West China Hospital Nanomedicine Laboratory, West China Hospital, Sichuan University, Chengdu, 610041, China.
Nanoscale. 2013 Jul 21;5(14):6413-21. doi: 10.1039/c3nr00225j. Epub 2013 Jun 6.
How to use bioactive peptide sequences as fundamental building blocks to make hydrogel materials which are stimuli-responsive? In this article, we provide a novel designed peptide comprising two antibacterial peptide sequences (KIGAKI)3-NH2 and a central tetrapeptide linker. Results show that balancing the forces of the electrostatic repulsion of the charged lysine residues against the hydrophobic collapse of the isoleucine and alanine residues and backbone β-sheet hydrogen bonding allows the structural transition and formation of individually dispersed nanofibers. Circular Dichroism (CD) and rheology analysis demonstrated that the designed peptide can undergo an abrupt structural transition from a random coil to a stable unimolecular β-hairpin conformation and subsequently form an elastic hydrogel when exposed to external stimuli such as pH, ionic strength and heat. The assembly kinetics of the obtained antibacterial sequence comprising peptide (ASCP) was studied by time-lapse Atomic Force Microscopy (AFM) and Thioflavin T (ThT) binding assay. In addition, the inherent antibacterial activity of the peptide hydrogel was confirmed by the antibacterial assay against Escherichia coli. This example described epitomizes the use of bioactive peptide sequences in the design of finite self-assembled structures with potential inherent activity. These hydrogel materials may find applications in drug delivery, tissue engineering and regenerative medicine.
如何将生物活性肽序列用作基本构建块来制备对刺激有响应的水凝胶材料?在本文中,我们提供了一种由两个抗菌肽序列(KIGAKI)3-NH2和一个中央四肽连接子组成的新型设计肽。结果表明,平衡带电荷赖氨酸残基的静电排斥力与异亮氨酸和丙氨酸残基的疏水性塌陷以及主链β-折叠氢键之间的相互作用力,可以使结构发生转变并形成单独分散的纳米纤维。圆二色性(CD)和流变分析表明,设计的肽可以经历从无规卷曲到稳定的单分子β-发夹构象的突然结构转变,然后在受到外部刺激(如 pH 值、离子强度和热)时形成弹性水凝胶。通过时间分辨原子力显微镜(AFM)和噻唑蓝(ThT)结合测定研究了所得抗菌序列包含肽(ASCP)的组装动力学。此外,通过对抗大肠埃希菌的抗菌试验证实了肽水凝胶的固有抗菌活性。这个例子概括了在设计具有潜在固有活性的有限自组装结构中使用生物活性肽序列的方法。这些水凝胶材料可能在药物输送、组织工程和再生医学中有应用。