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[专家学者] 中国科学院上海硅酸盐研究所陈雨

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发表于 2017-9-21 10:01:21 | 只看该作者 |只看大图 回帖奖励 |倒序浏览 |阅读模式
陈雨,男,1984年生,国家自然科学基金优秀青年基金获得者,国家万人计划青年拔尖人才,上海市优秀学术带头人,中国科学院上海硅酸盐研究所“所百人计划”入选者,高性能陶瓷和超微结构国家重点实验室研究员、博士生导师、国家重点研发计划“青年科学家”专项首席科学家(纳米专项)。曾先后荣获“上海市自然科学一等奖”、“中科院上海分院杰出青年”、“首届中国科学院卓越青年科学家”、“上海市青年科技启明星(A类)”、“上海市青年拔尖人才”、“首届中国科协青年人才托举工程”、“上海市人才发展基金计划”、“中国科学院卢嘉锡青年人才奖”等。陈雨共发表论文130余篇,包括Nat. Commun., Nat. Chem. Biol., Chem. Soc. Rev.(2篇), Acc. Chem. Res., Adv. Mater.(18篇), J. Am. Chem. Soc.(5篇), Angew. Chem. Int. Ed., Nano Letters, Adv. Funct. Mater.(6篇), ACS Nano(6篇), Nano Today, Biomaterials(18篇)等,第一/通讯作者论文中影响因子(IF)大于10的论文36篇,论文被引用7800余次,H-index为45。


姓 名:陈雨        
性    别:男
专家类别:研究员,优青        
学 历:博士
电 话:021-52412639        
传 真:021-52413903
电子邮件:chenyu@mail.sic.ac.cn        
个人主页:无
邮政编码:200050        
通讯地址:上海市定西路1295号        
简历:
教育经历:(只精确到年份,从大学开始写起)
2007 - 2012,中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,博士,
2003 - 2007,南京工业大学,材料科学院与工程学院,学士
工作经历:(只精确到年份,包含国外的工作经历)
2016 – 至今,中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,特聘研究员,博士生导师
2014 – 2016,中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,副研究员(所百人计划)
2012 - 2014,中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,助理研究员  
曾获得奖励、荣誉称号:
(1)     国家自然科学基金优秀青年基金获得者
(2)     国家重点研发计划“青年科学家”专项负责人
(3)     上海市自然科学一等奖(4/5)
(4)      上海市青年科技启明星
(5)     上海市青年拔尖人才
(6)     上海市人才发展基金
(7)     中国化学会青年人才托举工程
(8)     中国科学院卢嘉锡青年人才奖
(9)     中国科学院优秀博士学位论文
(10) 中国科学院院长特别奖
(11) 上海市长宁区十佳青年创新个人
(12) 中国科学院上海分院青年五四奖章
(13) 上海市科教系统青年五四奖章
(14) 上海市优秀毕业生
(15) 中科院上海硅酸盐研究所“青年才俊奖”、“优秀个人奖”、“优秀共产党员”等
科研工作简介:
陈雨的主要研究工作围绕生物医用微/纳功能材料的可控制备、生物学效应及其在生物医学中的应用,发展了多种新型的制备方法获得了一系列具有临床应用前景的生物材料体系。陈雨共发表论文110余篇,包括Nature Communications, Nature Chemical Biology, Chem. Soc. Rev., Acc. Chem. Res., Adv. Mater.(14篇), J. Am. Chem. Soc.(4篇), Angew. Chem. Int. Ed., Nano Letters, Adv. Funct. Mater.(5篇), ACS Nano(5篇), Nano Today, NPG Asia Mater., Small(3篇), Biomaterials(15篇), Materials Horizons等,其中影响因子大于10的论文36篇。论文被引用6000余次,H-index为40。11篇论文被Chem. Soc. Rev., Adv. Mater., Adv. Funct. Mater等期刊选为封面或内插画文章发表,10篇论文入选ESI高引用论文(Highly Cited Paper),获得授权国家发明专利6项。
学术兼职:
(1)中国超声医学工程学会超声分子影像学专业委员会委员
(2)中国科学院青年联合会委员
(3)中国科学院青年创新促进会会员
(4)《Materials Today Chemistry》Editorial Board Member
(5)《Chinese Chemical Letters》青年编委
主持的科研项目:
(1)     国家自然科学基金优秀青年基金
