2013.10.03,陈林教授组汪铭副教授和温龙平教授研究组合作在Biomaterials在线发表论文:The role of elevated autophagy on the synaptic plasticity impairment caused by CdSe/ZnS quantum dots

时间:2021-04-12 21:22:02学院:生命科学学院学校:中国科学技术大学

Author:Liang Chen, 1 Yanyan Miao, 1 Lin Chen, Peipei Jin, Yingying Zha, Yuming Chai, Fang Zheng , Yunjiao Zhang , Wei Zhou , Jigui Zhang, Longping Wen *and Ming Wang * 
Abstract:It is well known that autophagy, a cellular stress response to degrade damaged components, can be activated by many nanoparticles. We have demonstrated that CdSe/ZnS quantum dots (QDs), which are widely applied in vitro for diagnostics and cellular imaging, can impair synaptic transmission and synaptic plasticity in the dentate gyrus (DG) area, but the mechanism is still unclear. Here we show that elevated autophagy is at least partly responsible for this synaptic dysfunction induced by QDs in vivo. QDs elicited autophagy in the HeLa cells and cultured hippcampal neurons as well, accompanied with GFP-light chain protein 3 (LC3) puncta dots and autophagosome formation, extensive conversion of LC3-I to LC3-II and a significant decrease of p62. Furthermore, we found that autophagy inhibitors (wortmannin, 3-MA or chloroquine) suppressed QDs-induced autophagic flux, partly blocked LTP impairment, coincident with down-regulation of synapsin-I and synapse deficits by QDs in the hippocampal CA1 area. Our studies have important implications in providing a potential clinical remedy for brain damage caused by nanomaterials and in designing safer nanoparticles.



版权与免责声明:本网页的内容由收集互联网上公开发布的信息整理获得。目的在于传递信息及分享,并不意味着赞同其观点或证实其真实性,也不构成其他建议。仅提供交流平台,不为其版权负责。如涉及侵权,请联系我们及时修改或删除。邮箱:sales@allpeptide.com

返回首页 浙公网安备 33010602009704号;浙ICP备18001318号