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Folate-Chitosan Nanoparticles Loaded with Ursolic Acid Confer Anti-Breast Cancer Activities in vitro and in vivo

机译:叶酸壳聚糖纳米粒子在体外和体内促成尿酸尿酸赋予抗乳腺癌活动

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Ursolic acid (UA) has proved to have broad-spectrum anti-tumor effects, but its poor water solubility and incompetent targeting property largely limit its clinical application and efficiency. Here, we synthesized a nanoparticle-based drug carrier composed of chitosan, UA and folate (FA-CS-UA-NPs) and demonstrated that FA-CS-UA-NPs could effectively diminish off-target effects and increase local drug concentrations of UA. Using MCF-7 cells as in vitro model for anti-cancer mechanistic studies, we found that FA-CS-UA-NPs could be easily internalized by cancer cells through a folate receptor-mediated endocytic pathway. FA-CS-UA-NPs entered into lysosome, destructed the permeability of lysosomal membrane, and then got released from lysosomes. Subsequently, FA-CS-UA-NPs localized into mitochondria but not nuclei. The prolonged retention of FA-CS-UA-NPs in mitochondria induced overproduction of ROS and destruction of mitochondrial membrane potential, and resulted in the irreversible apoptosis in cancer cells. In vivo experiments showed that FA-CS-UA-NPs could significantly reduce breast cancer burden in MCF-7 xenograft mouse model. These results suggested that FA-CS-UA-NPs could further be explored as an anti-cancer drug candidate and that our approach might provide a platform to develop novel anti-cancer drug delivery system.
机译:已经证明熊胆酸(UA)具有广谱抗肿瘤作用,但其水溶解度差和无能的靶向性质在很大程度上限制了其临床应用和效率。在此,我们合成由壳聚糖,UA和叶酸(FA-CS-UA-NPS)组成的基于纳米粒子的药物载体,并证明了Fa-CS-UA-NPS可以有效地减少偏移效应并增加UA的局部药物浓度。使用MCF-7细胞作为抗癌机制研究的体外模型,我们发现FA-CS-UA-NPS可以通过癌细胞通过叶酸受体介导的内吞途径容易地内化。进入溶酶体的FA-CS-UA-NPS,破坏了溶酶体膜的渗透性,然后从溶酶体中释放。随后,将FA-CS-UA-NP归入线粒体但不是核。 Mitochondria诱导ROS过量生产的FA-CS-UA-NPS的延长保留和线粒体膜电位的破坏,导致癌细胞的不可逆凋亡。在体内实验表明,FA-CS-UA-NPS可以显着降低MCF-7异种移植小鼠模型中的乳腺癌负担。这些结果表明,FA-CS-UA-NPS可以进一步探索作为抗癌毒品候选者,并且我们的方法可能提供开发新型抗癌药物输送系统的平台。

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