(2)     国家重点研发计划“纳米专项”青年科学家项目
(3)     国家自然科学基金面上项目
(4)     国家自然科学基金青年基金
(5)     中国科学院卓越青年科学家项目
(6)     中国化学会青年人才托举工程项目
(7)     上海市青年科技启明星(A类)项目
(8)     上海市自然科学基金青年基金
(9)     上海市青年拔尖人才项目
(10) 上海市人才发展基金项目
(11) 中国科学院青年创新促进会资助
(12) 中国科学院上海硅酸盐研究所所百人计划项目
(13) 国家重点实验室主任青年基金项目
(14) 中国科学院上海硅酸盐研究所所创新项目
(15) 中科院卢嘉锡青年人才奖配套所创新项目
科研成果:
【1】出版专著和章节
(1)      Yu Chen, 《Design, Synthesis, Multifunctionalization and Biomedical Applications of Multifunctional Mesoporous Silica-Based Drug Delivery Nanosystems》, Springer Press, ISBN 978-3-662-48622-1. (Springer Theses)
(2)      Yu Chen, Ming Ma, Hangrong Chen and Jianlin Shi, Multifunctional Hollow Mesoporous Silica Nanoparticles for MR/US Imaging-Guided Tumor Therapy, 《Advances in Nanotheranostics》, Volume 7, pp. 189-222, Springer Press.
(3)      Yu Chen, Shengjian Zhang, Chapter 15, Mesoporous Silica-Based Hybrid Nanosystems for Magnetic Resonance Imaging-Based Cancer Theranostics, 《Hybrid Nanomaterials: Design, Synthesis, and Biomedical Applications》, pp. 393-414, CRC Press.
(4)      Qianjun He, Yu Chen and Jianlin Shi, Chapter 10: Biomedical applications and biological effects of mesoporous silica nanoparticles, 《Chemistry of Nanoporous Materials》 (pp. 324-355). China: Science Press.
(5)      陈雨、陈航榕,第十章第一节:聚焦超声治疗增效剂,《超声分子影像》,pp595-609,科学出版社


【2】    代表性学术论文
2017年
(1)    Minfeng Huo, Liying Wang, Yu Chen* and Jianlin Shi,* Tumor-selective catalytic nanomedicine by nanocatalyst delivery, Nature Communications, 2017, 8, 357.
(2)    Haiming Jiang, Rong Deng, Xiuyan Yang, Jialin Shang, Shaoyong Lu, Yanlong Zhao, Kun Song, Xinyi Liu, Qiufen Zhang, Yu Chen, Y Eugene Chinn, Geng Wu, Jian Li, Guoqiang Chen, Jianxiu Yu and Jian Zhang, Nature Chemical Biology, 2017, DOI: 10.1038/nchembio.2442
(3)    Ping Huang, Xiaoqin Qian, Yu Chen,* Luodan Yu, Han Lin, Liying Wang, Yufang Zhu,* and Jianlin Shi,* Metalloporphyrin-encapsulated Biodegradable Nanosystems for Highly Efficient MRI-Guided Sonodynamic Cancer Therapy, Journal of the American Chemical Society, 2017, 139(3), 1275–1284.
(4)    Han Lin, Xingang Wang, Luodan Yu, Yu Chen,* and Jianlin Shi,* Two-Dimensional Ultrathin MXene Ceramic Nanosheets for Photothermal Conversion, Nano Letters, 2017, 2017, 17 (1), 384–391.
(5)    Hailin Tang, Yuanyi Zheng,* and Yu Chen,* Materials Chemistry of Nanoultrasonic Biomedicine, Advanced Materials, 2017, 20(10), 1604105.
