Departamento de Química Inorgánica y Nuclear, Facultad de Química, Universidad Nacional Autónoma de México, Avenida Universidad 3000, Ciudad de México 04510, Mexico.
Departamento de Química Inorgánica y Nuclear, Facultad de Química, Universidad Nacional Autónoma de México, Avenida Universidad 3000, Ciudad de México 04510, Mexico.
J Inorg Biochem. 2024 Sep;258:112623. doi: 10.1016/j.jinorgbio.2024.112623. Epub 2024 May 28.
A strategy for cancer treatment was implemented, based on chemo-photodynamic therapy, utilizing a novel formulation, low-cost system called Cas-ZnONPs. This system consisted of the incorporation of Casiopeina III-ia (CasIII-ia), a hydrophilic copper coordination compound with well-documented anti-neoplastic activity, on Zinc oxide nanoparticles (ZnONPs) with apoptotic activity and lipophilicity, allowing them to permeate biological barriers. Additionally, ZnONPs exhibited fluorescence, with emission at different wavelengths depending on their agglomeration and enabling real-time tracking biodistribution. Also, ZnONPs served as a sensitizer, generating reactive oxygen species (ROS) in situ. In in vitro studies on HeLa and MDA-MB-231 cell lines, a synergistic effect was observed with the impregnated CasIII-ia on ZnONPs. The anticancer activity had an increase in cellular inhibition, depending on the dose of exposure to UV-vis irradiation. In in vivo studies utilized zebrafish models for xenotransplanting stained MDA-MB-231 cells and testing the effectiveness of Cas-ZnONPs treatment. The treatment successfully eliminated cancer cells, both when combined with Photodynamic Therapy (PDT) and when used alone. However, a significantly higher concentration (50 times) of Cas-ZnONPs was required in the absence of PDT. This demonstrates the potential of Cas-ZnONPs in cancer treatment, especially when combined with PDT.
实施了一种基于化学-光动力疗法的癌症治疗策略,利用了一种新型制剂,即低成本系统 Cas-ZnONPs。该系统由 Casiopéina III-ia(CasIII-ia)组成,CasIII-ia 是一种具有良好抗肿瘤活性的亲水性铜配合物,与具有凋亡活性和脂溶性的氧化锌纳米颗粒(ZnONPs)结合,使它们能够穿透生物屏障。此外,ZnONPs 具有荧光性,其发射波长取决于其聚集状态,从而能够实时跟踪生物分布。此外,ZnONPs 还可以作为敏化剂,原位产生活性氧(ROS)。在 HeLa 和 MDA-MB-231 细胞系的体外研究中,观察到浸渍在 ZnONPs 上的 CasIII-ia 具有协同作用。抗癌活性随着细胞抑制率的增加而增加,这取决于暴露于紫外-可见辐射的剂量。在利用转染染色 MDA-MB-231 细胞的斑马鱼模型进行的体内研究中,测试了 Cas-ZnONPs 治疗的效果。单独使用或与光动力疗法(PDT)联合使用时,该治疗均成功消除了癌细胞。然而,在没有 PDT 的情况下,需要 Cas-ZnONPs 的浓度(50 倍)高得多。这表明 Cas-ZnONPs 在癌症治疗中的潜力,特别是与 PDT 联合使用时。