Inorganic and Physical Chemistry Laboratory, CSIR-Central Leather Research Institute, Adyar, Chennai, 600 020, India.
Biochemistry and Biotechnology Laboratory, CSIR-Central Leather Research Institute, Adyar, Chennai, 600 020, India.
Appl Biochem Biotechnol. 2022 Jan;194(1):266-290. doi: 10.1007/s12010-021-03764-w. Epub 2021 Nov 24.
Functionalized metal oxide nanoparticles cross-linked collagen scaffolds are widely used in skin regenerative applications because of their enhanced physicochemical and biocompatibility properties. From the safety clinical trials point of view, there are no reports that have compared the effects of functionalized metal oxide nanoparticles mediated collagen scaffolds for in vivo skin regenerative applications. In this work, triethoxysilane-poly (amido amine) dendrimer generation 3 (TES-PAMAM-G or G)-functionalized spherical shape metal oxide nanoparticles (MO NPs: ZnO, TiO, FeO, CeO, and SiO, size: 12-25 nm) cross-linked collagen scaffolds were prepared by using a self-assembly method. Triple helical conformation, pore size, mechanical strength, and in vitro cell viability of MO-TES-PAMAM-G-collagen scaffolds were studied through different methods. The in vivo skin regenerative proficiency of MO-TES-PAMAM-G-collagen scaffolds was analyzed by implanting the scaffold on wounds in Wistar albino rats. The results demonstrated that MO-TES-PAMAM-G-collagen scaffold showed superior skin regeneration properties than other scaffolds. The skin regenerative efficiency of MO NPs followed the order ZnO > TiO > CeO > SiO > FeO NPs. This result can be attributed to higher mechanical strength, cell viability, and better antibacterial activity of ZnO-TES-PAMAM-G-collagen scaffold that leads to accelerate the skin regenerative properties in comparison to other metal oxide based collagen scaffolds.
功能化金属氧化物纳米粒子交联胶原支架由于其增强的物理化学和生物相容性而广泛应用于皮肤再生应用。从安全临床试验的角度来看,没有报道比较功能化金属氧化物纳米粒子介导的胶原支架在体内皮肤再生应用中的效果。在这项工作中,通过自组装方法制备了三乙氧基硅烷-聚(酰胺-胺)树枝状大分子 3(TES-PAMAM-G 或 G)功能化球形金属氧化物纳米粒子(MO NPs:ZnO、TiO、FeO、CeO 和 SiO,尺寸:12-25nm)交联胶原支架。通过不同的方法研究了 MO-TES-PAMAM-G-胶原支架的三螺旋构象、孔径、机械强度和体外细胞活力。通过将支架植入 Wistar 白化大鼠的伤口来分析 MO-TES-PAMAM-G-胶原支架的体内皮肤再生能力。结果表明,MO-TES-PAMAM-G-胶原支架比其他支架具有更好的皮肤再生性能。MO NPs 的皮肤再生效率顺序为 ZnO>TiO>CeO>SiO>FeO NPs。这一结果归因于 ZnO-TES-PAMAM-G-胶原支架具有更高的机械强度、细胞活力和更好的抗菌活性,与其他基于金属氧化物的胶原支架相比,可加速皮肤再生性能。