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用于超声造影剂的聚电解质多层包覆微泡的制备

Preparation of polyelectrolyte multilayer coated microbubbles for use as ultrasound contrast agent.

作者信息

Xing Zhan-Wen, Ke Heng-Te, Liu Shao-Qin, Dail Zhi-Fei, Wang Jin-Rui, Liu Ji-Bin

机构信息

Nanomedicine and Biosensor Laboratory, Bio-X Center, Harbin Institute of Technology, Harbin 150080.

出版信息

Chin Med Sci J. 2008 Jun;23(2):103-7. doi: 10.1016/s1001-9294(09)60020-1.

Abstract

OBJECTIVE

To prepare and characterize polyelectrolyte multilayer film coated microbubbles for use as ultrasound contrast agent (UCA) and evaluate its effects in ultrasonic imaging on normal rabbit's liver parenchyma.

METHODS

Perfluorocarbon (PFC)-containing microbubbles (ST68-PFC) were prepared by sonication based on surfactant (Span 60 and Tween 80). Subsequently, the resulting ST68-PFC microbubbles were coated using oppositely charged polyelectrolytes by microbubble-templated layer-by-layer self-assembly technique via electrostatic interaction. The enhancement effects in ultrasonic imaging on normal rabbit's liver parenchyma were assessed.

RESULTS

The obtained microbubbles exhibited a narrow size distribution. The polyelectrolytes were successfully assembled onto the surface of ST68-PFC microbubbles. In vivo experiment showed that polyelectrolyte multilayer film coated UCA effectively enhanced the imaging of rabbit's liver parenchyma.

CONCLUSIONS

The novel microbubbles UCA coated with polyelectrolyte multilayer, when enabled more function, has no obvious difference in enhancement effects compared with the pre-modified microbubbles. The polymers with chemically active groups (such as amino group and carboxyl group) can be used as the outermost layer for attachment of targeting ligands onto microbubbles, allowing selective targeting of the microbubbles to combine with desired sites.

摘要

目的

制备并表征用作超声造影剂(UCA)的聚电解质多层膜包被微泡,并评估其对正常兔肝脏实质的超声成像效果。

方法

基于表面活性剂(司盘60和吐温80)通过超声处理制备含全氟碳(PFC)的微泡(ST68-PFC)。随后,通过微泡模板逐层自组装技术利用静电相互作用,用带相反电荷的聚电解质包被所得的ST68-PFC微泡。评估其对正常兔肝脏实质的超声成像增强效果。

结果

所获得的微泡呈现窄尺寸分布。聚电解质成功组装到ST68-PFC微泡表面。体内实验表明聚电解质多层膜包被的UCA有效增强了兔肝脏实质的成像。

结论

新型聚电解质多层包被的微泡UCA在具备更多功能时,与预先修饰的微泡相比,增强效果无明显差异。具有化学活性基团(如氨基和羧基)的聚合物可作为微泡上连接靶向配体的最外层,使微泡能够选择性靶向并结合到所需位点。

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