Center for Natural and Human Sciences (CCNH), Federal University of ABC (UFABC), Santo André, SP, Brazil.
Department of Microbiology, Universidade Estadual de Londrina, Londrina, PR, Brazil.
J Mater Sci Mater Med. 2021 Mar 6;32(3):23. doi: 10.1007/s10856-021-06494-x.
The combination of FeO@Ag superparamagnetic hybrid nanoparticles and nitric oxide (NO) represents an innovative strategy for a localized NO delivery with a simultaneous antibacterial and antitumoral actions. Here, we report the design of FeO@Ag hybrid nanoparticles, coated with a modified and nitrosated chitosan polymer, able to release NO in a biological medium. After their synthesis, physicochemical characterization confirmed the obtention of small NO-functionalized superparamagnetic FeO@Ag NPs. Antibacterial assays demonstrated enhanced effects compared to control. Bacteriostatic effect against Gram-positive strains and bactericidal effect against E. coli were demonstrated. Moreover, NO-functionalized FeO@Ag NPs demonstrated improved ability to reduce cancer cells viability and less cytotoxicity against non-tumoral cells compared to FeO@Ag NPs. These effects were associated to the ability of these NPs act simultaneous as cytotoxic (necrosis inductors) and cytostatic compounds inducing S-phase cell cycle arrest. NPs also demonstrated low hemolysis ratio (<10%) at ideal work range, evidencing their potential for biomedical applications. Targeted and hemocompatible nitric oxide-releasing multi-functional hybrid nanoparticles for antitumor and antimicrobial applications.
FeO@Ag 超顺磁杂交纳米粒子与一氧化氮(NO)的结合代表了一种用于局部递送 NO 的创新策略,同时具有抗菌和抗肿瘤作用。在这里,我们报告了一种经过修饰和亚硝化壳聚糖聚合物包覆的 FeO@Ag 杂化纳米粒子的设计,该纳米粒子能够在生物介质中释放 NO。在合成后,物理化学特性分析证实了获得了具有小尺寸的 NO 功能化超顺磁 FeO@Ag NPs。与对照组相比,该纳米粒子的抑菌效果明显增强。对革兰氏阳性菌表现出抑菌作用,对大肠杆菌表现出杀菌作用。此外,与 FeO@Ag NPs 相比,NO 功能化 FeO@Ag NPs 降低癌细胞活力的能力和对非肿瘤细胞的细胞毒性降低。这些作用与这些 NPs 同时作为细胞毒性(诱导坏死)和细胞周期停滞诱导 S 期的细胞生长抑制剂的能力相关。在理想的工作范围内,这些 NPs 的溶血率低于 10%(<10%),证明了它们在生物医学应用中的潜力。用于抗肿瘤和抗菌应用的靶向和血相容的一氧化氮释放多功能杂化纳米粒子。