Department of Emergency Surgery, The Affiliated Hospital of Qingdao University, Qingdao 266000, China.
Research Institute of General Surgery, Jinling Hospital, School of Medicine, Nanjing University, Nanjing 210093, China.
ACS Appl Mater Interfaces. 2024 Jun 5;16(22):28147-28161. doi: 10.1021/acsami.4c03655. Epub 2024 May 23.
Nonhealing infectious wounds, characterized by bacterial colonization, wound microenvironment destruction, and shape complexity, present an intractable problem in clinical practice. Inspired by LEGOs, building-block toys that can be assembled into desired shapes, we proposed the use of electrospray nano-micro composite sodium alginate (SA) microspheres with antibacterial and angiogenic properties to fill irregularly shaped wounds instantly. Specifically, porous poly(lactic--glycolic acid) (PLGA) microspheres (MSs) encapsulating basic fibroblast growth factor (bFGF) were produced by a water-in-oil-in-water double-emulsion method. Then, bFGF@MSs were blended with the SA solution containing ZIF-8 nanoparticles. The resultant solution was electrosprayed to obtain nano-micro composite microspheres (bFGF@MS/ZIF-8@SAMSs). The composite MSs' size could be regulated by PLGA MS mass proportion and electrospray voltage. Moreover, bFGF, a potent angiogenic agent, and ZIF-8, bactericidal nanoparticles, were found to release from bFGF@MS/ZIF-8@SAMSs in a controlled and sustainable manner, which promoted cell proliferation, migration, and tube formation and killed bacteria. Through experimentation on rat models, bFGF@MS/ZIF-8@SAMSs were revealed to adapt to wound shapes and accelerate infected wound healing because of the synergistic effects of antibacterial and angiogenic abilities. In summation, this study developed a feasible approach to prepare bioactive nano-micro MSs as building blocks that can fill irregularly shaped infected wounds and improve healing.
非愈合性感染性伤口的特点是细菌定植、伤口微环境破坏和形状复杂,这在临床实践中是一个棘手的问题。受乐高积木(一种可以组装成所需形状的积木玩具)的启发,我们提出使用具有抗菌和促血管生成特性的电喷纳米微复合海藻酸钠(SA)微球即时填充形状不规则的伤口。具体来说,通过水包油包水双乳液法制备包埋碱性成纤维细胞生长因子(bFGF)的多孔聚(乳酸-羟基乙酸)(PLGA)微球(MSs)。然后,将 bFGF@MSs 与含有 ZIF-8 纳米颗粒的 SA 溶液混合。所得溶液通过电喷雾获得纳米微复合微球(bFGF@MS/ZIF-8@SAMSs)。PLGA MS 质量比例和电喷雾电压可调节复合 MSs 的尺寸。此外,发现具有强大促血管生成作用的 bFGF 和杀菌纳米颗粒 ZIF-8 可从 bFGF@MS/ZIF-8@SAMSs 中以受控和可持续的方式释放,从而促进细胞增殖、迁移和管形成并杀死细菌。通过对大鼠模型的实验研究,bFGF@MS/ZIF-8@SAMSs 由于具有抗菌和促血管生成能力的协同作用,能够适应伤口形状并加速感染性伤口愈合。总之,本研究开发了一种可行的方法来制备作为构建块的生物活性纳米微 MSs,这些构建块可以填充形状不规则的感染性伤口并改善愈合。