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iRGD修饰的载阿霉素空间稳定脂质体的细胞毒性和抗肿瘤疗效

[Cellular toxicity and anti-tumor efficacy of iRGD modified doxorubixin loaded sterically stabilized liposomes].

作者信息

Zhao Bo, Fan Yu-Chen, Wang Xue-Qing, Dai Wen-Bing, Zhang Qiang, Wang Xing-Lin

机构信息

Department of Pharmaceutics, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.

出版信息

Yao Xue Xue Bao. 2013 Mar;48(3):417-22.

Abstract

iRGD-modified sterically stabilized liposomes loaded doxorubicin (iRGD-SSL-DOX) were prepared and their cellular toxicity and anti-tumor efficacy were evaluated, comparing to doxorubixin loaded sterically stabilized liposomes (SSL-DOX) and RGD modified doxorubixin loaded sterically stabilized liposomes (RGD-SSL-DOX). The iRGD peptide, with both tumor targeting and cell penetrating functions, was conjugated to DSPE-PEG-NHS and DSPE-PEG-iRGD was obtained. DSPE-PEG-RGD was gained in the same way. iRGD-SSL-DOX, RGD-SSL-DOX and SSL-DOX were prepared by ammonium sulfate gradient method. The size and zeta potential of the liposomes were characterized by dynamic laser light scattering. The cellular toxicity study was done on B16 melanoma cell line and the anti-tumor efficacy study was carried on B16 cell line bearing C57BL/6 mice. The results showed that the particle sizes of liposomes were all around 90-100 nm. DOX entrapment efficiency was above 95%. The formulations were with good preparation reproducibility. iRGD-SSL-DOX showed no significant difference in B16 cellular toxicity with SSL-DOX and RGD-SSL-DOX, but the anti-tumor efficacy on B16 melanoma bearing C57BL/6 mice was significantly better than that of SSL-DOX, similar as that of RGD-SSL-DOX. Therefore, iRGD modified liposomes loaded DOX would be a promising drug delivery system for tumor therapy.

摘要

制备了装载阿霉素的整合素靶向肽(iRGD)修饰的空间稳定脂质体(iRGD-SSL-DOX),并评估了其细胞毒性和抗肿瘤疗效,同时与装载阿霉素的空间稳定脂质体(SSL-DOX)以及RGD修饰的装载阿霉素的空间稳定脂质体(RGD-SSL-DOX)进行比较。具有肿瘤靶向和细胞穿透功能的iRGD肽与二硬脂酰磷脂酰乙醇胺-聚乙二醇-活性酯(DSPE-PEG-NHS)偶联,得到DSPE-PEG-iRGD。以相同方法获得DSPE-PEG-RGD。采用硫酸铵梯度法制备iRGD-SSL-DOX、RGD-SSL-DOX和SSL-DOX。通过动态激光散射对脂质体的粒径和zeta电位进行表征。在B16黑色素瘤细胞系上进行细胞毒性研究,在携带C57BL/6小鼠的B16细胞系上进行抗肿瘤疗效研究。结果表明,脂质体的粒径均在90-100nm左右。阿霉素包封率在95%以上。制剂具有良好的制备重现性。iRGD-SSL-DOX在B16细胞毒性方面与SSL-DOX和RGD-SSL-DOX无显著差异,但在携带C57BL/6小鼠的B16黑色素瘤上的抗肿瘤疗效明显优于SSL-DOX,与RGD-SSL-DOX相似。因此,iRGD修饰的装载阿霉素的脂质体将是一种有前景的肿瘤治疗药物递送系统。

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