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携带成纤维细胞激活蛋白导向单链片段/曲妥珠单抗的可激活双特异性脂质体可将包裹的货物同时递送到肿瘤细胞和肿瘤微环境的细胞核中。

Activatable bispecific liposomes bearing fibroblast activation protein directed single chain fragment/Trastuzumab deliver encapsulated cargo into the nuclei of tumor cells and the tumor microenvironment simultaneously.

机构信息

Institute of Diagnostic and Interventional Radiology, Experimental Radiology, Jena University Hospital, Am klinikum 1, 07747 Jena, Germany.

Department of Pharmaceutical Technology, Friedrich-Schiller-University Jena, Lessingstrasse 8, 07743 Jena, Germany.

出版信息

Acta Biomater. 2017 May;54:281-293. doi: 10.1016/j.actbio.2017.03.033. Epub 2017 Mar 24.

Abstract

UNLABELLED

Molecular targeting plays a significant role in cancer diagnosis and therapy. However, the heterogeneity of tumors is a limiting obstacle for molecular targeting. Consequently, clinically approved drug delivery systems such as liposomes still rely on passive targeting to tumors, which does not address tumor heterogeneity. In this work, we therefore designed and elucidated the potentials of activatable bispecific targeted liposomes for simultaneous detection of fibroblast activation protein (FAP) and the human epidermal growth factor receptor 2 (HER2). The bispecific liposomes were encapsulated with fluorescence-quenched concentrations of the near-infrared fluorescent dye, DY-676-COOH, making them detectable solely post processing within target cells. The liposomes were endowed with a combination of single chain antibody fragments specific for FAP and HER2 respectively, or with the FAP single chain antibody fragment in combination with Trastuzumab, which is specific for HER2. The Trastuzumab based bispecific formulation, termed Bi-FAP/Tras-IL revealed delivery of the encapsulated dye into the nuclei of HER2 expressing cancer cells and caused cell death at significantly higher rates than the free Trastuzumab. Furthermore, fluorescence imaging and live microscopy of tumor models in mice substantiated the delivery of the encapsulated cargo into the nuclei of target tumor cells and tumor stromal fibroblasts. Hence, they convey potentials to address tumor plasticity, to improve targeted cancer therapy and reduce Trastuzumab resistance in the future.

STATEMENT OF SIGNIFICANCE

This work demonstrates the design of activatable bispecific liposomes aimed to target HER2, a poor prognosis tumor marker in many tumor types, and fibroblast activation protein (FAP), a universal tumor marker overexpressed on tumor fibroblasts and pericytes of almost all solid tumors. Encapsulating liposomes with a quenched concentration of a NIRF dye which only fluoresced after cellular degradation and activation enabled reliable visualization of the destination of the cargo in cells and animal studies. Conjugating single chain antibody fragments directed to FAP, together with Trastuzumab, a humanized monoclonal antibody for HER2 resulted in the activatable bispecific liposomes. In animal models of xenografted human breast tumors, the remarkable ability of the bispecific probes to simultaneously deliver the encapsulated dye into the nuclei of target tumor cells and tumor fibroblasts could be demonstrated. Hence, the bispecific probes represent model tools with high significance to address tumor heterogeneity and manage Trastuzumab resistance in the future.

摘要

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分子靶向在癌症诊断和治疗中起着重要作用。然而,肿瘤的异质性是分子靶向的一个限制因素。因此,临床批准的药物递送系统,如脂质体,仍然依赖于对肿瘤的被动靶向,而这并不能解决肿瘤的异质性。在这项工作中,我们因此设计并阐明了激活双特异性靶向脂质体同时检测成纤维细胞激活蛋白(FAP)和人表皮生长因子受体 2(HER2)的潜力。双特异性脂质体包封了近红外荧光染料 DY-676-COOH 的荧光猝灭浓度,使得它们只能在靶细胞内进行后处理时检测到。脂质体被赋予了分别针对 FAP 和 HER2 的单链抗体片段的组合,或与针对 HER2 的曲妥珠单抗(Trastuzumab)组合的 FAP 单链抗体片段。基于曲妥珠单抗的双特异性制剂,称为 Bi-FAP/Tras-IL,显示将包封的染料递送到表达 HER2 的癌细胞的核内,并以比游离曲妥珠单抗更高的速率引起细胞死亡。此外,对小鼠肿瘤模型的荧光成像和实时显微镜证实了包裹货物递送到靶肿瘤细胞和肿瘤基质成纤维细胞的核内。因此,它们具有解决肿瘤可塑性、改善靶向癌症治疗和减少曲妥珠单抗耐药性的潜力。

意义声明

这项工作展示了激活双特异性脂质体的设计,旨在靶向 HER2,这是许多肿瘤类型中预后不良的肿瘤标志物,以及成纤维细胞激活蛋白(FAP),这是几乎所有实体肿瘤中肿瘤成纤维细胞和周细胞过度表达的普遍肿瘤标志物。用近红外荧光染料 DY-676-COOH 的猝灭浓度包封脂质体,只有在细胞降解和激活后才会发出荧光,从而能够可靠地观察货物在细胞和动物研究中的归宿。将针对 FAP 的单链抗体片段与曲妥珠单抗(一种针对 HER2 的人源化单克隆抗体)偶联,得到激活的双特异性脂质体。在异种移植人乳腺癌肿瘤的动物模型中,可以证明双特异性探针同时将包裹的染料递送到靶肿瘤细胞和肿瘤成纤维细胞的核内的显著能力。因此,这些双特异性探针代表了具有重要意义的模型工具,可以解决肿瘤异质性并在未来管理曲妥珠单抗耐药性。

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