School of Biosciences, Apeejay Stya University, Sohna-Palwal Road, Gurugram, Haryana, 122103, India.
School of Biosciences, Apeejay Stya University, Sohna-Palwal Road, Gurugram, Haryana, 122103, India.
Microb Pathog. 2024 Aug;193:106738. doi: 10.1016/j.micpath.2024.106738. Epub 2024 Jun 8.
Microbial virulence and biofilm formation stand as a big concern against the goal of achieving a green and sustainable future. Microbial pathogenesis is the process by which the microbes (bacterial, fungal, and viral) cause illness in their respective host organism. 'Nanotechnology' is a state-of-art discipline to address this problem. The use of conventional techniques against microbial proliferation has been challenging against the environment. To tackle this problem, there has been a revolution in this multi-disciplinary field, to address the aspect of bioinspired nanomaterials in the antibiofilm and antimicrobial sector. Bioinspired nanomaterials prove to be a potential antibiofilm and antimicrobial agent as they are non-hazardous to the environment and mostly synthesized using a single-step reduction protocol. They exhibit synergistic effects against bacterial, fungal, and viral pathogens and thereby, control the virulence. In this literature review, we have elucidated the potential of bioinspired nanoparticles as well as nanomaterials as a promising anti-microbial treatment pedagogy and throw light on the advancements in how smart photo-switchable platforms have been designed to exhibit both bacterial releasing as well as bacterial-killing properties. Certain limitations and possible outcomes of these bio-based nanomaterials have been discussed in the hope of achieving a green and sustainable ecosystem.
微生物的毒力和生物膜形成是实现绿色和可持续未来目标的一大关注点。微生物发病机制是指微生物(细菌、真菌和病毒)在其各自的宿主生物体内引起疾病的过程。“纳米技术”是解决这一问题的一种最先进的学科。针对微生物增殖的常规技术的使用对环境具有挑战性。为了解决这个问题,在这个多学科领域发生了一场革命,以解决仿生纳米材料在抗生物膜和抗菌领域的问题。仿生纳米材料被证明是一种有潜力的抗生物膜和抗菌剂,因为它们对环境没有危害,并且主要使用单步还原法合成。它们对细菌、真菌和病毒病原体表现出协同作用,从而控制其毒力。在这篇文献综述中,我们阐明了仿生纳米粒子以及纳米材料作为一种有前途的抗菌治疗方法的潜力,并介绍了智能光开关平台的设计如何展示细菌释放和杀菌特性的进展。讨论了这些基于生物的纳米材料的某些局限性和可能的结果,以期实现绿色和可持续的生态系统。