首页
最新动态 交流合作 科研项目 论文著作 精彩瞬间 招生招聘
  • Neural Stem Cells Transfected with Reactive Oxygen Species-Responsive Polyplexes for Effective Treatment of Ischemic Stroke
  • 来源:申有青教授个人网站 2019-10-27
  • Neural stem cells (NSCs), capable of ischemia-homing, regeneration, and differentiation, exert strong therapeutic potentials in treating ischemic stroke, but the curative effect is limited in the harsh microenvironment of ischemic regions rich in reactive oxygen species (ROS). Gene transfection to make NSCs overexpress brain-derived neurotrophic factor (BDNF) can enhance their therapeutic efficacy; however, viral vectors must be used because current nonviral

    vectors are unable to efficiently transfect NSCs. The first polymeric vector, ROS-responsive charge-reversal poly[(2-acryloyl)ethyl(p-boronic acid benzyl) diethylammonium bromide] (B-PDEA), is shown here, that mediates efficient gene transfection of NSCs and greatly enhances their therapeutics in ischemic stroke treatment. The cationic B-PDEA/DNA polyplexes can effectively transfect NSCs; in the cytosol, the B-PDEA is oxidized by intracellular ROS into negatively charged polyacrylic acid, quickly releasing the BDNF plasmids for efficient transcription and secreting a high level of BDNF. After i.v. injection in ischemic stroke mice, the transfected NSCs (BDNF-NSCs) can home to ischemic regions as efficiently as the pristine NSCs but more efficiently produce BDNF, leading to significantly augmented BDNF levels, which in turn enhances the mouse survival rate to 60%, from 0% (nontreated mice) or ≈20% (NSC-trereated mice), and enables more rapid and superior functional reconstruction.

  • [来源:中国聚合物网]
  • 了解更多请进入: 申有青教授个人网站
相关新闻
  • · Enhanced tumour penetration and prolonged circulation in blood of polyzwitterion–drug conjugates with cell-membrane affinity
  • · Co-delivery of IOX1 and doxorubicin for antibody-independent cancer chemo-immunotherapy
  • · Tumor Extravasation and Infiltration As Barriers of Nanomedicine for High Efficacy: The Current Status and Transcytosis Strategy
  • · Enzyme-Activatable Polymer-Drug Conjugate Augments Tumour Penetration and Treatment Efficacy, Nature Nanotechnology, 2019, 14, 799-809. https://doi.org/10.1038/s41565-019-0485-z

关于我们  |  联系我们  

网站:中国聚合物网

polymer.cn Copyright ©2017