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首页> 外文期刊>International Journal of Nanomedicine >Tumor-targeted liposomal drug delivery mediated by a diseleno bond-stabilized cyclic peptide
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Tumor-targeted liposomal drug delivery mediated by a diseleno bond-stabilized cyclic peptide

机译:由二硒键稳定的环肽介导的肿瘤靶向脂质体药物传递

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Abstract: Peptide ligands have played an important role in tumor-targeted drug delivery as targeting moieties. The in vivo fate of peptide-mediated drug delivery systems and the following antitumor effects may greatly depend on the stability of the peptide ligand. In the current study, a tumor-targeting cyclic peptide screened by phage display, Lyp-1 (a peptide that specifically binds to tumor and endothelial cells of tumor lymphatics in certain tumors), was structurally modified by replacement of the original intramolecular disulfide bond with a diseleno bond. The produced analog Syp-1 (seleno derivative of Lyp-1) maintained specific binding ability to the target protein p32 (Kd = 18.54 nM), which is similar to that of Lyp-1 (Kd = 10.59 nM), indicated by surface plasmon resonance assay. Compared with Lyp-1, Syp-1 showed significantly improved stability against serum. After the peptide attached onto the surface of fluorophore-encapsulating liposomes, the more efficient tumor uptake of liposomal fluorophore mediated by Syp-1 was observed. Furthermore, Syp-1 modified liposomal doxorubicin presented the most potent tumor growth inhibitory ability among all the therapeutic groups, with a low half maximal inhibitory concentration of 588 nM against MDA-MB-435 cells in vitro and a high tumor inhibition rate of 73.5% in vivo. These findings clearly indicated that Syp-1 was a stable and effective tumor targeting ligand and suggest that the sulfur-to-selenium replacement strategy may help stabilize the phage-displayed cyclic peptide containing disulfide-bond under physiological conditions and strongly support the validity of peptide-mediated drug targeting.
机译:摘要:肽配体在靶向肿瘤的药物递送中起着重要的作用。肽介导的药物递送系统的体内命运和以下抗肿瘤作用可能在很大程度上取决于肽配体的稳定性。在当前的研究中,通过噬菌体展示筛选的靶向肿瘤的环肽Lyp-1(与某些肿瘤中的淋巴管的肿瘤细胞和内皮细胞特异性结合的肽)通过替换原来的分子内二硫键被结构修饰。二硒键。产生的类似物Syp-1(Lyp-1的硒代衍生物)保持与靶蛋白p32(Kd = 18.54 nM)的特异性结合能力,这与Lyp-1(Kd = 10.59 nM)相似,由表面等离激元表示共振测定。与Lyp-1相比,Syp-1表现出明显的抗血清稳定性。肽附着到荧光团包裹的脂质体表面后,观察到更有效的肿瘤吸收由Syp-1介导的脂质体荧光团。此外,在所有治疗组中,Syp-1修饰的脂质体阿霉素表现出最有效的肿瘤生长抑制能力,体外对MDA-MB-435细胞的最大半数抑制浓度低至588 nM,对肿瘤的抑制率高达73.5%。体内。这些发现清楚地表明,Syp-1是一种稳定且有效的肿瘤靶向配体,并表明硫代硒替代策略可能有助于在生理条件下稳定噬菌体展示的含二硫键的环肽,并强烈支持该肽的有效性。介导的药物靶向。

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