School of Chemistry and Pharmaceutical Engineering & Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan 250021, China.
Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130022, China.
ACS Appl Mater Interfaces. 2024 Nov 6;16(44):60933-60947. doi: 10.1021/acsami.4c10238. Epub 2024 Oct 24.
Postoperative adhesion (PA) is a severe complication of abdominal surgery caused by the inability of clinical physical barriers to cope with diverse pathological factors in the process of PA formation. Herein, we described a multifunctional hydrogel composed of bioactive nanoparticles (BNs) and dual-responsive hydrogel to serve as a combination of physical and pharmacological therapy for preventing PA. Specifically, BNs with pro-inflammatory cell-targeted aggregation were designed by integrating hyaluronic acid onto the polydopamine (PDA)-coated hollow ZrO nanoparticles loaded with antimicrobial peptides and platelet lysates that can eliminate bacterial infection and promote tissue repair. PDA can remove the excessive reactive oxygen species (ROS) and thus suppress the oxidative stress damage and accompanying inflammation in the presence of high ROS. The dynamically cross-linked host hydrogel presents injectable yet microenvironment-responsive properties, which enables complete coverage of the uneven tissue and instantly forms a physical barrier to effectively isolate injured tissues and neighboring organs, and synchronously acts as a niche to deliver the BNs in a controlled way. The hydrogel demonstrates a remarkable antiadhesion effect in a rat cecum-abdominal wall adhesion model. Together, this "all-in-one" composite hydrogel strategy capable of a physical barrier capability and pharmacological effects represents a promising clinical solution to prevent PA.
术后粘连(PA)是腹部手术的一种严重并发症,其原因是临床物理屏障无法应对 PA 形成过程中多样化的病理因素。在此,我们描述了一种多功能水凝胶,它由生物活性纳米颗粒(BNs)和双响应水凝胶组成,可作为物理和药理学治疗相结合的方法,用于预防 PA。具体来说,通过将透明质酸整合到载有抗菌肽和血小板裂解物的聚多巴胺(PDA)涂层中空 ZrO 纳米颗粒上,设计了具有促炎细胞靶向聚集的 BNs,可消除细菌感染并促进组织修复。PDA 可以去除过多的活性氧(ROS),从而抑制高 ROS 存在下的氧化应激损伤和伴随的炎症。动态交联的主体水凝胶具有可注射性和微环境响应性,可完全覆盖不均匀的组织,并立即形成物理屏障,有效隔离受伤组织和邻近器官,同时充当一个龛位,以可控的方式输送 BNs。水凝胶在大鼠盲肠-腹壁粘连模型中表现出显著的抗粘连效果。总之,这种具有物理屏障能力和药理作用的“一体化”复合水凝胶策略代表了预防 PA 的一种有前途的临床解决方案。