Effect of Injection Routes on the Biodistribution, Clearance, and Tumor Uptake of Carbon Dots

体内分布 体内 量子点 材料科学 纳米技术 纳米颗粒 荧光 纳米材料 正电子发射断层摄影术 生物医学工程 核医学 医学 物理 生物技术 量子力学 生物
作者
Xinglu Huang,Fan Zhang,Lei Zhu,Ki Young Choi,Ning Guo,Jinxia Guo,Kenneth N. Tackett,Parambath Anilkumar,Gang Liu,Qimeng Quan,Hak Soo Choi,Gang Niu,Ya-Ping Sun,Seulki Lee,Xiaohong Chen
出处
期刊:ACS Nano [American Chemical Society]
卷期号:7 (7): 5684-5693 被引量:371
标识
DOI:10.1021/nn401911k
摘要

The emergence of photoluminescent carbon-based nanomaterials has shown exciting potential in the development of benign nanoprobes. However, the in vivo kinetic behaviors of these particles that are necessary for clinical translation are poorly understood to date. In this study, fluorescent carbon dots (C-dots) were synthesized and the effect of three injection routes on their fate in vivo was explored by using both near-infrared fluorescence and positron emission tomography imaging techniques. We found that C-dots are efficiently and rapidly excreted from the body after all three injection routes. The clearance rate of C-dots is ranked as intravenous > intramuscular > subcutaneous. The particles had relatively low retention in the reticuloendothelial system and showed high tumor-to-background contrast. Furthermore, different injection routes also resulted in different blood clearance patterns and tumor uptakes of C-dots. These results satisfy the need for clinical translation and should promote efforts to further investigate the possibility of using carbon-based nanoprobes in a clinical setting. More broadly, we provide a testing blueprint for in vivo behavior of nanoplatforms under various injection routes, an important step forward toward safety and efficacy analysis of nanoparticles.
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