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首页> 外文期刊>Therapeutic delivery >Designed peptides as model self-assembling nanosystems: characterization and potential biomedical applications
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Designed peptides as model self-assembling nanosystems: characterization and potential biomedical applications

机译:设计作为模型自组装纳米系统的肽:表征和潜在的生物医学应用

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摘要

Synthesis of nanomaterials via 'molecular self-assembly' allows one to define the properties of the nanomaterial by rational design of the individual constituents. Use of peptides for self-assembly offers the ease of design and synthesis, and provides higher biofunctionality and biocompatibility to nanomaterials. Our work focused on the synthesis, characterization and potential biomedical applications of small self-assembled peptide-based nanosystems. We demonstrated that dipeptides containing the conformational restricting residue alpha,beta-dehydrophenylalanine, self-assembled into nanovesicular and nanotubular structures. The nanosystems could encapsulate and release anticancer drugs, showed enhanced stability to proteinase K degradation, a property crucial for them to have a high in vivo half-life, and exhibited no cytotoxicity towards cultured mammalian cells. The dipeptide nanostructures were easily taken up by cells and could evade uptake by reticuloendothelial systems when injected into healthy laboratory animals. Thus, small self-assembling peptides may offer novel scaffolds for the future design of nanostructures with potential applications in the field of drug delivery.
机译:通过“分子自组装”合成纳米材料使人们可以通过合理设计各个成分来定义纳米材料的特性。使用肽进行自组装可简化设计和合成,并提供更高的生物功能性和与纳米材料的生物相容性。我们的工作集中于小型自组装基于肽的纳米系统的合成,表征和潜在的生物医学应用。我们证明二肽包含构象限制残基α,β-脱氢苯丙氨酸,自组装成纳米囊泡和纳米管结构。纳米系统可以封装和释放抗癌药物,对蛋白酶K降解显示出增强的稳定性,这对它们具有高的体内半衰期至关重要,并且对培养的哺乳动物细胞没有细胞毒性。当将二肽纳米结构注入健康的实验动物时,它们很容易被细胞吸收,并可以逃避网状内皮系统的吸收。因此,小的自组装肽可以为纳米结构的未来设计提供新颖的支架,在药物递送领域具有潜在的应用。

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