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一种用于叶酸介导靶向脂质体的新型配体的合成与评价

Synthesis and evaluation of a novel ligand for folate-mediated targeting liposomes.

作者信息

Xiang Guangya, Wu Jun, Lu Yanhui, Liu Zhilan, Lee Robert J

机构信息

Pharmacy School, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei 430030, China.

出版信息

Int J Pharm. 2008 May 22;356(1-2):29-36. doi: 10.1016/j.ijpharm.2007.12.030. Epub 2007 Dec 28.

Abstract

Folate receptors (FRs) have been identified as cellular surface markers for cancer and leukemia. Liposomes containing lipophilic derivatives of folate have been shown to effectively target FR-expressing cells. Here, we report the synthesis of a novel lipophilic folate derivative, folate-polyethylene glycol-cholesterol hemisuccinate (F-PEG-CHEMS), and its evaluation as a targeting ligand for liposomal doxorubicin (L-DOX) in FR-expressing cells. Liposomes containing F-PEG-CHEMS, with a mean diameter of 120+/-20 nm, were synthesized by polycarbonate membrane extrusion and were shown to have excellent colloidal stability. The liposomes were taken up selectively by KB cells, which overexpress FR-alpha. Compared to folate-PEG-cholesterol (F-PEG-Chol), which contains a carbamate linkage, F-PEG-CHEMS better retained its FR-targeting activity during prolonged storage. In addition, F-PEG-CHEMS containing liposomes loaded with DOX (F-L-DOX) showed greater cytotoxicity (IC(50)=10.0muM) than non-targeted control L-DOX (IC(50)=57.5 microM) in KB cells. In ICR mice, both targeted and non-targeted liposomes exhibited long circulation properties, although F-L-DOX (t(1/2)=12.34 h) showed more rapid plasma clearance than L-DOX (t(1/2)=17.10h). These results suggest that F-PEG-CHEMS is effective as a novel ligand for the synthesis of FR-targeted liposomes.

摘要

叶酸受体(FRs)已被确定为癌症和白血病的细胞表面标志物。含有叶酸亲脂性衍生物的脂质体已被证明能有效靶向表达FR的细胞。在此,我们报告了一种新型亲脂性叶酸衍生物叶酸 - 聚乙二醇 - 胆固醇半琥珀酸酯(F - PEG - CHEMS)的合成及其作为表达FR细胞中脂质体阿霉素(L - DOX)靶向配体的评估。通过聚碳酸酯膜挤出法合成了平均直径为120±20 nm、含有F - PEG - CHEMS的脂质体,且显示出优异的胶体稳定性。这些脂质体被过表达FR - α的KB细胞选择性摄取。与含有氨基甲酸酯键的叶酸 - PEG - 胆固醇(F - PEG - Chol)相比,F - PEG - CHEMS在长时间储存期间能更好地保留其FR靶向活性。此外,负载阿霉素的含F - PEG - CHEMS脂质体(F - L - DOX)在KB细胞中比非靶向对照L - DOX(IC50 = 57.5 microM)表现出更大的细胞毒性(IC50 = 10.0μM)。在ICR小鼠中,靶向和非靶向脂质体均表现出长循环特性,尽管F - L - DOX(t1/2 = 12.34 h)比L - DOX(t1/2 = 17.10 h)显示出更快的血浆清除率。这些结果表明,F - PEG - CHEMS作为合成FR靶向脂质体的新型配体是有效的。

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