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3篇 您的检索式:作者名="MENG QingShuo"
    题名 作者 年代 出处 被引量
1Integrated dynamic wet spinning of core-sheath hydrogel fibers for optical-to-brain/tissue communications显示文摘Hydrogel optical light-guides have received substantial interest for applications such as deep-tissue biosensors,optogenetic stimulation and photomedicine due to their biocompatibility,(micro)structure control and tissue-like Young’s modulus.However,despite recent developments,large-scale fabrication with a continuous synthetic methodology,which could produce core-sheath hydrogel fibers with the desired optical and mechanical properties suitable for deep-tissue applications,has yet to be achieved.In this study,we report a versatile concept of integrated light-triggered dynamic wet spinning capable of continuously producing core-sheath hydrogel optical fibers with tunable fiber diameters,and mechanical and optical propagation properties.Furthermore,this concept also exhibited versatility for various kinds of core-sheath functional fibers.The wet spinning synthetic procedure and fabrication process were optimized with the rational design of the core/sheath material interface compatibility[core=poly(ethylene glycol diacrylate-co-acrylamide);sheath=Ca-alginate],optical transparency,refractive index and spinning solution viscosity.The resulting hydrogel optical fibers exhibited desirable low optical attenuation(0.18±0.01 d B cm^(-1) with 650 nm laser light),excellent biocompatibility and tissue-like Young’s modulus(<2.60 MPa).The optical waveguide hydrogel fibers were successfully employed for deep-tissue cancer therapy and brain optogenetic stimulation,confirming that they could serve as an efficient versatile tool for diverse deep-tissue therapy and brain optogenetic applications.Guoyin Chen Gang Wang Xinrong Tan Kai Hou Qingshuo Meng Peng Zhao Shun Wang Jiayi Zhang Zhan Zhou Tao Chen Yanhua Cheng D Benjamin S.Hsiao Elsa Reichmanis Meifang Zhu 2021National Science Review2021,8,9:2
2Simultaneous inhibition of tumor growth and angiogenesis for resistant hepatocellular carcinoma by co-delivery of sorafenib and survivin small hairpin RNA显示文摘Shen Jianan Sun Huiping Meng Qingshuo 2014MolPharm2014,11,10:1
3Nanocarriers for siRNA delivery to overcome cancer multidrug resistance显示文摘Multidrug resistance(MDR)is an extremely complexed phenomenon in tumor chemotherapy and is one of the major obstacles for successful treatment.Discovery of RNA interference(RNAi)offers a new strategy with great potential to reverse MDR.Specific genes,which contribute to the emerging of MDR,can be silenced by RNAi.However,many natural barriers have to be overcome for efficient and safe delivery of siRNA.In recent years,the various kinds of nanocarriers,such as liposomes,cationic polymers,and inorganic materials,have been developed to deliver siRNA and show good results in reversing MDR.This review mainly summarizes the barriers in siRNA delivery and recent progress in designing nanotechnology-based siRNA delivery systems to overcome tumor MDR.MENG QingShuo YIN Qi LI YaPing 2013Chinese Science Bulletin2013,58,33:1
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