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冻干法制备 VEGFR2 靶向超声微泡及其靶向性研究

[Preparation of VEGFR2 Targeted Ultrasound Microbubbles by Freeze-drying and Targeting Study ].

作者信息

Zhang Huan, Peng Yu-Lan, Wang Hong, Huang Jian-Bo, Yan Feng

机构信息

Department of Ultrasound, West China Hospital, Sichuan University, Chengdu 610041, China.

Clinical Ultrasound Imaging Drug Research Lab, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

Sichuan Da Xue Xue Bao Yi Xue Ban. 2018 Nov;49(6):955-959.

Abstract

OBJECTIVE

To prepare vascular endothelial growth factor receptor2 (VEGFR2) targeted ultrasound contrast agent (microbubbles, MBs) by freeze-dried method and to evaluate its contrast enhanced effect and targeting capability through experiments.

METHODS

Targeted MBs were prepared using the biotin-avidin linkage to conjugate rat anti-mouse VEGFR2 monoclonal antibody to the surface of biotinylated MBs. Morphology, size and distribution of MBs were assessed. The binding of streptavidin (FITC marker) and VEGFR2 monoclonal antibody (PE labeled rabbit IgG) to MBs was verified by immunofluorescence staining. targeting experiments were performed with human umbilical vein endothelial cells (HUVECs). The binding capacity of MBs to HUVECs were detected by three groups including untargeted MBs group (adding 1×10 untargeted MBs), antibody presaturation added VEGFR2 targeted MBs group (after being incubated with excess VEGFR2 antibody, 1×10 VEGFR2 targeted ultrasound MBs were added) and VEGFR2 targeted MBs group (adding 1×10 VEGFR2 targeted ultrasound MBs). Contrast enhanced effects of VEGFR2 targeted MBs were preliminarily examined using an ultrasound imaging system and a home-made extracorporeal circulating device.

RESULTS

The monoclonal antibody of streptomycin and rat anti-mouse VEGFR2 can be combined with the biotinized MBs to construct the targeted ultrasound MBs of VEGFR2 by immunofluorescence staining. Under the microscope, VEGFR2 targeted MBs were round, uniform in size and uniform in distribution, with a mean diameter of (1.31±0.93) μm. Microscopy showed a small number of MBs around HUVECs in non-targeted MBs group, almost no MBs around HUVECs of antibody presaturation+VEGFR2 targeted ultrasound MBs group, and many MBs around HUVECs of VEGFR2 targeted ultrasound MBs group. The binding capacity was significantly higher than that of untargeted MBs. The self-made MBs developed well and no significant attenuation was observed as time extension in the mode of enhanced ultrasonography.

CONCLUSIONS

The freeze-drying method can be used to prepare VEGFR2 targeted ultrasound contrast agent, which has good targeting ability and contrast enhanced effects for ultrasound molecular imaging.

摘要

目的

采用冻干法制备血管内皮生长因子受体2(VEGFR2)靶向超声造影剂(微泡,MBs),并通过实验评估其造影增强效果和靶向能力。

方法

利用生物素-抗生物素蛋白连接将大鼠抗小鼠VEGFR2单克隆抗体偶联至生物素化微泡表面,制备靶向微泡。评估微泡的形态、大小和分布。通过免疫荧光染色验证链霉亲和素(异硫氰酸荧光素标记)和VEGFR2单克隆抗体(藻红蛋白标记兔IgG)与微泡的结合。用人脐静脉内皮细胞(HUVECs)进行靶向实验。通过三组实验检测微泡与HUVECs的结合能力,包括非靶向微泡组(加入1×10个非靶向微泡)、抗体预饱和+VEGFR2靶向超声微泡组(与过量VEGFR2抗体孵育后,加入1×10个VEGFR2靶向超声微泡)和VEGFR2靶向微泡组(加入1×10个VEGFR2靶向超声微泡)。使用超声成像系统和自制体外循环装置初步检测VEGFR2靶向微泡的造影增强效果。

结果

通过免疫荧光染色,链霉亲和素单克隆抗体和大鼠抗小鼠VEGFR2可与生物素化微泡结合,构建VEGFR2靶向超声微泡。在显微镜下,VEGFR2靶向微泡呈圆形,大小均匀,分布均匀,平均直径为(1.31±0.93)μm。显微镜观察显示,非靶向微泡组HUVECs周围有少量微泡,抗体预饱和+VEGFR2靶向超声微泡组HUVECs周围几乎无微泡,VEGFR2靶向超声微泡组HUVECs周围有许多微泡。其结合能力显著高于非靶向微泡。自制微泡显影良好,在超声造影增强模式下,未观察到随时间延长有明显衰减。

结论

冻干法可用于制备VEGFR2靶向超声造影剂,其对超声分子成像具有良好的靶向能力和造影增强效果。

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