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靶向纳米颗粒组装体用于动脉粥样硬化正电子发射断层成像评估及其临床转化的潜力。

Assessment of Targeted Nanoparticle Assemblies for Atherosclerosis Imaging with Positron Emission Tomography and Potential for Clinical Translation.

机构信息

Materials Department , University of California , Santa Barbara , California 93106 , United States.

出版信息

ACS Appl Mater Interfaces. 2019 May 1;11(17):15316-15321. doi: 10.1021/acsami.9b02750. Epub 2019 Apr 19.

Abstract

Nanoparticles have been assessed in preclinical models of atherosclerosis for detection of plaque complexity and treatment. However, their successful clinical translation has been hampered by less than satisfactory plaque detection and lack of a general strategy for assessing the translational potential of nanoparticles. Herein, nanoparticles based on comb-co-polymer assemblies were synthesized through a modular construction approach with precise control over the conjugation of multiple functional building blocks for in vivo evaluation. This high level of design control also allows physicochemical properties to be varied in a controllable fashion. Through conjugation of c-atrial natriuretic factor (CANF) peptide and radiolabeling with Cu, the Cu-CANF-comb nanoparticle was assessed for plaque imaging by targeting natriuretic peptide clearance receptor (NPRC) in a double-injury atherosclerosis model in rabbits. The prolonged blood circulation and enhanced binding capacity of Cu-CANF-comb nanoparticles provided sensitive and specific imaging of NPRC overexpressed in atherosclerotic lesions by positron emission tomography at intervals during the progression of the disease. Ex vivo tissue validation using autoradiography and immunostaining on human carotid endarterectomy specimens demonstrated specific binding of Cu-CANF-comb to human NPRC receptors. Taken together, this study not only shows the potential of NPRC-targeted Cu-CANF-comb nanoparticles for increased sensitivity to an epitope that increases during atherosclerosis plaque development but also provides a useful strategy for the general design and assessment of the translational potential of nanoparticles in cardiovascular imaging.

摘要

纳米颗粒已在动脉粥样硬化的临床前模型中进行了评估,用于检测斑块的复杂性和治疗。然而,由于斑块检测效果不理想,以及缺乏评估纳米颗粒转化潜力的通用策略,其成功的临床转化受到了阻碍。在此,通过模块化构建方法合成了基于梳状共聚物组装的纳米颗粒,该方法可以精确控制多种功能构建块的连接,用于体内评估。这种高水平的设计控制还可以以可控的方式改变物理化学性质。通过将 C-心房利钠肽(CANF)肽缀合并放射性标记 Cu,通过在兔的双重损伤动脉粥样硬化模型中靶向利钠肽清除受体(NPRC),评估了 Cu-CANF-梳状纳米颗粒用于斑块成像的能力。在疾病进展过程中的不同时间点,通过正电子发射断层扫描(PET),Cu-CANF-梳状纳米颗粒的延长血液循环时间和增强结合能力,提供了对动脉粥样硬化病变中过度表达的 NPRC 的敏感和特异性成像。使用放射性自显影和免疫染色对人颈动脉内膜切除术标本进行的离体组织验证表明,Cu-CANF-梳状与人类 NPRC 受体具有特异性结合。总之,这项研究不仅展示了针对 NPRC 的靶向 Cu-CANF-梳状纳米颗粒在增加对动脉粥样硬化斑块发展过程中增加的表位的敏感性方面的潜力,而且还为心血管成像中纳米颗粒转化潜力的一般设计和评估提供了一种有用的策略。

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