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解决肽类药物的亲脂性问题:用N-寡聚乙二醇(N-OEG)链取代西仑吉肽的主链N-甲基基团。

Tackling lipophilicity of peptide drugs: replacement of the backbone N-methyl group of cilengitide by N-oligoethylene glycol (N-OEG) chains.

作者信息

Fernández-Llamazares Ana I, Adan Jaume, Mitjans Francesc, Spengler Jan, Albericio Fernando

机构信息

Institute for Research in Biomedicine (IRB) Barcelona, ‡CIBER-BBN, Networking Centre on Bioengineering, Biomaterials and Nanomedicine, and ∥Biomed Division, Leitat Technological Center Institution, Barcelona Science Park , Baldiri Reixac 10, 08028 Barcelona, Spain.

出版信息

Bioconjug Chem. 2014 Jan 15;25(1):11-7. doi: 10.1021/bc4003844. Epub 2013 Dec 17.

Abstract

Cilengitide is an RGD-peptide of sequence cyclo[RGDfNMeV] that was was developed as a highly active and selective ligand for the αvβ3 and αvβ5 integrin receptors. We describe the synthesis of three analogues of this peptide in which the N-Me group has been replaced by N-oligoethylene glycol (N-OEG) chains of increasing size: namely N-OEG2, N-OEG11, and N-OEG23, which are respectively composed of 2, 11, and 23 ethylene oxide monomer units. The different N-OEG cyclopeptides and the original peptide were compared with respect to lipophilicity and biological activity. The N-OEG2 analogue was straightforward to synthesize in solid phase using an Fmoc-N-OEG2 building block. The syntheses of the N-OEG11 and N-OEG23 cyclopeptides are hampered by the increased steric hindrance of the N-substituent, and could only be achieved by segment coupling, which takes place with epimerization and thus requires extensive product purification. All the N-OEG analogues were found to be more hydrophobic than the parent peptide, and their hydrophobicity was systematically enhanced upon increasing the length of the OEG chain. The N-OEG2 cyclopeptide displayed the same capacity as Cilengitide to inhibit the integrin-mediated adhesion of HUVEC endothelial, DAOY gliobastoma, and HT-29 colon cancer cells to their ligands vitronectin and fibrinogen. The N-OEG11 and N-OEG23 analogues also inhibited cell adhesion to these immobilized ligands, but their IC50 values dropped by 1 order of magnitude with respect to the parent peptide. These results indicate that replacement of the backbone N-Me group of Cilengitide by a short N-OEG chain provides a more lipophilic analogue with a similar biological activity. Upon increasing the size of the N-OEG chain, liophilicity is enhanced, but synthetic yields drop and the longer polymer chains may impede targeted binding.

摘要

西仑吉肽是一种序列为环[RGDfNMeV]的RGD肽,它被开发为αvβ3和αvβ5整合素受体的高活性和选择性配体。我们描述了该肽的三种类似物的合成,其中N-Me基团已被尺寸逐渐增加的N-寡聚乙二醇(N-OEG)链取代:即N-OEG2、N-OEG11和N-OEG23,它们分别由2、11和23个环氧乙烷单体单元组成。比较了不同的N-OEG环肽与原始肽在亲脂性和生物活性方面的差异。N-OEG2类似物使用Fmoc-N-OEG2构建块在固相合成中很容易实现。N-OEG11和N-OEG23环肽的合成受到N-取代基空间位阻增加的阻碍,只能通过片段偶联来实现,而片段偶联会发生差向异构化,因此需要大量的产物纯化。发现所有的N-OEG类似物都比母体肽更疏水,并且随着OEG链长度的增加,它们的疏水性系统地增强。N-OEG2环肽与西仑吉肽具有相同的抑制人脐静脉内皮细胞(HUVEC)、多形性胶质母细胞瘤(DAOY)和人结肠癌细胞(HT-29)整合素介导的与它们的配体玻连蛋白和纤维蛋白原黏附的能力。N-OEG11和N-OEG23类似物也抑制细胞与这些固定化配体的黏附,但它们的IC50值相对于母体肽下降了1个数量级。这些结果表明,用短的N-OEG链取代西仑吉肽主链上的N-Me基团可提供一种具有相似生物活性的更亲脂的类似物。随着N-OEG链尺寸的增加,亲脂性增强,但合成产率下降,并且较长的聚合物链可能会阻碍靶向结合。

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