Li Wen, Ding Qihang, Li Meiqi, Zhang Tianshou, Li Chunyan, Qi Manlin, Dong Biao, Fang Jiao, Wang Lin, Kim Jong Seung
Department of Oral Implantology, School and Hospital of Stomatology, Jilin University, Changchun 130021, China; Key Laboratory of Pathobiology, Ministry of Education, Jilin University, Changchun, China.
Department of Oral Implantology, School and Hospital of Stomatology, Jilin University, Changchun 130021, China; Department of Chemistry, Korea University, Seoul 02841, Republic of Korea.
J Control Release. 2025 Jan 10;377:495-523. doi: 10.1016/j.jconrel.2024.11.044. Epub 2024 Nov 29.
Bacterial infections have emerged as a major threat to global public health. The effectiveness of traditional antibiotic treatments is waning due to the increasing prevalence of antimicrobial resistance, leading to an urgent demand for alternative antibacterial technologies. In this context, antibacterial nanomaterials have proven to be powerful tools for treating antibiotic-resistant and recurring infections. Targeting nanomaterials not only enable the precise delivery of bactericidal agents but also ensure controlled release at the infection site, thereby reducing potential systemic side effects. This review collates and categorizes nanomaterial-based responsive and precision-targeted antibacterial strategies into three key types: exogenous stimuli-responsive (including light, ultrasound, magnetism), bacterial microenvironment-responsive (such as pH, enzymes, hypoxia), and targeted antibacterial action (involving electrostatic interaction, covalent bonding, receptor-ligand mechanisms). Furthermore, we discuss recent advances, potential mechanisms, and future prospects in responsive and targeted antimicrobial nanomaterials, aiming to provide a comprehensive overview of the field's development and inspire the formulation of novel, precision-targeted antimicrobial strategies.
细菌感染已成为对全球公共卫生的重大威胁。由于抗菌药物耐药性的日益普遍,传统抗生素治疗的有效性正在减弱,这导致对替代抗菌技术的迫切需求。在这种背景下,抗菌纳米材料已被证明是治疗耐药性和复发性感染的有力工具。靶向纳米材料不仅能够精确递送杀菌剂,还能确保在感染部位的控释,从而减少潜在的全身副作用。本综述将基于纳米材料的响应性和精确靶向抗菌策略整理并分类为三种关键类型:外源性刺激响应(包括光、超声、磁)、细菌微环境响应(如pH值、酶、缺氧)和靶向抗菌作用(涉及静电相互作用、共价键、受体-配体机制)。此外,我们还讨论了响应性和靶向抗菌纳米材料的最新进展、潜在机制和未来前景,旨在全面概述该领域的发展,并激发新型精确靶向抗菌策略的制定。