Sedighi Mahsa, Shrestha Neha, Mahmoudi Zahra, Khademi Zahra, Ghasempour Alireza, Dehghan Hamideh, Talebi Seyedeh Fahimeh, Toolabi Maryam, Préat Véronique, Chen Bozhi, Guo Xindong, Shahbazi Mohammad-Ali
Department of Pharmaceutics and Nanotechnology, School of Pharmacy, Birjand University of Medical Sciences, Birjand 9717853076, Iran.
Cellular and Molecular Research Center, Birjand University of Medical Sciences, Birjand 9717853076, Iran.
Polymers (Basel). 2023 Feb 25;15(5):1160. doi: 10.3390/polym15051160.
Self-assembly is a growth mechanism in nature to apply local interactions forming a minimum energy structure. Currently, self-assembled materials are considered for biomedical applications due to their pleasant features, including scalability, versatility, simplicity, and inexpensiveness. Self-assembled peptides can be applied to design and fabricate different structures, such as micelles, hydrogels, and vesicles, by diverse physical interactions between specific building blocks. Among them, bioactivity, biocompatibility, and biodegradability of peptide hydrogels have introduced them as versatile platforms in biomedical applications, such as drug delivery, tissue engineering, biosensing, and treating different diseases. Moreover, peptides are capable of mimicking the microenvironment of natural tissues and responding to internal and external stimuli for triggered drug release. In the current review, the unique characteristics of peptide hydrogels and recent advances in their design, fabrication, as well as chemical, physical, and biological properties are presented. Additionally, recent developments of these biomaterials are discussed with a particular focus on their biomedical applications in targeted drug delivery and gene delivery, stem cell therapy, cancer therapy and immune regulation, bioimaging, and regenerative medicine.
自组装是自然界中的一种生长机制,它通过局部相互作用形成最低能量结构。目前,自组装材料因其具有诸如可扩展性、多功能性、简单性和廉价等优良特性而被考虑用于生物医学应用。通过特定构建模块之间多样的物理相互作用,自组装肽可用于设计和制造不同的结构,如胶束、水凝胶和囊泡。其中,肽水凝胶的生物活性、生物相容性和生物可降解性使其成为生物医学应用中的多功能平台,如药物递送、组织工程、生物传感以及治疗不同疾病。此外,肽能够模拟天然组织的微环境,并对内部和外部刺激做出反应以触发药物释放。在当前综述中,介绍了肽水凝胶的独特特性及其在设计、制造以及化学、物理和生物学性质方面的最新进展。此外,还讨论了这些生物材料的最新发展,特别关注它们在靶向药物递送和基因递送、干细胞治疗、癌症治疗和免疫调节、生物成像以及再生医学等生物医学应用中的情况。