谷氨酰胺
化学
微泡
癌细胞
转移
糖酵解
体内
脂质体
癌症研究
药理学
生物化学
癌症
细胞生物学
新陈代谢
医学
生物
内科学
小RNA
生物技术
基因
氨基酸
作者
Ming Wu,Qizhi Wang,Sai Chen,Zhanwei Zhou,Jing Li,Honghao Sun,Jiali Liu,Guangji Wang,Fang Zhou,Minjie Sun
标识
DOI:10.1016/j.jconrel.2022.07.034
摘要
The growth and rapid proliferation of tumor cells depend on both glycolysis and glutamine metabolism, leading to metabolic compensation. Here, dual inhibition on the metabolic plasticity by Glucose oxidase and Telaglenastat loaded liposome ([email protected]&Tel) were studied for intervening metabolic pathway on energy and material against breast cancer. [email protected]&Tel targeting inhibited the two nutrient supply mechanisms employed by tumor cells, reducing the supply of ATP production and biosynthesis precursors essential necessary for tumor, thereby eliciting anti-tumor and anti-metastasis effect. Meanwhile, [email protected]&Tel ingeniously amplify the therapeutic effect by up-regulating ROS and down-regulating GSH to disrupt redox homeostasis, thus resulting in inspiring 82% tumor suppression rate on 4 T1 tumor model. Moreover, our study solved the limitation of combination between protein drugs and small molecule drugs in vivo by using liposome nanoparticles with clinical translation value. In short, this work provides a unique perspective of nanomedicine for treating diseases from metabolic intervention.
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