Department of Radiology, University of Wisconsin, Room 7137, 1111 Highland Avenue, Madison, WI, USA.
Mol Imaging Biol. 2013 Oct;15(5):507-20. doi: 10.1007/s11307-013-0648-5.
With many desirable properties, nanoparticles hold tremendous potential for in vivo molecular imaging and improving the efficacy of small-molecule drugs. The pharmacokinetics (PK) and tissue distribution of nanoparticles largely define their in vivo performance and potential toxicity, which are fundamental issues that need to be elucidated. In this review article, we summarized how molecular imaging techniques (e.g., positron emission tomography, fluorescence imaging, etc.) can facilitate the investigation of PK profiles of nanoparticles using carbon nanotubes (CNTs) and quantum dots (QDs) as representative examples. Different imaging techniques can provide useful insights in monitoring the in vivo behavior and tissue distribution of these nanoparticles, and a number of strategies were utilized to optimize the PK profiles of CNTs and QDs. Based on the available literature reports, it can be concluded that chemical/physical properties of the nanoparticles (e.g., surface functionalization, hydrodynamic size, shape, surface charge, etc.), along with the administration routes/doses, can play critical roles in determining the PK and biodistribution pattern of nanoparticles. Robust chemistry for surface modification of nanoparticles is a prerequisite for successful future biomedical/clinical applications.
具有许多理想性质的纳米粒子在体内分子成像和提高小分子药物的疗效方面具有巨大的潜力。纳米粒子的药代动力学(PK)和组织分布在很大程度上决定了它们的体内性能和潜在毒性,这些都是需要阐明的基本问题。在这篇综述文章中,我们总结了分子成像技术(例如正电子发射断层扫描、荧光成像等)如何能够利用碳纳米管(CNT)和量子点(QD)作为代表性示例来促进纳米粒子 PK 谱的研究。不同的成像技术可以为监测这些纳米粒子的体内行为和组织分布提供有用的见解,并且已经利用了许多策略来优化 CNT 和 QD 的 PK 谱。根据现有的文献报道,可以得出结论,纳米粒子的化学/物理性质(例如表面功能化、水动力尺寸、形状、表面电荷等)以及给药途径/剂量在决定纳米粒子的 PK 和生物分布模式方面起着关键作用。用于纳米粒子表面修饰的稳健化学是未来生物医学/临床应用成功的前提。