Feng Lei, Xu Liugen, Wen Junhao, Zhao Minghai, Ali Amjad, Ahmad Naushad, Lu Jianwei, Guo Li
School of Materials Sciences and Engineering, Jiangsu University, Zhenjiang 212013, China.
College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, China.
Biomimetics (Basel). 2025 Jun 4;10(6):368. doi: 10.3390/biomimetics10060368.
Developing safe and efficient cryoprotectants is critical for effective cryopreservation in biomedical applications. Inspired by natural antifreeze proteins (AFPs), a series of linear and star-shaped peptoids featuring isopropanol side chains to mimic the amphiphilic characteristics of threonine were prepared. The effects of chain length and molecular topology on antifreeze properties were systematically investigated. Both ice recrystallization inhibition (IRI) and ice crystal growth suppression improved with increasing chain length, and star-shaped peptoids exhibited superior performance. Notably, the star-shaped peptoid S-(A) demonstrated excellent antifreeze activity and low cytotoxicity, highlighting its promise as a novel, non-toxic alternative to conventional cryoprotectants like DMSO. These findings provide valuable insight into the structure-property relationship of peptoids for cryopreservation applications.
开发安全有效的冷冻保护剂对于生物医学应用中的有效冷冻保存至关重要。受天然抗冻蛋白(AFP)的启发,制备了一系列具有异丙醇侧链以模拟苏氨酸两亲特性的线性和星形类肽。系统研究了链长和分子拓扑结构对防冻性能的影响。随着链长的增加,冰重结晶抑制(IRI)和冰晶生长抑制均得到改善,并且星形类肽表现出优异的性能。值得注意的是,星形类肽S-(A)表现出优异的抗冻活性和低细胞毒性,突出了其作为二甲基亚砜等传统冷冻保护剂的新型无毒替代品的潜力。这些发现为用于冷冻保存应用的类肽的结构-性能关系提供了有价值的见解。