...
首页> 外文期刊>Nanoscale >Enhancing tumor chemotherapy and overcoming drug resistance through autophagy-mediated intracellular dissolution of zinc oxide nanoparticles
【24h】

Enhancing tumor chemotherapy and overcoming drug resistance through autophagy-mediated intracellular dissolution of zinc oxide nanoparticles

机译:提高肿瘤化疗药物和克服通过autophagy-mediated阻力细胞内溶解氧化锌纳米粒子

获取原文
获取原文并翻译 | 示例

摘要

Autophagy may represent a common cellular response to nanomaterials. In the present study, it was demonstrated that zinc oxide nanoparticle (ZON)-elicited autophagy contributes to tumor cell killing by accelerating the intracellular dissolution of ZONs and reactive oxygen species (ROS) generation. In particular, ZONs could promote Atg5-regulated autophagy flux without the impairment of autophagosome-lysosome fusion, which is responsible for ZON-elicited cell death in cancer cells. On the other hand, a further study revealed that a significant free zinc ion release in lysosomal acid compartments and sequential ROS generation in cells treated with ZONs were also associated with tumor cytotoxicity. Intriguingly, the colocalization between FITC-labeled ZONs and autophagic vacuoles indicates that the intracellular fate of ZONs is associated with autophagy. Moreover, the chemical or genetic inhibition of autophagy significantly reduced the level of intracellular zinc ion release and ROS generation separately, demonstrating that ZON-induced autophagy contributed toward cancer cell death by accelerating zinc ion release and sequentially increasing intracellular ROS generation. The modulation of autophagy holds great promise for improving the efficacy of tumor chemotherapy. Herein, ZONs were verified to enhance chemotherapy in both normal and drug-resistant cancer cells via synergistic autophagy elicitation. Further, this elicitation resulted in tremendous zinc ion release and ROS generation, which accounted for enhancing the tumor chemotherapy and overcoming drug resistance. No obvious changes in the expression level of P-gp proteins or the amount of doxorubicin uptake induced by ZONs in MCF-7/ADR cells also indicated that the increased zinc ion release and ROS generation via synergistic autophagy induction were responsible for overcoming the drug resistance. Finally, in vivo experiments involving animal models of 4T1 tumor cells revealed that the antitumor therapeutic effect of a combinatory administration obviously outperformed those of ZONs or free doxorubicin treatment alone at the same dose, which could be attenuated by the autophagy inhibitor wortmannin or ion-chelating agent EDTA. Taken together, our results reveal the mechanism wherein the autophagy induction by ZONs potentiates cancer cell death and a novel biological application for ZONs in adjunct chemotherapy in which autophagy reinforces zinc ion release and ROS generation.
机译:自噬可能代表一个共同的细胞反应纳米材料。表明,氧化锌纳米颗粒(佐恩)引起自噬对肿瘤加速细胞死亡的细胞内解散区带和活性氧(ROS)的一代。促进Atg5-regulated自噬流量没有autophagosome-lysosome融合的障碍,负责ZON-elicited细胞死亡在癌症细胞。研究显示,一个重要的自由锌离子在溶酶体酸性隔间和发布连续的细胞内ROS生成处理区带也与肿瘤有关细胞毒性。之间FITC-labeled区带和自噬空泡表明细胞内区带的命运与自噬相关。或基因显著抑制自噬减少细胞内锌离子的水平单独发布和活性氧生成,证明ZON-induced自噬了对癌症细胞的死亡加速锌离子释放和顺序增加细胞内ROS生成。调制的自噬拥有更大的潜力提高肿瘤化疗的疗效。在此,区带是加强验证化疗在正常和耐药通过协同自吞噬癌细胞引出。在巨大的锌离子释放和活性氧一代,占增强肿瘤化疗药物和克服阻力。水平P-gp蛋白质或的数量阿霉素引起的吸收区带MCF-7 / ADR细胞还表示,增加的锌离子通过协同释放和ROS生成自噬诱导负责克服耐药性。实验涉及4 t1肿瘤动物模型细胞显示抗肿瘤治疗组合管理效果明显表现的区带或免费阿霉素治疗仅在同一剂量,可以减毒的自噬抑制剂渥曼青霉素或ion-chelating剂EDTA。结果揭示了其中的机制自噬诱导的区带强化癌症细胞死亡和新颖的生物应用在辅助化疗中自噬区带强化锌离子释放和ROS生成。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号