(6)    Chen, Dai, Shengjian Zhang,* Zhuang Liu, Rong Wu* and Yu Chen,* Two-Dimensional Graphene Augments Nanosonosensitized Sonocatalytic Tumor Eradication, ACS Nano, 2017, DOI: 10.1021/acsnano.7b05215.
(7)    Ping Huang, Yu Chen,* Han Lin, Luodan Yu, Linlin Zhang, Liying Wang, Yufang Zhu* and Jianlin Shi,* Molecularly organic/inorganic hybrid hollow mesoporous organosilica nanocapsules with tumor-specific biodegradability and enhanced chemotherapeutic functionality, Biomaterials, 2017, 125, 23-37.
(8)    Lijun Sun, Dangge Wang, Yu Chen,* Liying Wang, Ping Huang, Yaping Li,* Ziwei Liu, Heliang Yao and Jianlin Shi,* Core-shell hierarchical mesostructured silica nanoparticles for gene/chemo-synergetic stepwise therapy of multidrug-resistant cancer, Biomaterials, 2017, 133, 219-228.
(9)    Xiaoqin Qian, Xiaoxia Han and Yu Chen,* Insights into the unique functionality of inorganic micro/nanoparticles for versatile ultrasound theranostics, Biomaterials, 2017, 142, 13-30.
(10)Xiaoqin Qian, Zi Gu* and Yu Chen,* Two-dimensional black phosphorus nanosheets for theranostic nanomedicine, Materials Horizons, 2017, 4, 800-816.
(11)Yang Zhou, Xiaoxia Han, Xiangxiang Jing* and Yu Chen,* Construction of Silica-Based Micro/Nanoplatforms for Ultrasound Theranostic Biomedicine, Advanced Healthcare Materials, 2017, DOI: 10.1002/adhm.201700646.
(12)Liying Wang, Minfeng Huo, Yu Chen* and Jianlin Shi, Advanced Healthcare Materials, 2017, In press.
(13)Lu Yang, Juan Cheng, Yulin Chen, Shengjie Yu., Fengqiu Liu, Yang Sun, Yu Chen* and Haitao Ran,* Phase-Transition Nanodroplets for Real-Time Photoacoustic/Ultrasound Dual-Modality Imaging and Photothermal Therapy of Sentinel Lymph Node in Breast Cancer, Scientific Reports, 2017, doi:10.1038/srep45213.
(14)Yang Zhou, Xiangxiang Jing* and Yu Chen,* Material chemistry of graphene oxide-based nanocomposites for theranostic nanomedicine, Journal of Materials Chemistry B, 2017, 5, 6451-6470. (Invited Review)
(15)Luodan Yu, Yu Chen* and Hangrong Chen,* H2O2-responsive theranostic nanomedicine, Chinese Chemical Letters, 2017, DOI: 10.1016/j.cclet.2017.05.023. (Invited Review)
(16)Guiju Tao, Zhengyuan Bai, Yu Chen,* Heliang Yao, Meiying Wu, Ping Huang, Luodan Yu, Jiamin Zhang, Chen Dai and Long Zhang,* Generic synthesis and versatile applications of molecularly organic–inorganic hybrid mesoporous organosilica nanoparticles with asymmetric Janus topologies and structures, Nano Research, 2017, DOI: 10.1007/s12274-017-1592-5.
(17)Tianzhi Liu, Nan Zhang, Zhigang Wang, Meiying Wu, Yu Chen, Ming Ma, Hangrong Chen, and Jianlin Shi, Endogenous Catalytic Generation of O2 Bubbles for In Situ Ultrasound-Guided High Intensity Focused Ultrasound Ablation, ACS Nano, 2017, DOI: 10.1021/acsnano.7b03772.
(18)Ronghui Wang, Yang Zhou, Ping Zhang, Yu Chen, Wei Gao, Jinshun Xu, Hangrong Chen, Xiaojun Cai, Kun Zhang, Pan Li, Zhigang Wang, Bing Hu, Tao Ying, Yuanyi Zheng, Phase-transitional Fe3O4/perfluorohexane Microspheres for Magnetic Droplet Vaporization, Theranostics, 2017, 7(4), 846.

