College of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 450001, PR China.
College of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 450001, PR China.
J Colloid Interface Sci. 2023 Jul;641:59-69. doi: 10.1016/j.jcis.2023.03.050. Epub 2023 Mar 11.
A dual-modal antibacterial platform has been established for highly efficient wound healing infected by bacteria based on a defective zinc-based metal-organic framework composite, which was synthesized using 1,4-phthalic acid-based polyether polymer (L8) as ligand, curcumin as regulator, and Zn as metal coordinated center (Cur@Zn-MOF). In addition to the integration of the features of polymer-MOF synthesized using L8 (such as high water stability and controllable and long-term release of Zn) and Zn-bioMOF prepared using curcumin as ligand (such as feasible release of curcumin and Zn and good biocompatibility), the Cur@Zn-MOF bioplatform also possessed plenty of structure defects. Comparing with Zn-bioMOF and polyZn-MOF synthesized using the sole ligand, the smaller released amount of curcumin (6.08 μg mL) and higher release level of Zn ions (5.68 μg mL) were simultaneously achieved for the defective Cur@Zn-MOF within a long-term duration (48 h). The synergistic effect afforded Cur@Zn-MOF the high sterilization performance toward Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) even at the low usage of 125 μg mL. The in vivo wound healing effect further confirmed the superior treatment ability of Cur@Zn-MOF toward the bacterium-infected wound. Also, the negligible cytotoxicity and low hemolysis of Cur@Zn-MOF greatly promoted the viability of human skin fibroblasts. Accordingly, this work can provide a new dual-modal bioplatform based on the functional MOF via the controllable release of antibacterial drug and metal ions for the efficient wound healing.
一种基于缺陷锌基金属有机骨架复合材料的双模态抗菌平台已被建立,用于高效治疗细菌感染的伤口,该复合材料是通过使用基于 1,4-苯二甲酸的聚醚聚合物(L8)作为配体、姜黄素作为调节剂和 Zn 作为金属配位中心(Cur@Zn-MOF)合成的。除了整合 L8 合成的聚合物-MOF(如高水稳定性和可控且长期释放 Zn)和使用姜黄素作为配体合成的 Zn-生物 MOF(如姜黄素和 Zn 的可行释放以及良好的生物相容性)的特点外,Cur@Zn-MOF 生物平台还具有大量的结构缺陷。与单独使用配体制备的 Zn-生物 MOF 和聚 Zn-MOF 相比,在较长的时间(48 h)内,缺陷的 Cur@Zn-MOF 同时实现了较低的姜黄素释放量(6.08 μg mL)和更高的 Zn 离子释放水平(5.68 μg mL)。Cur@Zn-MOF 对大肠杆菌(E. coli)和金黄色葡萄球菌(S. aureus)具有协同杀菌性能,即使在低用量为 125 μg mL 时也是如此。体内伤口愈合效果进一步证实了 Cur@Zn-MOF 对细菌感染伤口的优越治疗能力。此外,Cur@Zn-MOF 的细胞毒性可忽略不计,溶血率低,大大提高了人皮肤成纤维细胞的活力。因此,这项工作可以通过控制抗菌药物和金属离子的释放,为高效伤口愈合提供一种基于功能 MOF 的新型双模态生物平台。