Dipartimento di Neuroscienze, Università Cattolica del Sacro Cuore, Largo Francesco Vito 1, 00168 Rome, Italy; Fondazione Policlinico Universitario A. Gemelli IRCSS, 00168 Rome, Italy.
Department of Chemical Engineering, Biotechnology and Materials, FCFM, University of Chile, Santiago 8370415, Chile.
Biomed Pharmacother. 2022 Sep;153:113496. doi: 10.1016/j.biopha.2022.113496. Epub 2022 Jul 30.
Globally, breast cancer is the most diagnosed invasive cancer among women. Current therapies (e.g., chemotherapy) show numerous limitations due to the lack of selectivity and involved side effects, which urgently asks for novel approaches with enhanced tumor-killing efficacy. We previously demonstrated that MXenes, new bioactive nanomaterials with promising photophysical properties, are capable to increase the efficiency of the targeted breast cancer photothermal therapy (PTT). In this work, we investigated the effect of few- and multi-layer TiCT MXenes mediated-PTT on two different 3D reliable breast cancer models such as conventional and bio-printed spheroids. We performed PTT on both cancer models using a non-toxic MXene concentration of 50 µg/mL. After PTT, a significant reduction in the cell viability along with a notable increase in reactive oxygen species (ROS) was observed. Moreover, we studied the effect of PTT on the migration of macrophages and endothelial cells toward cancer regions in both 3D models. Our results indicate that PTT mediated by both few- and multi-layer MXenes significantly modulates the tumor progression through cells' death by increasing the temperature, which holds particularly true for the bio-printed model.
在全球范围内,乳腺癌是女性中最常见的侵袭性癌症。由于缺乏选择性和相关的副作用,目前的治疗方法(如化疗)显示出许多局限性,因此迫切需要具有增强肿瘤杀伤效果的新方法。我们之前证明,MXenes 是一种具有有前途的光物理特性的新型生物活性纳米材料,能够提高靶向乳腺癌光热治疗 (PTT) 的效率。在这项工作中,我们研究了几层和多层 TiCT MXenes 介导的 PTT 对两种不同的 3D 可靠乳腺癌模型(如传统和生物打印球体)的影响。我们使用非毒性 MXene 浓度 50µg/mL 对两种癌症模型进行 PTT。PTT 后,观察到细胞活力显著降低,活性氧 (ROS) 明显增加。此外,我们研究了 PTT 对两种 3D 模型中巨噬细胞和内皮细胞向癌症区域迁移的影响。我们的结果表明,通过增加温度,由几层和多层 MXenes 介导的 PTT 可通过细胞死亡显著调节肿瘤进展,对于生物打印模型尤其如此。