Cao Xiangyu, Yu Tong, Sun Zhe, Chen Mengge, Xie Wenhai, Pang Qiuxiang, Deng Hongkuan
School of Life Sciences and Medicine, Shandong University of Technology, Zibo, 255000, China.
School of Life Sciences and Medicine, Shandong University of Technology, Zibo, 255000, China.
Microb Pathog. 2025 Jan;198:107052. doi: 10.1016/j.micpath.2024.107052. Epub 2024 Oct 21.
The abuse of antibiotics has led to the widespread emergence of multi-drug resistant bacteria. Phage therapy holds promise for enhancing anti-bacterial and anti-infection strategies. Traditional phage therapy employs phage preparations as an alternative to antibiotics for the eradication of bacteria, aiming to achieve the desired clinical outcomes. Modification of phage by transgene or chemical modification overcomes the limitations of traditional phage therapy, including host spectrum modification, bacterial resistance reversal, antigen presentation, and drug targeted delivery, and thus broadens the application field of phages. This article summarizes the progress of engineered phages in the fields of anti-bacterial, anti-infective and anti-tumor therapy. It emphasizes the advantages of engineered phages in anti-bacterial and anti-tumor treatment, and discusses the widespread potential of phage-based modular design as multifunctional biopharmaceuticals, drug carriers, and other applications.
抗生素的滥用已导致多重耐药菌的广泛出现。噬菌体疗法有望增强抗菌和抗感染策略。传统的噬菌体疗法使用噬菌体制剂作为抗生素的替代品来根除细菌,旨在实现预期的临床效果。通过转基因或化学修饰对噬菌体进行改造克服了传统噬菌体疗法的局限性,包括宿主谱修饰、细菌耐药性逆转、抗原呈递和药物靶向递送,从而拓宽了噬菌体的应用领域。本文总结了工程噬菌体在抗菌、抗感染和抗肿瘤治疗领域的进展。它强调了工程噬菌体在抗菌和抗肿瘤治疗中的优势,并讨论了基于噬菌体的模块化设计作为多功能生物药物、药物载体和其他应用的广泛潜力。