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中国科学院上海高等研究院导师教师师资介绍简介-王会

本站小编 Free考研考试/2021-02-14

id:115
tutorAreaId:7
name:王会
phone:
sex:0
post:
title:副研究员
address:上海市浦东新区海科路100号9B楼508
zipCode:201210
email:wanghui01@sari.ac.cn
headImgUrl:/upload/**/202007**.jpg
resume: 2012-2016 年在同济大学获得材料科学与工程博士学位,期间在美国密苏里科技大学作为访问学生学习,2017年加入上海高等研究院。聚焦于生物化工、医用材料及功能纳米材料的研究开发,在纳米、微米生物医用材料领域已经具备丰富的理论知识研究经验。同时与同济大学、深圳大学、新加坡义安理工、上海交通大学附属第六人民医院等单位保持长期良好合作关系。近年来以第一作者或通讯作者在Biomaterials,Chemical engineering Journal,Journal of Materials Chemistry B等国际著名期刊发表多篇SCI论文。

yjly:1.生物化工
2.医用材料
3.功能纳米材料

jljry:
cdky:1.国家青年科学基金,“3D打印MoS2复合生物活性玻璃支架的制备及其抗肿瘤/骨修复协同一体化研究”,项目负责人,2019.1-2021.12
2.中国科学院青年创新促进会,中科院人才项目,项目负责人,2020.1-2023.12
3.企业项目/横向,绿色合成化学工艺联合开发,项目负责人,2018.12-2021.11
4.国家自然科学基金面上,“三维打印低氧模拟硼酸盐生物玻璃支架的激活HIF-1α信号通路治疗激素性股骨头坏死”,参与2017.1-2020.12
5.上海市自然科学基金,“3D仿生角质层屏障功能皮肤的构建及其活性物质传导机制的研究”,参与,2017.5-2020.4

dblz:1. 文章:
第一作者(*),通讯作者(#)
[1] Wang Hui#, Zeng X, Pang L. Integrative treatment of anti-tumor/bone repairing by combination of MoS2 nanosheets with 3D printed bioactive borosilicate glass scaffolds [J]. Chemical Engineering Journal, 2020 (DOI:10.1016/j.cej.2020.125081.)
[2] Wang Hui#, Deng Z, Lin B. A novel vehicle-like drug delivery 3D printing scaffold and its applications for a rat femoral bone repairing in vitro and in vivo, International Journal of Biological Sciences, 2020, 16(16): 1821-1832.
[3] Lin B, Hu H, Deng Z, Wang Hui#. Novel bioactive glass cross-linked PVA hydrogel with enhanced osteogenesis properties and application in mice chondrocytes for cartilage repair [J]. Journal of Non-crystalline Solids, 2019
[4] Pang L, Shen Y, Hu H, Hui Wang#, Deping Wang. Chemically and physically cross-linked polyvinyl alcohol-borosilicate gel hybrid scaffolds for bone regeneration[J]. Materials Science and Engineering: C, 2019, 105: 110076.
[5] Deng Z, Lin B, Jiang Z, Hui Wang#. Hypoxia-Mimicking Cobalt-Doped Borosilicate Bioactive Glass Scaffolds with Enhanced Angiogenic and Osteogenic Capacity for Bone Regeneration[J]. International Journal of Biological Sciences, 2019, 15(6): 1113.
[6] Qi X, Wang H*, Zhang Y, et al. Mesoporous bioactive glass-coated 3D printed borosilicate bioactive glass scaffolds for improving repair of bone defects[J]. International journal of biological sciences, 2018, 14(4): 471.
[7] Wang H*, Zhao S, Xiao W, et al. Influence of Cu doping in borosilicate bioactive glass and the properties of its derived scaffolds[J]. Materials Science and Engineering: C, 2016, 58: 194-203.
[8] Wang H*, Zhao S, Zhou J, et al. Biocompatibility and osteogenic capacity of borosilicate bioactive glass scaffolds loaded with Fe3O4 magnetic nanoparticles.[J] Journal of Materials Chemistry B, 2015.
[9] Wang H*, Zhao S, Zhou J, et al. Evaluation of borate bioactive glass scaffolds as a controlled delivery system for copper ions in stimulating osteogenesis and angiogenesis in bone healing [J]. Journal of Materials Chemistry B, 2014, 2(48): 8547-8557.
[10] Wang H*, Zhao S, Zhou J, et al. Three-dimensional zinc incorporated borosilicate bioactive glass scaffolds for rodent critical-sized calvarial defects repair and regeneration [J] Colloid and surface biointerface B. 2015
[11] Zhao S, Li L, Wang H*, et al. Novel copper-containing borate bioactive glass nanofibers as wound dressing to stimulate angiogenesis for healing full-thickness skin defects of rats [J]. Biomaterials, 2015, 53: 379-391.
[12] Hui W*, Deping W, Wenhai H, et al. Properties of Antibacterial and Bone Repair Borate Bioglass Scaffold [J]. Rare metal materials and engineering, 2014,43:54-58.
[13] Wang H*, Zhao S, Cui X, et al. Evaluation of Silver ions doped Borate Bioactive Glass Scaffolds for bone repair: Biodegradability, Biocompatibility and Antibacterial Activity. Journal of material research. 2015, 30(18): 2722-2735.
[14] Zhou J, Wang H*, Li le et al. Comparison of silicate 45S5 bioglass and borate glass micro-fiber for skin healing by in vitro and in vivo [J]. Material science and engineering C


2. 专利
[1] 一种油水界面制备超稳定的四氧化三铁纳米颗粒的方法。授权4.6
[2] 一种油水界面法制备油溶性四氧化三铁纳米颗粒的方法。授权6.8
[3] 一种高力学性能的生物活性仿真软骨水凝胶及其制备法和应用。申请号:4.3

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mender:518
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tutorNo:1234
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