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具有正磁共振成像对比的生物活性肝素涂层氧化铁纳米粒子家族,可用于特定的生物医学应用。

Family of Bioactive Heparin-Coated Iron Oxide Nanoparticles with Positive Contrast in Magnetic Resonance Imaging for Specific Biomedical Applications.

机构信息

UMR CNRS 7266 LIENSs, Approches Moléculaires Environnement-Santé environnement (AMES), University of La Rochelle , La Rochelle, France.

Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC) , Madrid, Spain.

出版信息

Biomacromolecules. 2017 Oct 9;18(10):3156-3167. doi: 10.1021/acs.biomac.7b00797. Epub 2017 Sep 22.

Abstract

Unfractionated heparin (UFH) and low-molecular-weight heparins (LMWH) are well-known for their anticoagulant properties. There is also currently a growing interest in using LMWH in targeted cancer therapy. In particular, several types inhibit heparanase, a key enzyme overexpressed in the tumor microenvironment that promotes angiogenesis progression and metastasis spreading. Here, we propose iron oxide nanoparticles (HEP-IONP) coated with different heparins of distinct anticoagulant/anti-heparanase activity ratios and suitable for positive contrast in magnetic resonance imaging. As a proof of concept, magnetic resonance angiography (MRA) was conducted in mice up to 3 h after intravenous administration. This new IONP-based positive contrast appropriate for clinic together with the long vascular circulating times can enable innovative theranostic applications if combined with the various bioactivities of the heparins. Indeed, we showed, using advanced in vitro tests, how HEP-IONP anticoagulant or anti-heparanase activities were maintained depending on the heparin species used for the coating. Overall, the study allowed presenting an IONP coated with a commercial LMWH (Lovenox) suggested as a theranostic translational probe for MRA diagnostic and treatment of thrombosis, and an antitumor IONP coated with a specific depolymerized heparin to be used in targeted therapy and diagnostic modalities.

摘要

未分级肝素 (UFH) 和低分子量肝素 (LMWH) 以其抗凝特性而闻名。目前,人们对在靶向癌症治疗中使用 LMWH 也越来越感兴趣。特别是,有几种类型的 LMWH 可以抑制肝素酶,肝素酶是肿瘤微环境中过度表达的关键酶,可促进血管生成进展和转移扩散。在这里,我们提出了不同抗凝/抗肝素酶活性比的不同肝素包覆的氧化铁纳米颗粒 (HEP-IONP),适用于磁共振成像中的正对比。作为概念验证,在静脉注射后长达 3 小时对小鼠进行了磁共振血管造影 (MRA)。这种新的基于 IONP 的正对比适用于临床,如果与肝素的各种生物活性结合,它可以为创新的治疗诊断应用提供可能。事实上,我们使用先进的体外测试表明,根据所用的肝素种类,HEP-IONP 的抗凝或抗肝素酶活性是如何保持的。总的来说,这项研究提出了一种用商业 LMWH(Lovenox)包覆的 IONP,建议作为 MRA 诊断和血栓治疗的治疗诊断探针,以及一种用特定解聚肝素包覆的抗肿瘤 IONP,用于靶向治疗和诊断模式。

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