CEB - Centre of Biological Engineering, University of Minho, 4710-057 Braga, Portugal; LABBELS - Associate Laboratory, Braga, Guimarães, Portugal.
CEB - Centre of Biological Engineering, University of Minho, 4710-057 Braga, Portugal; LABBELS - Associate Laboratory, Braga, Guimarães, Portugal.
J Control Release. 2024 Mar;367:522-539. doi: 10.1016/j.jconrel.2024.01.061. Epub 2024 Feb 3.
Biofilms are key players in the pathogenesis of most of chronic infections associated with host tissue or fluids and indwelling medical devices. These chronic infections are hard to be treated due to the increased biofilms tolerance towards antibiotics in comparison to planktonic (or free living) cells. Despite the advanced understanding of their formation and physiology, biofilms continue to be a challenge and there is no standardized therapeutic approach in clinical practice to eradicate them. Aptamers offer distinctive properties, including excellent affinity, selectivity, stability, making them valuable tools for therapeutic purposes. This review explores the flexibility and designability of aptamers as antibiofilm drugs but, importantly, as targeting tools for diverse drug and delivery systems. It highlights specific examples of application of aptamers in biofilms of diverse species according to different modes of action including inhibition of motility and adhesion, blocking of quorum sensing molecules, and dispersal of biofilm-cells to planktonic state. Moreover, it discusses the limitations and challenges that impaired an increased success of the use of aptamers on biofilm management, as well as the opportunities related to aptamers modifications that can significantly expand their applicability on the biofilm field.
生物膜是与宿主组织或体液和留置式医疗设备相关的大多数慢性感染的发病机制中的关键因素。这些慢性感染很难治疗,因为与浮游(或自由生活)细胞相比,生物膜对抗生素的耐受性增加。尽管对其形成和生理学有了深入的了解,但生物膜仍然是一个挑战,在临床实践中没有标准化的治疗方法来根除它们。适体具有独特的特性,包括优异的亲和力、选择性和稳定性,使其成为治疗目的的有价值的工具。本综述探讨了适体作为抗生物膜药物的灵活性和可设计性,但重要的是,作为针对不同药物和给药系统的靶向工具。它根据不同的作用模式,突出了适体在不同物种生物膜中的具体应用实例,包括抑制运动和粘附、阻断群体感应分子以及将生物膜细胞分散到浮游状态。此外,它还讨论了影响适体在生物膜管理中应用增加的成功的限制和挑战,以及与适体修饰相关的机会,这可以显著扩大它们在生物膜领域的适用性。