Fructose-coated Angstrom silver inhibits osteosarcoma growth and metastasis via promoting ROS-dependent apoptosis through the alteration of glucose metabolism by inhibiting PDK

果糖包覆的埃银通过抑制 PDK 改变葡萄糖代谢,促进 ROS 依赖性细胞凋亡,从而抑制骨肉瘤的生长和转移

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作者:Xiong-Ke Hu, Shan-Shan Rao, Yi-Juan Tan, Hao Yin, Ming-Jie Luo, Zhen-Xing Wang, Jin-Hua Zhou, Chun-Gu Hong, Zhong-Wei Luo, Wei Du, Ben Wu, Zi-Qi Yan, Ze-Hui He, Zheng-Zhao Liu, Jia Cao, Yang Wang, Wei-Yi Situ, Hao-Ming Liu, Jie Huang, Yi-Yi Wang, Kun Xia, Yu-Xuan Qian, Yan Zhang, Tao Yue, Yi-Wei Liu

Conclusion

Our study suggests the promising prospect of F-AgÅPs as a powerful selective anticancer agent for osteosarcoma therapy.

Methods

A modified method was developed to prepare smaller F-AgÅPs. The anti-tumor, anti-metastatic and pro-survival efficacy of F-AgÅPs and their toxicities on healthy tissues were compared with that of cisplatin (a first-line chemotherapeutic drug for osteosarcoma therapy) in subcutaneous or orthotopic osteosarcoma-bearing nude mice. The pharmacokinetics, biodistribution and excretion of F-AgÅPs were evaluated by testing the levels of silver in serum, tissues, urine and feces of mice. A series of assays in vitro were conducted to assess whether the induction of apoptosis mediates the killing effects of F-AgÅPs on osteosarcoma cells and whether the alteration of glucose metabolic phenotype contributes to F-AgÅPs-induced apoptosis.

Results

The newly obtained F-AgÅPs (9.38 ± 4.11 nm) had good stability in different biological media or aqueous solutions and were more effective than cisplatin in inhibiting tumor growth, improving survival, attenuating osteolysis and preventing lung metastasis in osteosarcoma-bearing nude mice after intravenous injection, but were well tolerated in normal tissues. One week after injection, about 68% of F-AgÅPs were excreted through feces. F-AgÅPs induced reactive oxygen species (ROS)-dependent apoptosis of osteosarcoma cells but not normal cells, owing to their ability to selectively shift glucose metabolism of osteosarcoma cells from glycolysis to mitochondrial oxidation by inhibiting pyruvate dehydrogenase kinase (PDK).

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