2016年
(1)     Luodan Yu, Yu Chen,* Meiying Wu, Xiaojun Cai, Heliang Yao, Linlin Zhang, Hangrong Chen* and Jianlin Shi,* “Manganese Extraction” Strategy Enables Tumor-Sensitive Biodegradability and Theranostics of Nanoparticles, Journal of the American Chemical Society, 2016, 138(31), 9881-9894.
(2)     Yu Chen* and Jianlin Shi*, Chemistry of Mesoporous Organosilica in Nanotechnology: Molecularly Organic-Inorganic Hybridization into Framework, Advanced Materials, 2016, 28, 3235-3272.
(3)     Xiaoqin Qian, Yuanyi Zheng* and Yu Chen,* Micro/nanoparticle-augmented sonodynamic therapy: breaking the depth shallow of photoactivation, Advanced Materials, 2016, 28(37), 8097-8129.
(4)     Meiying Wu, Qingshuo, Meng, Yu Chen,* Lingxia Zhang, Mengli Li, Xiaojun Cai, Yaping Li,* Pengcheng Yu, Linlin Zhang and Jianlin Shi,* Large Pore-Sized Hollow Mesoporous Organosilica for Redox-Responsive Gene Delivery and Synergistic Cancer Chemotherapy, Advanced Materials, 2016, 28, 1963-1969.
(5)     Yu Chen,* Lianzhou Wang and Jianlin Shi, Two-dimensional Nano-carbonaceous Materials-enabled Efficient Photothermal Cancer Therapy, Nano Today, 2016, 11(3), 292-308.
(6)     Yang Zhou, Yu Chen,* Yuanyi Zheng,* et al, Magnetic Nanoparticle-Promoted Droplet Vaporization for In Vivo Stimuli-Responsive Cancer Theranostics, NPG Asia Materials, 2016, 8, e313; doi:10.1038/am.2016.146.
(7)     Minfeng Huo, Yu Chen* and Jianlin Shi,* Triggered-release drug delivery nanosystems for cancer therapy by intravenous injection: where are we now?, Expert Opinion on Drug Delivery, 2016, 13(9), 1195-1198.
(8)     Jinshun Xu, Yu Chen,* Liming Deng, Jianxin Liu, Yang Cao, Pan Li, Haitao Ran, Yuanyi Zheng* and Zhigang Wang,* Microwave-Activated Nanodroplet Vaporization for Highly Efficient Tumor Ablation with Real-time Monitoring Performance, Biomaterials, 2016, 106, 264-275.
(9)     Kai Zhu, Meiying Wu, H. Lai, C. Guo, Jun Li, Yulin Wang, Yu Chen,* Chunsheng Wang,* Jianlin Shi,* Nanoparticle-enhanced generation of gene-transfected mesenchymal stem cells for in vivo cardiac repair, Biomaterials, 2016, 74, 188-199.
(10) Yufeng You, Zhigang Wang, Haitao Ran, Yuanyi Zheng, Dong Wang, Jinshun Xu, Zhibiao Wang, Yu Chen* and Pan Li,* Nanoparticle-enhanced synergistic HIFU ablation and transarterial chemoembolization for efficient cancer therapy, Nanoscale, 2016, 8, 4324-4339.
(11) Shige Wang, Jiulong Zhao, Fei Hu, Xiang Li, Xiao An,* Shilin Zhou, Yu Chen,* and Mingxian Huang,* Phase-changeable and bubble-releasing implants for highly efficient HIFU-responsive tumor surgery and chemotherapy, Journal of Materials Chemistry B, 2016, 4, 7368-7378.
(12) Hongshi Ma, Chuan Jiang, Dong Zhai, Yongxiang Luo, Yu Chen, Fang Lv, Zhengfang Yi, Yuan Deng, Jinwu Wang, Jiang Chang, Chengtie Wu, A bifunctional biomaterial with photothermal effect for tumor therapy and bone regeneration, Advanced Functional Materials, 26(8), 1197-1208.
