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聚乙二醇-聚己内酯碘纳米胶囊作为 X 射线成像造影剂。

Poly(ethylene glycol)-poly(ε-caprolactone) iodinated nanocapsules as contrast agents for X-ray imaging.

机构信息

Université Lyon 1, Laboratoire d'Automatique et de Génie dEs Procédés, Equipe de Génie Pharmacotechnique UMR 5007, CNRS, CPE, 43 bd du 11, 69100 Villeurbanne, France.

出版信息

Pharm Res. 2013 Aug;30(8):2023-35. doi: 10.1007/s11095-013-1047-y. Epub 2013 Apr 26.

Abstract

PURPOSE

Synthesis and formulation of iodinated PCL-mPEG nanocapsules as new original blood pool contrast agents for computed tomography.

METHODS

PCL-mPEG was synthesized and formulated following the emulsion-solvent diffusion process, in the form of iodinated nanocapsules. Physico-chemical characterization of such nano-materials was performed by DLS and transmission electron microscopy. A stability study of the nanocapsules suspension was followed-up to 3 month. Blood biocompatibility was performed. Finally, the nanocapsules suspension radiopacity was evaluated in vitro then in vivo in mice as micro-CT contrast agent.

RESULTS

In this study, the iodine concentration in nanocapsules suspension was about 70 mgI/mL. Besides, these nanocarriers appeared non-toxic, and stable in suspension. In vivo, i.v. administration of 10 μL/g of mouse body weight of theses nano-particles induced a vascular contrast enhancement of 168 HU and a half-life in blood of 4.2 +/- 0.5 h. Elimination route of these particles appears mainly performed by the liver, without sequestration in spleen and lymph nodes confirming their stealth properties.

CONCLUSIONS

This study proposes the first example of iodinated biodegradable polymeric blood pool contrast agent, able to induce an exploitable contrast enhancement. The main advantage of polymeric system compared to lipid ones, lies in their stability and handling, e.g. towards drying for storage.

摘要

目的

合成并制备碘代 PCL-mPEG 纳米胶囊作为新型原始血池 CT 造影剂。

方法

通过乳液溶剂扩散法,以碘代纳米胶囊的形式合成并制备 PCL-mPEG。通过动态光散射(DLS)和透射电子显微镜对纳米材料进行理化特性表征。对纳米胶囊混悬液的稳定性进行了 3 个月的跟踪研究。进行血液生物相容性研究。最后,对纳米胶囊混悬液的体外和体内放射密度进行评估,作为微 CT 造影剂。

结果

在本研究中,纳米胶囊混悬液中的碘浓度约为 70mgI/mL。此外,这些纳米载体表现出非毒性,并且在混悬液中稳定。在体内,以小鼠体重 10μL/g 的剂量静脉注射这些纳米颗粒,可引起 168HU 的血管对比增强,血液半衰期为 4.2±0.5h。这些颗粒的消除途径主要通过肝脏进行,未在脾脏和淋巴结中蓄积,证实其具有隐匿特性。

结论

本研究提出了首例可诱导可利用对比增强的碘代可生物降解聚合物血池造影剂。与脂质体系相比,聚合物体系的主要优势在于其稳定性和处理性,例如便于干燥储存。

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