Laboratory of Applied Biotechnology, Department of Biotechnology, Ghent University, Gent, Belgium.
Center for Microbial Ecology and Technology (CMET), Faculty of Bioscience Engineering, Ghent University, Gent, Belgium.
Gut Microbes. 2024 Jan-Dec;16(1):2387144. doi: 10.1080/19490976.2024.2387144. Epub 2024 Aug 6.
The importance of the microbiota in the intestinal tract for human health has been increasingly recognized. In this perspective, microbiome modulation, a targeted alteration of the microbial composition, has gained interest. Phage lysins, peptidoglycan-degrading enzymes encoded by bacteriophages, are a promising new class of antibiotics currently under clinical development for treating bacterial infections. Due to their high specificity, lysins are considered microbiome-friendly. This review explores the opportunities and challenges of using lysins as microbiome modulators. First, the high specificity of endolysins, which can be further modulated using protein engineering or targeted delivery methods, is discussed. Next, obstacles and possible solutions to assess the microbiome-friendliness of lysins are considered. Finally, lysin delivery to the intestinal tract is discussed, including possible delivery methods such as particle-based and probiotic vehicles. Mapping the hurdles to developing lysins as microbiome modulators and identifying possible ways to overcome these hurdles can help in their development. In this way, the application of these innovative antimicrobial agents can be expanded, thereby taking full advantage of their characteristics.
肠道微生物群对人类健康的重要性已逐渐被认识到。在这种情况下,微生物组调节,即靶向改变微生物组成,引起了人们的兴趣。噬菌体裂解酶是由噬菌体编码的一种新型肽聚糖降解酶,目前正在临床开发中,用于治疗细菌感染。由于其高度特异性,裂解酶被认为对微生物组友好。本文探讨了将裂解酶作为微生物组调节剂的机会和挑战。首先,讨论了内切酶的高度特异性,可通过蛋白质工程或靶向递送方法进一步调节。其次,考虑了评估裂解酶微生物组友好性的障碍和可能的解决方案。最后,讨论了裂解酶递送到肠道的问题,包括基于颗粒和益生菌载体等可能的递送方法。绘制开发裂解酶作为微生物组调节剂的障碍图,并确定克服这些障碍的可能方法,可以帮助其发展。通过这种方式,可以扩展这些创新抗菌剂的应用,从而充分利用它们的特性。