Medical Biotechnology Department, Genetic Engineering and Biotechnology Research Institute, (GEBRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El‑Arab City, Alexandria, 21934, Egypt.
Animal House Unit, Medical Technology Center, Medical Research Institute, Alexandria University, Alexandria, Egypt.
Sci Rep. 2023 Mar 2;13(1):3529. doi: 10.1038/s41598-023-30553-8.
Metastatic tumor is initiated by metastatic seeds (cancer stem cells "CSCs") in a controlled redox microenvironment. Hence, an effective therapy that disrupts redox balance with eliminating CSCs is critical. Diethyldithiocarbamate (DE) is potent inhibitor of radical detoxifying enzyme (aldehyde dehydrogenase "ALDH"1A) causing effective eradication of CSCs. This DE effect was augmented and more selective by its nanoformulating with green synthesized copper oxide (CuO) nanoparticles (NPs) and zinc oxide NPs, forming novel nanocomplexes of CD NPs and ZD NPs, respectively. These nanocomplexes exhibited the highest apoptotic, anti-migration, and ALDH1A inhibition potentials in M.D. Anderson-metastatic breast (MDA-MB) 231 cells. Importantly, these nanocomplexes revealed more selective oxidant activity than fluorouracil by elevating reactive oxygen species with depleting glutathione in only tumor tissues (mammary and liver) using mammary tumor liver metastasis animal model. Due to higher tumoral uptake and stronger oxidant activity of CD NPs than ZD NPs, CD NPs had more potential to induce apoptosis, suppress hypoxia-inducing factor gene, and eliminate CD44CSCs with downregulating their stemness, chemoresistance, and metastatic genes and diminishing hepatic tumor marker (α-fetoprotein). These potentials interpreted the highest tumor size reduction with complete eradicating tumor metastasis to liver in CD NPs. Consequently, CD nanocomplex revealed the highest therapeutic potential representing a safe and promising nanomedicine against the metastatic stage of breast cancer.
转移性肿瘤是由受控氧化还原微环境中的转移性种子(癌症干细胞“CSC”)引发的。因此,破坏氧化还原平衡并消除 CSC 的有效治疗方法至关重要。二乙基二硫代氨基甲酸盐(DE)是一种有效的自由基解毒酶(醛脱氢酶“ALDH1A”)抑制剂,可有效根除 CSC。通过与绿色合成的氧化铜(CuO)纳米粒子(NPs)和氧化锌 NPs 纳米化,形成新型的 CD NPs 和 ZD NPs 纳米复合物,增强了 DE 的效果,并使其更具选择性。这些纳米复合物在 MDA-MB 231 细胞中表现出最高的凋亡、抗迁移和 ALDH1A 抑制潜力。重要的是,这些纳米复合物通过在仅在肿瘤组织(乳腺和肝脏)中升高活性氧并耗尽谷胱甘肽,显示出比氟尿嘧啶更高的选择性氧化剂活性,使用乳腺肿瘤肝转移动物模型。由于 CD NPs 比 ZD NPs 具有更高的肿瘤摄取率和更强的氧化剂活性,CD NPs 更有可能通过诱导细胞凋亡、抑制缺氧诱导因子基因并消除 CD44CSC 来发挥作用,下调其干性、化学抗性和转移性基因,并减少肝肿瘤标志物(α-胎蛋白)。这些潜力解释了 CD NPs 具有最大的肿瘤体积减小,并完全消除了对肝脏的肿瘤转移。因此,CD 纳米复合物显示出最高的治疗潜力,代表了一种安全且有前途的针对乳腺癌转移阶段的纳米医学。