Fatouros Dimitrios G, Lamprou Dimitrios A, Urquhart Andrew J, Yannopoulos Spyros N, Vizirianakis Ioannis S, Zhang Shuguang, Koutsopoulos Sotirios
School of Pharmacy, Aristotle University of Thessaloniki , GR-54124 Thessaloniki, Greece.
ACS Appl Mater Interfaces. 2014 Jun 11;6(11):8184-9. doi: 10.1021/am501673x. Epub 2014 May 21.
Amphiphilic self-assembling peptides are functional materials, which, depending on the amino acid sequence, the peptide length, and the physicochemical conditions, form a variety of nanostructures including nanovesicles, nanotubes, and nanovalves. We designed lipid-like peptides with an aspartic acid or lysine hydrophilic head and a hydrophobic tail composed of six alanines (i.e., ac-A6K-CONH2, KA6-CONH2, ac-A6D-COOH, and DA6-COOH). The resulting novel peptides have a length similar to biological lipids and form nanovesicles at physiological conditions. AFM microscopy and light scattering analyses of the positively charged lipid-like ac-A6K-CONH2, KA6-CONH2 peptide formulations showed individual nanovesicles. The negatively charged ac-A6D-COOH and DA6-COOH peptides self-assembled into nanovesicles that formed clusters that upon drying were organized into necklace-like formations of nanovesicles. Encapsulation of probe molecules and release studies through the peptide bilayer suggest that peptide nanovesicles may be good candidates for sustained release of pharmaceutically active hydrophilic and hydrophobic compounds. Lipid-like peptide nanovesicles represent a paradigm shifting system that may complement liposomes for the delivery of diagnostic and therapeutic agents.
两亲性自组装肽是功能性材料,根据氨基酸序列、肽长度和物理化学条件,可形成包括纳米囊泡、纳米管和纳米阀在内的多种纳米结构。我们设计了具有天冬氨酸或赖氨酸亲水头部以及由六个丙氨酸组成的疏水尾部的类脂质肽(即ac-A6K-CONH2、KA6-CONH2、ac-A6D-COOH和DA6-COOH)。所得的新型肽长度与生物脂质相似,并在生理条件下形成纳米囊泡。对带正电荷的类脂质ac-A6K-CONH2、KA6-CONH2肽制剂进行的原子力显微镜和光散射分析显示了单个纳米囊泡。带负电荷的ac-A6D-COOH和DA6-COOH肽自组装成纳米囊泡,这些纳米囊泡形成簇,干燥后组织成项链状的纳米囊泡结构。探针分子的包封以及通过肽双层进行的释放研究表明,肽纳米囊泡可能是持续释放具有药学活性的亲水和疏水化合物的良好候选物。类脂质肽纳米囊泡代表了一种范式转变系统,可能在诊断和治疗剂的递送方面补充脂质体。