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纳米颗粒与凝血系统。第一部分:纳米技术的益处。

Nanoparticles and the blood coagulation system. Part I: benefits of nanotechnology.

机构信息

Nanotechnology Characterization Laboratory, Advanced Technology Program, SAIC-Frederick Inc., NCI-Frederick, 1050 Boyles Street, Building 469, Frederick, MD 21702, USA.

出版信息

Nanomedicine (Lond). 2013 May;8(5):773-84. doi: 10.2217/nnm.13.48.

Abstract

Nanotechnology is proven to provide certain benefits in drug delivery by improving solubility, increasing uptake to target sites and changing pharmacokinetics profiles of traditional drugs. Since properties of many materials change tremendously at the nanoscale levels, nanotechnology is also being explored in various industrial applications. As such, nanoparticles are rapidly entering various areas of industry, biology and medicine. The benefits of using nanotechnology for industrial and biomedical applications are often tempered by concerns about the safety of these new materials. One such area of concern includes their effect on the immune system. While nanoparticle interactions with various constituents of the immune system have been reviewed before, little attention was given to nanoparticle effects on the blood coagulation system. Nanoparticle interface with the blood coagulation system may lead to either benefits to the host or adverse reactions. This article reviews recent advances in our understanding of nanoparticle interactions with plasma coagulation factors, platelets, endothelial cells and leukocytes. Part I is focused on desirable interactions between nanoparticles and the coagulation system, and discusses benefits of using nanotechnology to intervene in coagulation disorders. Undesirable interactions posing safety concerns are covered in part II, which will be published in the June issue of Nanomedicine.

摘要

纳米技术被证明通过提高溶解度、增加目标部位的摄取量和改变传统药物的药代动力学特性,在药物传递方面提供了某些益处。由于许多材料的性质在纳米尺度上发生了巨大变化,纳米技术也在各种工业应用中得到了探索。因此,纳米颗粒正在迅速进入各个工业、生物和医学领域。纳米技术在工业和生物医学应用中的好处往往受到这些新材料安全性的关注。其中一个令人关注的领域包括它们对免疫系统的影响。虽然纳米颗粒与免疫系统的各种成分的相互作用以前已经被综述过,但很少关注纳米颗粒对血液凝固系统的影响。纳米颗粒与血液凝固系统的相互作用可能导致对宿主有益或产生不良反应。本文综述了我们对纳米颗粒与血浆凝血因子、血小板、内皮细胞和白细胞相互作用的理解的最新进展。第一部分重点介绍了纳米颗粒与凝血系统之间的理想相互作用,并讨论了利用纳米技术干预凝血障碍的益处。第二部分介绍了存在安全隐患的不理想相互作用,将在 6 月的《纳米医学》杂志上发表。

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