Department of Surgery, The Chinese University of Hong Kong, Shatin, Hong Kong, China.
Department of Biomedical Engineering, Shun Hing Institute of Advanced Engineering, The Chinese University of Hong Kong, Shatin, Hong Kong, China.
Small. 2018 Jan;14(4). doi: 10.1002/smll.201702793. Epub 2017 Dec 14.
Atherosclerosis, driven by chronic inflammation of the arteries and lipid accumulation on the blood vessel wall, underpins many cardiovascular diseases with high mortality rates globally, such as stroke and ischemic heart disease. Engineered bio-nanomaterials are now under active investigation as carriers of therapeutic and/or imaging agents to atherosclerotic plaques. This Review summarizes the latest bio-nanomaterial-based strategies for managing atherosclerosis published over the past five years, a period marked by a rapid surge in preclinical applications of bio-nanomaterials for imaging and/or treating atherosclerosis. To start, the biomarkers exploited by emerging bio-nanomaterials for targeting various components of atherosclerotic plaques are outlined. In addition, recent efforts to rationally design and screen for bio-nanomaterials with the optimal physicochemical properties for targeting plaques are presented. Moreover, the latest preclinical applications of bio-nanomaterials as carriers of imaging, therapeutic, or theranostic agents to atherosclerotic plaques are discussed. Finally, a mechanistic understanding of the interactions between bio-nanomaterials and the plaque ("athero-nano" interactions) is suggested, the opportunities and challenges in the clinical translation of bio-nanomaterials for managing atherosclerosis are discussed, and recent clinical trials for atherosclerotic nanomedicines are introduced.
动脉粥样硬化是由动脉的慢性炎症和血管壁上脂质的积累引起的,它是全球许多具有高死亡率的心血管疾病的基础,如中风和缺血性心脏病。工程生物纳米材料目前正被积极研究作为治疗和/或成像剂在动脉粥样硬化斑块中的载体。这篇综述总结了过去五年中发表的基于生物纳米材料的最新动脉粥样硬化管理策略,这一时期的特点是生物纳米材料在动脉粥样硬化的成像和/或治疗的临床前应用迅速增加。首先,概述了新兴生物纳米材料用于靶向动脉粥样硬化斑块各种成分所利用的生物标志物。此外,还介绍了最近为合理设计和筛选针对斑块的具有最佳物理化学性质的生物纳米材料所做的努力。此外,还讨论了生物纳米材料作为成像、治疗或治疗性制剂在动脉粥样硬化斑块中的载体的最新临床前应用。最后,提出了对生物纳米材料与斑块之间相互作用的机制理解(“动脉粥样硬化纳米相互作用”),讨论了生物纳米材料在管理动脉粥样硬化的临床转化中的机遇和挑战,并介绍了最近的动脉粥样硬化纳米药物的临床试验。