Mattar Iman, Landa Guillermo, Frutos-Lizano Marina, Izquierdo Natalia, Tapia Elena, Perez Marta, Lujan Lluis, Irusta Silvia, Mendoza Gracia, Arruebo Manuel
Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC-Universidad de Zaragoza, 50009 Zaragoza, Spain.
Department of Chemical and Environmental Engineering, University of Zaragoza, Campus Río Ebro-Edificio I+D, C/Poeta Mariano Esquillor S/N, 50018 Zaragoza, Spain.
ACS Appl Mater Interfaces. 2025 Aug 27;17(34):47951-47968. doi: 10.1021/acsami.5c08968. Epub 2025 Aug 18.
Despite increased pre- and postoperative care and aseptic practices in surgical rooms, methicillin-resistant (MRSA) continues to colonize acute surgical wounds. MRSA is also present in chronic nonhealing wounds, such as diabetic foot and pressure ulcers. In this work, advanced antimicrobial-loaded wound dressings are 3D printed using fused deposition modeling. To achieve a high antimicrobial effect, the topical antiseptic octenidine (OCT) was incorporated into the pellets used in the feeder of the extruder prior to fused modeling. Lysostaphin (LYS), a lytic enzyme that cleaves MRSA peptidoglycan, was incorporated by supramolecular interactions on the surface of the OCT-loaded dressings to exploit the anti-MRSA synergy identified here between OCT and LYS showing a fractional inhibition concentration index (FICI) of 0.156. Minimum inhibitory concentration (MIC) and bactericidal concentration (MBC) values for the OCT were 1 and 25 μg/mL, respectively, whereas the MIC and MBC values for the LYS were 0.1 and 0.2 μg/mL, respectively. The resulting dressings completely eradicate MRSA USA 300 inocula (10 CFU/mL) in 96 h. The bactericidal mechanisms exerted by these dressings were identified through molecular techniques, showing lytic effects on the cell wall peptidoglycans of treated bacteria. Additionally, OCT at 1 μg/mL was able to reduce lipopolysaccharide (100 ng/mL)-induced NO production on murine J774A.1 macrophages by more than 90% demonstrating its simultaneous anti-inflammatory action. This effect was also corroborated by the qRT-PCR analysis of several pro-inflammatory genes including IL-1β, IL-6, TNF-α, and Nos2. The combination of OCT and LYS within the dressings reveals higher therapeutic effects compared to free compounds or individual antimicrobial-loaded dressings. and in preclinical models, the use of OCT-LYS dressings effectively reduces MRSA bioburden and inflammation, promoting fast wound healing.
尽管手术室术前和术后护理以及无菌操作有所加强,但耐甲氧西林金黄色葡萄球菌(MRSA)仍会在急性手术伤口定植。MRSA也存在于慢性不愈合伤口中,如糖尿病足和压疮。在这项工作中,采用熔融沉积建模3D打印先进的载抗菌剂伤口敷料。为实现高抗菌效果,在熔融建模之前,将局部防腐剂奥替尼啶(OCT)掺入挤出机进料器中使用的颗粒中。溶葡萄球菌酶(LYS)是一种可裂解MRSA肽聚糖的裂解酶,通过超分子相互作用掺入负载OCT的敷料表面,以利用此处确定的OCT和LYS之间的抗MRSA协同作用,其分数抑制浓度指数(FICI)为0.156。OCT的最低抑菌浓度(MIC)和杀菌浓度(MBC)值分别为1和25μg/mL,而LYS的MIC和MBC值分别为0.1和0.2μg/mL。所得敷料在96小时内完全根除MRSA USA 300接种物(10 CFU/mL)。通过分子技术确定了这些敷料发挥的杀菌机制,显示对处理过的细菌的细胞壁肽聚糖有裂解作用。此外,1μg/mL的OCT能够将脂多糖(100 ng/mL)诱导的小鼠J774A.1巨噬细胞中NO的产生减少90%以上,证明其同时具有抗炎作用。对包括IL-1β、IL-6、TNF-α和Nos2在内的几种促炎基因的qRT-PCR分析也证实了这一效果。敷料中OCT和LYS的组合相比游离化合物或单独的载抗菌剂敷料显示出更高的治疗效果。在临床前模型中,使用OCT-LYS敷料可有效降低MRSA生物负荷和炎症,促进伤口快速愈合。