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首页> 外文期刊>International Journal of Molecular Sciences >Self/Co-Assembling Peptide, EAR8-II, as a Potential Carrier for a Hydrophobic Anticancer Drug Pirarubicin (THP)—Characterization and in-Vitro Delivery
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Self/Co-Assembling Peptide, EAR8-II, as a Potential Carrier for a Hydrophobic Anticancer Drug Pirarubicin (THP)—Characterization and in-Vitro Delivery

机译:自组装肽或共组装肽EAR8-II作为疏水性抗癌药物吡柔比星(THP)的潜在载体-表征和体外递送

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A short ionic-complementary peptide, EAR8-II, was employed to encapsulate the hydrophobic anticancer drug pirarubicin (THP). EAR8-II was designed to inherit advantages from two previously introduced peptides, AAP8 and EAK16-II, in their self/co-assembly. This peptide is short, simple, and inexpensive to synthesize, while possessing a low critical assembly concentration (CAC). The choice of alanine (A) residues in the peptide sequence provides moderate hydrophobic interactions, causing a minimal degree of aggregation, compared with other more hydrophobic residues. EAR8-II is an ionic-complementary peptide, similar to EAK16-II, can self/co-assemble with hydrophobic compounds such as THP, and forms a stable fibular nanostructure in aqueous solution. Physiochemical properties and cellular activities of the EAR8-II and THP complexes were evaluated and show dependency on the peptide-to-drug ratio. The complex at the peptide-to-drug mass ratio of 5:1 provides a stable solution, uniform nanostructure, and highly effective anticancer activity against various cancer cell lines. This work forms the basis for detailed studies on EAR8-II and THP formulations in vitro and in vivo, for future development of peptide-based delivery systems for hydrophobic anticancer drugs.
机译:短离子互补肽EAR8-II用于包裹疏水抗癌药吡柔比星(THP)。 EAR8-II被设计为在其自身/共装配中继承了先前引入的两种肽AAP8和EAK16-II的优势。该肽短,简单并且合成便宜,同时具有低的临界组装浓度(CAC)。与其他疏水性更高的残基相比,肽序列中丙氨酸(A)残基的选择可提供适度的疏水性相互作用,从而使聚集程度降至最低。 EAR8-II是一种离子互补肽,类似于EAK16-II,可以与疏水性化合物(例如THP)自组装/共组装,并在水溶液中形成稳定的腓状纳米结构。评估了EAR8-II和THP复合物的理化性质和细胞活性,并显示出它们对肽与药物比率的依赖性。肽与药物的质量比为5:1的复合物可提供稳定的溶液,均匀的纳米结构以及对各种癌细胞系的高效抗癌活性。这项工作为在体外和体内对EAR8-II和THP制剂进行详细研究奠定了基础,为将来开发基于肽的疏水性抗癌药物输送系统奠定了基础。

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