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国家自然科学基金(21334001)

作品数:3 被引量:16H指数:2
相关作者:李会亚江力陈道勇更多>>
相关机构:复旦大学上海医学院苏州大学复旦大学更多>>
发文基金:国家自然科学基金更多>>
相关领域:医药卫生理学更多>>

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Superparticles Formed by Amphiphilic Tadpole-like Single Chain Polymeric Nanoparticles and Their Application as an Ultrasonic Responsive Drug Carrier
2017年
Herein, we report self-assembly of tadpole-like single chain polymeric nanoparticles (TPPs) and the ultrasonic response of the resultant superparticles. The TPPs are with an intramolecularly crosslinked poly(2-(methacryloyloxy)ethyl pent-4-ynoate)-rpoly(hydroxyethyl methacrylate) (PMAEP-r-PHEMA) chain as the "head" and a poly(2- (dimethylamino)ethyl methacrylate (PDMAEMA) linear chain as the "tail", and are pre- pared simply and emciently by Glaser-coupling of the pendant alkynes in the PMAEP-r- PHEMA block in the common solvent methanol. The formation of the TPPs was confirmed by gel permeation chromatograph, nuclear magnetic resonance spectroscopy, dynamic light scattering, static dynamic scattering, and transmission electron microscopy. In aqueous solution, the amphiphilic TPPs could self-assemble into regular superparticles, driven by aggregation of the hydrophobic "heads". Since in the structure there is no chain entanglement and the embedding of PDMAEMA chains disturb close-packing of the "heads", the superpartieles are responsive to a low-energy ultrasonic vibration, as evidenced by greatly enhanced release of the functional molecules from the superparticles by treatment of a low-energy ultrasound. Therefore, the superparticles should be very promising in the use as the drug carriers that can be manipulated from a long distance, considering that ultrasonic energy can be focused at a small area in a relatively long distance from the ultrasound-radiating source.
江力李会亚陈道勇
接头蛋白STING介导信号通路在抗病毒感染中的研究进展被引量:2
2019年
干扰素基因刺激蛋白(stimulator of interferon gene,STING)是一种介导胞内DNA诱导固有免疫应答的重要接头蛋白,在机体抗病毒免疫反应中起关键作用。宿主细胞通过模式识别受体(pattern recognition receptor,PRR)识别入侵病原体的DNA,将信号传递给STING,导致TANK连接激酶1(TANK-binding kinase 1,TBK1)和干扰素调控因子3(interferon regulatory factor 3,IRF3)磷酸化,从而促进Ⅰ型IFN的上调表达,进而抑制病毒复制。文章介绍了STING分子的结构、转导通路以及分子调控机制,重点概述STING介导的信号通路在抗病毒感染中的作用以及病毒对该信号通路的调控机制,以期为抗病毒药物的研究提供新的靶点和思路。
孙文轩熊思东高波
关键词:固有免疫接头蛋白DSDNA
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