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Tissue biodistribution and blood clearance rates of intravenously administered carbon nanotube radiotracers

机译:静脉内施用碳纳米管放射性示踪剂的组织生物分布和血液清除率

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摘要

Carbon nanotubes (CNT) are intensively being developed for biomedical applications including drug and gene delivery. Although all possible clinical applications will require compatibility of CNT with the biological milieu, their in vivo capabilities and limitations have not yet been explored. In this work, water-soluble, single-walled CNT (SWNT) have been functionalized with the chelating molecule diethylentriaminepentaacetic (DTPA) and labeled with indium (111In) for imaging purposes. Intravenous (i.v.) administration of these functionalized SWNT (f-SWNT) followed by radioactivity tracing using gamma scintigraphy indicated that f-SWNT are not retained in any of the reticuloendothelial system organs (liver or spleen) and are rapidly cleared from systemic blood circulation through the renal excretion route. The observed rapid blood clearance and half-life (3 h) of f-SWNT has major implications for all potential clinical uses of CNT. Moreover, urine excretion studies using both f-SWNT and functionalized multiwalled CNT followed by electron microscopy analysis of urine samples revealed that both types of nanotubes were excreted as intact nanotubes. This work describes the pharmacokinetic parameters of i.v. administered functionalized CNT relevant for various therapeutic and diagnostic applications.
机译:碳纳米管(CNT)正在大量开发用于生物医学应用,包括药物和基因传递。尽管所有可能的临床应用都将要求CNT与生物学环境兼容,但尚未探讨其体内功能和局限性。在这项工作中,水溶性单壁碳纳米管(SWNT)已被螯合分子二亚乙基三胺五乙酸(DTPA)官能化,并用铟( 111 In)标记用于成像。静脉内(iv)施用这些功能化的SWNT(f-SWNT),然后使用伽玛闪烁显像术进行放射性示踪,表明f-SWNT没有保留在任何网状内皮系统器官(肝脏或脾脏)中,并通过全身血液循环迅速清除肾脏排泄途径。观察到的f-SWNT快速血液清除和半衰期(3 h)对CNT的所有潜在临床用途都具有重要意义。此外,使用f-SWNT和功能化的多壁CNT进行尿液排泄研究,然后对尿液样本进行电子显微镜分析,发现两种类型的纳米管都作为完整的纳米管被排泄。这项工作描述了静脉注射的药代动力学参数。施用与各种治疗和诊断应用有关的官能化CNT。

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