Gallium-pentixafor was performed in mouse xenografts.
- Clonogenic survival assays and in vivo tumor growth studies were conducted using 177Lu-pentixather and auranofin.
Main Results:
- All tested lung NET and NEC cell lines expressed CXCR4.
- 68Gallium-pentixafor demonstrated successful tumor targeting in xenografts.
- Combination therapy with 177Lu-pentixather and auranofin showed enhanced tumor cell killing and improved survival in mouse models.
- CXCR4 positivity was observed in 84% of retrospective human samples and 76% of prospective NEC and 67% of lung NET samples.
Conclusions:
- CXCR4 is a viable target for theranostic applications in select lung NETs and NECs.
- CXCR4-targeted radioligand therapy, potentially combined with radiosensitizers, shows therapeutic potential.
- CXCR4 expression is a significant prognostic factor associated with survival in these tumors.
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