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使用肝素结合碳纳米胶囊治疗小鼠的急性血栓栓塞症。

Treatment of acute thromboembolism in mice using heparin-conjugated carbon nanocapsules.

机构信息

Institute of Clinical Medicine, National Cheng Kung University & Hospital, Tainan 70428, Taiwan, Republic of China.

出版信息

ACS Nano. 2012 Jul 24;6(7):6099-107. doi: 10.1021/nn301198r. Epub 2012 Jun 25.

Abstract

The unsurpassed properties in electrical conductivity, thermal conductivity, strength, and surface area-to-volume ratio allow for many potential applications of carbon nanomaterials in various fields. Recently, studies have characterized the potential of using carbon nanotubes (CNTs) as a biomaterial for biomedical applications and as a drug carrier via intravenous injection. However, most studies show that unmodified CNTs possess a high degree of toxicity and cause inflammation, mechanical obstruction from high organ retention, and other biocompatibility issues following in vivo delivery. In contrast, carbon nanocapsules (CNCs) have a lower aspect ratio compared with CNTs and have a higher dispersion rate. To investigate the possibility of using CNCs as an alternative to CNTs for drug delivery, heparin-conjugated CNCs (CNC-H) were studied in a mouse model of acute hindlimb thromboembolism. Our results showed that CNC-H not only displayed superior antithrombotic activity in vitro and in vivo but they also had the ability to extend the thrombus formation time far longer than an injection of heparin or CNCs alone. Therefore, the present study showed for the first time that functionalized CNCs can act as nanocarriers to deliver thrombolytic therapeutics.

摘要

在电导率、热导率、强度和表面积与体积比方面无与伦比的特性,使得碳纳米材料在各个领域具有许多潜在的应用。最近的研究已经描述了将碳纳米管(CNTs)用作生物医学应用的生物材料,以及通过静脉注射作为药物载体的潜力。然而,大多数研究表明,未经修饰的 CNTs 具有高度的毒性,并在体内输送后引起炎症、高器官滞留导致的机械阻塞和其他生物相容性问题。相比之下,碳纳米胶囊(CNCs)与 CNTs 相比具有更低的纵横比,并且具有更高的分散率。为了研究使用 CNCs 替代 CNTs 进行药物输送的可能性,研究了肝素修饰的 CNCs(CNC-H)在急性后肢血栓栓塞的小鼠模型中的可能性。我们的结果表明,CNC-H 不仅在体外和体内显示出优异的抗血栓活性,而且还能够将血栓形成时间延长得远远超过肝素或 CNCs 单独注射的时间。因此,本研究首次表明,功能化的 CNCs 可以作为纳米载体来输送溶栓治疗药物。

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