Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Ahmedabad, Gujarat 380054, India.
ACS Appl Bio Mater. 2023 Feb 20;6(2):507-518. doi: 10.1021/acsabm.2c00803. Epub 2023 Jan 30.
Dipeptides are minimalistic peptide building blocks that form well ordered structures through molecular self-assembly. The driving forces involved are cooperative noncovalent interactions such as π-π stacking, hydrogen bonding, and ionic as well as hydrophobic interactions. One of the most intriguing self-assembled motifs that has been extensively explored as a low molecular weight hydrogel for drug delivery, tissue engineering, imaging and techtonics, etc. is Phe-Phe (FF). The backbone of the dipeptide is very crucial for extending secondary structures in self-assembly, and any subtle change in the backbone drastically affect the molecular recognitions. The squaramide (SQ) motif has the unique advantage of hydrogen bonding which can promote the self-assembly process. In this work we have integrated the SQ unit into the dipeptide FF backbone to achieve molecular self-assembly. The resulting carbamate protected backbone modified dipeptide (BocFSAF-OH, ) has exhibited molecular self-assembly with a fibrilar network. It formed a stable hydrogel (with CAC of 0.024 ± 0.0098 wt %) via the solvent switch method and was found to possess excellent enzymatic stability. The dipeptide and the resulting hydrogel were found to be cytocompatible. When integrated with a polysaccharide based biopolymer, e.g. sodium alginate, the resulting matrix exhibited strong hydrogel character. Therefore, the dipeptide hydrogel of may find its applications in a variety of fields including drug delivery and tissue engineering.
二肽是最小的肽结构单元,通过分子自组装形成有序结构。涉及的驱动力是协同的非共价相互作用,如π-π堆积、氢键、离子和疏水相互作用。作为药物输送、组织工程、成像和技术等的低分子量水凝胶得到广泛探索的最引人注目的自组装基序之一是苯丙氨酸-苯丙氨酸 (FF)。二肽的骨架对于在自组装中扩展二级结构非常重要,骨架的任何微小变化都会极大地影响分子识别。螺二酰胺 (SQ) 基序具有氢键的独特优势,可以促进自组装过程。在这项工作中,我们将 SQ 单元集成到二肽 FF 骨架中以实现分子自组装。所得的氨基甲酸酯保护的骨架修饰二肽 (BocFSAF-OH,) 表现出具有纤维状网络的分子自组装。它通过溶剂切换方法形成稳定的水凝胶(CAC 为 0.024 ± 0.0098 wt %),并被发现具有优异的酶稳定性。二肽和所得水凝胶被发现具有细胞相容性。当与多糖基生物聚合物(例如海藻酸钠)结合时,所得基质表现出强烈的水凝胶特性。因此,二肽水凝胶 可能会在药物输送和组织工程等各种领域得到应用。