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体内放射性成像示踪缓激肽受体 B1,其在人类癌症中广泛过表达。

In vivo radioimaging of bradykinin receptor b1, a widely overexpressed molecule in human cancer.

机构信息

BC Cancer Agency, Vancouver, BC, Canada. Department of Radiology, University of British Columbia, Vancouver, BC, Canada.

BC Cancer Agency, Vancouver, BC, Canada.

出版信息

Cancer Res. 2015 Jan 15;75(2):387-93. doi: 10.1158/0008-5472.CAN-14-1603. Epub 2014 Dec 8.

Abstract

The bradykinin receptor B1R is overexpressed in many human cancers where it might be used as a general target for cancer imaging. In this study, we evaluated the feasibility of using radiolabeled kallidin derivatives to visualize B1R expression in a preclinical model of B1R-positive tumors. Three synthetic derivatives were evaluated in vitro and in vivo for receptor binding and their ability to visualize tumors by PET. Enalaprilat and phosphoramidon were used to evaluate the impact of peptidases on tumor visualization. While we found that radiolabeled peptides based on the native kallidin sequence were ineffective at visualizing B1R-positive tumors, peptidase inhibition with phosphoramidon greatly enhanced B1R visualization in vivo. Two stabilized derivatives incorporating unnatural amino acids ((68)Ga-SH01078 and (68)Ga-P03034) maintained receptor-binding affinities that were effective, allowing excellent tumor visualization, minimal accumulation in normal tissues, and rapid renal clearance. Tumor uptake was blocked in the presence of excess competitor, confirming that the specificity of tumor accumulation was receptor mediated. Our results offer a preclinical proof of concept for noninvasive B1R detection by PET imaging as a general tool to visualize many human cancers.

摘要

缓激肽受体 B1R 在许多人类癌症中过表达,因此它可能被用作癌症成像的一般靶点。在这项研究中,我们评估了放射性标记的激肽原衍生肽用于可视化 B1R 阳性肿瘤临床前模型中 B1R 表达的可行性。在体外和体内评估了三种合成衍生物的受体结合及其通过 PET 可视化肿瘤的能力。使用依那普利和磷酰胺酶抑制剂来评估肽酶对肿瘤可视化的影响。虽然我们发现基于天然激肽序列的放射性标记肽在可视化 B1R 阳性肿瘤方面无效,但用磷酰胺酶抑制剂抑制肽酶可大大增强体内 B1R 的可视化。两种包含非天然氨基酸的稳定衍生物((68)Ga-SH01078 和 (68)Ga-P03034)保持了有效的受体结合亲和力,允许进行出色的肿瘤可视化,正常组织中积累最小,并且肾脏快速清除。在存在过量竞争物的情况下,肿瘤摄取被阻断,这证实了肿瘤积累的特异性是受体介导的。我们的结果提供了通过 PET 成像进行非侵入性 B1R 检测的临床前概念验证,作为可视化许多人类癌症的一般工具。

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