Yin Xiuzhao, Fan Taojian, Zheng Nannan, Yang Jing, Ji Tao, Yan Li, Ai Fujin, Hu Junqing
College of Health Science and Environmental Engineering, Shenzhen Technology University, Shenzhen 518118, PR China; College of Applied Technology, Shenzhen University, Shenzhen 518060, PR China.
College of Health Science and Environmental Engineering, Shenzhen Technology University, Shenzhen 518118, PR China.
Colloids Surf B Biointerfaces. 2024 Feb;234:113738. doi: 10.1016/j.colsurfb.2023.113738. Epub 2023 Dec 30.
Tumor recurrence and wound healing represent significant burdens for tumor patients after the surgical removal of melanomas. Wound dressings with wound healing and anticancer therapeutic abilities could help to solve these issues. Thus, a hybrid hydrogel made of polyvinyl alcohol (PVA) and polyethylene imine (PEI) was prepared by cross-linking imine bond and boronic acid bond. This hydrogel was loaded with ruthenium nanorods (Ru NRs) and glucose oxidase (GOx) and named as nanocomposite hydrogel (Ru/GOx@Hydrogel), exhibiting remarkable photothermal/photodynamic/starvation antitumor therapy and wound repair abilities. Ru NRs are bifunctional phototherapeutic agents that simultaneously exhibit intrinsic photothermal and photodynamic functions. Three-dimensional composite hydrogel loaded with GOx can also consume glucose in the presence of O during tumor starvation therapy. Near-infrared (NIR) light-triggered hyperthermia can not only promote the consumption of glucose, but also facilitate the ablation of residual cancer cells. The antitumor effect of the Ru/GOx@Hydrogel resulted in significant improvements, compared to those observed with either phototherapy or starvation therapy alone. Additionally, the postoperative wound was substantially healed after treatment with Ru/GOx@Hydrogel and NIR irradiation. Therefore, the Ru/GOx@Hydrogel can be used as a multi-stimulus-responsive nanoplatform that could facilitate on-demand controlled drug release, and be used as a promising postoperative adjuvant in combination therapy.
肿瘤复发和伤口愈合是黑色素瘤手术切除后肿瘤患者面临的重大负担。具有伤口愈合和抗癌治疗能力的伤口敷料有助于解决这些问题。因此,通过亚胺键和硼酸键交联制备了由聚乙烯醇(PVA)和聚乙烯亚胺(PEI)制成的混合水凝胶。该水凝胶负载了钌纳米棒(Ru NRs)和葡萄糖氧化酶(GOx),并命名为纳米复合水凝胶(Ru/GOx@水凝胶),具有显著的光热/光动力/饥饿抗肿瘤治疗和伤口修复能力。Ru NRs是双功能光治疗剂,同时具有内在的光热和光动力功能。负载GOx的三维复合水凝胶在肿瘤饥饿治疗过程中也能在有氧存在的情况下消耗葡萄糖。近红外(NIR)光触发的热疗不仅可以促进葡萄糖的消耗,还可以促进残留癌细胞的消融。与单独的光疗或饥饿疗法相比,Ru/GOx@水凝胶的抗肿瘤效果有显著改善。此外,用Ru/GOx@水凝胶和近红外照射治疗后,术后伤口基本愈合。因此,Ru/GOx@水凝胶可以用作多刺激响应纳米平台,促进按需控制药物释放,并作为联合治疗中有前景的术后辅助剂。