State Key Laboratory of Silkworm Genome Biology, College of Sericulture, Textile and Biomass Sciences, Southwest University, Beibei, Chongqing, 400715, China.
Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, School of Materials and Energy, Southwest University, Beibei, Chongqing, 400715, China.
J Nanobiotechnology. 2023 Jan 4;21(1):6. doi: 10.1186/s12951-022-01755-5.
While several artificial nanodrugs have been approved for clinical treatment of breast tumor, their long-term applications are restricted by unsatisfactory therapeutic outcomes, side reactions and high costs. Conversely, edible plant-derived natural nanotherapeutics (NTs) are source-widespread and cost-effective, which have been shown remarkably effective in disease treatment. Herein, we extracted and purified exosome-like NTs from tea leaves (TLNTs), which had an average diameter of 166.9 nm and a negative-charged surface of - 28.8 mV. These TLNTs contained an adequate slew of functional components such as lipids, proteins and pharmacologically active molecules. In vitro studies indicated that TLNTs were effectively internalized by breast tumor cells (4T1 cells) and caused a 2.5-fold increase in the amount of intracellular reactive oxygen species (ROS) after incubation for 8 h. The high levels of ROS triggered mitochondrial damages and arrested cell cycles, resulting in the apoptosis of tumor cells. The mouse experiments revealed that TLNTs achieved good therapeutic effects against breast tumors regardless of intravenous injection and oral administration through direct pro-apoptosis and microbiota modulation. Strikingly, the intravenous injection of TLNTs, not oral administration, yielded obvious hepatorenal toxicity and immune activation. These findings collectively demonstrate that TLNTs can be developed as a promising oral therapeutic platform for the treatment of breast cancer.
虽然已有几种人工纳米药物被批准用于临床治疗乳腺癌,但由于治疗效果不理想、副作用和成本高等问题,其长期应用受到限制。相比之下,可食用植物来源的天然纳米治疗剂(NTs)来源广泛且具有成本效益,在疾病治疗中已显示出显著的效果。在此,我们从茶叶中提取并纯化了类胞外体 NTs(TLNTs),其平均直径为 166.9nm,表面带负电荷为-28.8mV。这些 TLNTs 含有足够的功能成分,如脂质、蛋白质和具有药理活性的分子。体外研究表明,TLNTs 可被乳腺癌细胞(4T1 细胞)有效内化,并在孵育 8 小时后使细胞内活性氧(ROS)的含量增加 2.5 倍。高水平的 ROS 引发线粒体损伤并阻止细胞周期,导致肿瘤细胞凋亡。小鼠实验表明,TLNTs 无论通过静脉注射还是口服给药,都能通过直接促进细胞凋亡和调节肠道菌群来发挥良好的治疗乳腺癌的作用。值得注意的是,静脉注射 TLNTs 而非口服给药会导致明显的肝肾功能毒性和免疫激活。这些发现共同表明,TLNTs 可被开发为治疗乳腺癌的一种有前途的口服治疗平台。