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将F-FMISO重新用作正电子发射断层显像(PET)示踪剂,用于基于硝基还原酶的基因导向酶前药疗法的转化成像。

Repurposing F-FMISO as a PET tracer for translational imaging of nitroreductase-based gene directed enzyme prodrug therapy.

作者信息

Ruiz de Garibay Gorka, García de Jalón Elvira, Stigen Endre, Lund Kjetil B, Popa Mihaela, Davidson Ben, Safont Mireia Mayoral, Rygh Cecilie B, Espedal Heidi, Barrett Torill M, Haug Bengt Erik, McCormack Emmet

机构信息

Centre for Cancer Biomarkers CCBIO, Department of Clinical Science, University of Bergen, Jonas Lies vei 65, N-5021, Bergen, Norway.

University Hospital 12 de Octubre, Madrid, Spain; Lung Cancer Unit H12O-CNIO, Spain.

出版信息

Theranostics. 2021 Apr 7;11(12):6044-6057. doi: 10.7150/thno.55092. eCollection 2021.

Abstract

Nitroreductases (NTR) are a family of bacterial enzymes used in gene directed enzyme prodrug therapy (GDEPT) that selectively activate prodrugs containing aromatic nitro groups to exert cytotoxic effects following gene transduction in tumours. The clinical development of NTR-based GDEPT has, in part, been hampered by the lack of translational imaging modalities to assess gene transduction and drug cytotoxicity, non-invasively. This study presents translational preclinical PET imaging to validate and report NTR activity using the clinically approved radiotracer, F-FMISO, as substrate for the NTR enzyme. The efficacy with which F-FMISO could be used to report NfsB NTR activity was investigated using the MDA-MB-231 mammary carcinoma xenograft model. For validation, subcutaneous xenografts of cells constitutively expressing NTR were imaged using F-FMISO PET/CT and fluorescence imaging with CytoCy5S, a validated fluorescent NTR substrate. Further, examination of the non-invasive functionality of F-FMISO PET/CT in reporting NfsB NTR activity was assessed in metastatic orthotopic NfsB NTR expressing xenografts and metastasis confirmed by bioluminescence imaging. F-FMISO biodistribution was acquired by an automatic gamma counter measuring radiotracer retention to confirm results. To assess the functional imaging of NTR-based GDEPT with F-FMISO, PET/CT was performed to assess both gene transduction and cytotoxicity effects of prodrug therapy (CB1954) in subcutaneous models. F-FMISO retention was detected in NTR subcutaneous xenografts, displaying significantly higher PET contrast than NTR xenografts ( < 0.0001). Substantial F-FMISO retention was evident in metastases of orthotopic xenografts ( < 0.05). Accordingly, higher F-FMISO biodistribution was prevalent in NTR xenografts. F-FMISO NfsB NTR PET/CT imaging proved useful for monitoring NTR transduction and the cytotoxic effect of prodrug therapy. F-FMISO NfsB NTR PET/CT imaging offered significant contrast between NTR and NTR tumours and effective resolution of metastatic progression. Furthermore, F-FMISO NfsB NTR PET/CT imaging proved efficient in monitoring the two steps of GDEPT, NfsB NTR transduction and response to CB1954 prodrug therapy. These results support the repurposing of F-FMISO as a readily implementable PET imaging probe to be employed as companion diagnostic test for NTR-based GDEPT systems.

摘要

硝基还原酶(NTR)是一类细菌酶,用于基因导向酶前药疗法(GDEPT),该疗法可选择性激活含有芳香族硝基的前药,在肿瘤基因转导后发挥细胞毒性作用。基于NTR的GDEPT的临床开发在一定程度上受到缺乏用于非侵入性评估基因转导和药物细胞毒性的转化成像方法的阻碍。本研究展示了转化性临床前PET成像,以使用临床批准的放射性示踪剂F-FMISO作为NTR酶的底物来验证和报告NTR活性。使用MDA-MB-231乳腺癌异种移植模型研究了F-FMISO用于报告NfsB NTR活性的功效。为了进行验证,使用F-FMISO PET/CT和用CytoCy5S(一种经过验证的荧光NTR底物)进行荧光成像,对组成性表达NTR的细胞的皮下异种移植进行成像。此外,在转移性原位表达NfsB NTR的异种移植中评估了F-FMISO PET/CT在报告NfsB NTR活性方面的非侵入性功能,并通过生物发光成像确认转移情况。通过自动伽马计数器测量放射性示踪剂保留情况来获取F-FMISO的生物分布,以确认结果。为了评估基于NTR的GDEPT与F-FMISO的功能成像,进行PET/CT以评估皮下模型中前药疗法(CB1954)的基因转导和细胞毒性作用。在NTR皮下异种移植中检测到F-FMISO保留,其PET对比度显著高于NTR阴性异种移植(<0.0001)。在原位异种移植的转移灶中明显存在大量F-FMISO保留(<0.05)。因此,较高的F-FMISO生物分布在NTR异种移植中普遍存在。F-FMISO NfsB NTR PET/CT成像被证明可用于监测NTR转导和前药疗法的细胞毒性作用。F-FMISO NfsB NTR PET/CT成像在NTR阳性和NTR阴性肿瘤之间提供了显著的对比度,并有效分辨了转移进展情况。此外,F-FMISO NfsB NTR PET/CT成像被证明在监测GDEPT的两个步骤,即NfsB NTR转导和对CB1954前药疗法的反应方面是有效的。这些结果支持将F-FMISO重新用作一种易于实施的PET成像探针,作为基于NTR的GDEPT系统的伴随诊断测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2225/8058731/ef57ac63f8d0/thnov11p6044g001.jpg

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