State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, P. R. China.
Department of Cariology and Endodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, P. R. China.
Adv Sci (Weinh). 2024 Oct;11(39):e2405764. doi: 10.1002/advs.202405764. Epub 2024 Aug 21.
In treating infectious diseases, achieving selective bacterial inhibition is crucial for preserving the microecological equilibrium. The current approaches predominantly rely on synthetic materials tailored to specific bacteria, considering their cell walls or oxygen requirements. Herein, inspired by intricate bacterial communication, a natural implant is proposed coating utilizing bacterial outer membrane vesicles (OMVs), essential components in bacterial signaling, integrated onto diverse implant surfaces through a universal poly (tannic acid) bridging layer. This coating is homogenous and stable, unexpectedly promoting the proliferation of parental bacteria while inhibiting heterologous bacteria both in vitro and in vivo. Through high-throughput sequencing and bioinformatics analysis, the selective bacteriostatic ability arises from OMVs, upregulating anti-oxidative stress genes in heterologous bacteria and activating biofilm-related genes in parental bacteria. This study positions OMVs as an appealing biomaterial for selective bacterial inhibition through a biological approach, showcasing their potential in regulating the microecological balance through a natural interface modification strategy.
在治疗传染病时,实现选择性细菌抑制对于维持微生态平衡至关重要。目前的方法主要依赖于针对特定细菌的合成材料,考虑到它们的细胞壁或氧气需求。在此,受复杂细菌通讯的启发,提出了一种天然植入物涂层利用细菌外膜囊泡(OMVs),这是细菌信号传递的重要组成部分,通过通用的聚(单宁酸)桥接层整合到各种植入物表面。这种涂层是均匀且稳定的,出人意料地促进了亲本细菌的增殖,同时在体外和体内抑制了异源细菌。通过高通量测序和生物信息学分析,选择性抑菌能力来自 OMVs,上调了异源细菌中的抗氧化应激基因,并激活了亲本细菌中的生物膜相关基因。这项研究通过生物学方法将 OMVs 定位为一种有吸引力的生物材料,用于选择性细菌抑制,展示了通过天然界面修饰策略调节微生态平衡的潜力。