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Targeting the Tumor Microenvironment with Fluorescence-Activatable Bispecific Endoglin/Fibroblast Activation Protein Targeting Liposomes

机译:靶向荧光激活双特异性内皮糖蛋白/成纤维细胞活化蛋白靶向脂质体的肿瘤微环境。

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摘要

Liposomes are biocompatible nanocarriers with promising features for targeted delivery of contrast agents and drugs into the tumor microenvironment, for imaging and therapy purposes. Liposome-based simultaneous targeting of tumor associated fibroblast and the vasculature is promising, but the heterogeneity of tumors entails a thorough validation of suitable markers for targeted delivery. Thus, we elucidated the potential of bispecific liposomes targeting the fibroblast activation protein (FAP) on tumor stromal fibroblasts, together with endoglin which is overexpressed on tumor neovascular cells and some neoplastic cells. Fluorescence-quenched liposomes were prepared by hydrating a lipid film with a high concentration of the self-quenching near-infrared fluorescent dye, DY-676-COOH, to enable fluorescence detection exclusively upon liposomal degradation and subsequent activation. A non-quenched green fluorescent phospholipid was embedded in the liposomal surface to fluorescence-track intact liposomes. FAP- and murine endoglin-specific single chain antibody fragments were coupled to the liposomal surface, and the liposomal potentials validated in tumor cells and mice models. The bispecific liposomes revealed strong fluorescence quenching, activatability, and selectivity for target cells and delivered the encapsulated dye selectively into tumor vessels and tumor associated fibroblasts in xenografted mice models and enabled their fluorescence imaging. Furthermore, detection of swollen lymph nodes during intra-operative simulations was possible. Thus, the bispecific liposomes have potentials for targeted delivery into the tumor microenvironment and for image-guided surgery.
机译:脂质体是具有生物相容性的纳米载体,具有可用于将造影剂和药物靶向递送至肿瘤微环境中,用于成像和治疗目的的有前途的功能。基于脂质体的同时靶向肿瘤相关的成纤维细胞和脉管系统是有希望的,但是肿瘤的异质性需要对用于靶向递送的合适标记物进行彻底的验证。因此,我们阐明了靶向肿瘤基质成纤维细胞上的成纤维细胞活化蛋白(FAP)的双特异性脂质体的潜力,以及在肿瘤新血管细胞和某些肿瘤细胞上过表达的内皮糖蛋白。通过用高浓度的自猝灭近红外荧光染料DY-676-COOH水合脂质膜来制备荧光猝灭的脂质体,以仅在脂质体降解和随后的活化后才能进行荧光检测。将非猝灭的绿色荧光磷脂嵌入脂质体表面以荧光跟踪完整的脂质体。 FAP和鼠内皮糖蛋白特异性单链抗体片段偶联到脂质体表面,并在肿瘤细胞和小鼠模型中验证了脂质体的潜力。该双特异性脂质体显示出对靶细胞的强荧光猝灭,激活性和选择性,并且将包封的染料选择性地递送到异种移植小鼠模型中的肿瘤血管和肿瘤相关的成纤维细胞中,并使它们能够进行荧光成像。此外,可以在术中模拟过程中检测淋巴结肿大。因此,双特异性脂质体具有靶向递送至肿瘤微环境和图像引导手术的潜力。

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