(13) Xiaoxia Zhou, Lisong Chen, Gang Wan, Yu Chen, Qinglu Kong, Hangrong Chen, Jianlin Shi, Low Pt‐Loaded Mesoporous Sodium Germanate as a High‐Performance Electrocatalyst for the Oxygen Reduction Reaction, ChemSusChem, 9(17), 2337-2342.

2015年
(1)    Yu Chen, Chaoliang Tan, Hua Zhang* and Lianzhou Wang,* Two-dimensional graphene analogues for biomedical applications, Chemical Society Reviews, 2015, 44, 2681-2701.
(2)    Shige Wang, Yu Chen,* X. Li, W. Gao, L. Zhang, J. Liu, Y. Zheng, Hangrong Chen,* Jianlin Shi, Injectable 2D MoS2‐Integrated Drug Delivering Implant for Highly Efficient NIR‐Triggered Synergistic Tumor Hyperthermia, Advanced Materials, 2015, 27, 7117-7122.
(3)    Meiying Wu, Qingshuo Meng, Yu Chen,* Yanyan Du, Lingxia Zhang, Yaping Li,* Linlin Zhang, Jianlin Shi,* Large-Pore Ultrasmall Mesoporous Organosilica Nanoparticles: Micelle/Precursor Co-templating Assembly and Nuclear-Targeted Gene Delivery, Advanced Materials, 2015, 27, 215-222.
(4)    Yu Chen, Hangrong Chen* and Jianlin Shi,* Nanobiotechnology Promotes Noninvasive High-Intensity Focused Ultrasound Cancer Surgery, Advanced Healthcare Materials, 2015, 4, 158-165.
(5)    Yu Chen* and Jianlin Shi,* Mesoporous Carbon Biomaterials, SCIENCE CHINA Materials, 2015, 58, 241-257.
(6)    Shengjian Zhang, Xiaoqin Qian, Linlin Zhang, Weijun Peng,* Yu Chen,* Composition–property relationships in multifunctional hollow mesoporous carbon nanosystems for PH-responsive magnetic resonance imaging and on-demand drug release, Nanoscale, 2015, 7, 7632-7643.
(7)    Shige Wang, Kai Li, Yu Chen, Hangrong Chen, Ming Ma, Jingwei Feng, Qinghua Zhao, Jianlin Shi, Biocompatible PEGylated MoS2 nanosheets: Controllable bottom-up synthesis and highly efficient photothermal regression of tumor, Biomaterials, 2015, 39, 206-217.
(8)    Juan Mou, Pei Li, Chengbo Liu, Huixiong Xu, Liang Song, Jin Wang, Kun Zhang, Yu Chen, Jianlin Shi, Hangrong Chen, Ultrasmall Cu2-xS Nanodots for Highly Efficient Photoacoustic Imaging‐Guided Photothermal Therapy, Small, 2015, 11(19), 2275-2283.
(9)    Shige Wang, Xiang Li, Yu Chen, Xiaojun Cai, Heliang Yao, Wei Gao, Yuanyi Zheng, Xiao An, Jianlin Shi, Hangrong Chen, A Facile One‐Pot Synthesis of a Two‐Dimensional MoS2/Bi2S3 Composite Theranostic Nanosystem for Multi‐Modality Tumor Imaging and Therapy, Advanced Materials, 2015, 27(17), 2775-2782.

2014年
(1)    Yu Chen, Hangrong Chen and Jianlin Shi, Construction of Homogenous/Heterogeneous Hollow Mesoporous Silica Nanostructures by Silica-Etching Chemistry: Principles, Synthesis and Applications, Accounts of Chemical Research, 2014, 47, 125-137.
(2)    Yu Chen, Qingshuo Meng, Meiying, Wu, Shige Wang, Pengfei Xu, Hangrong Chen, Yaping Li, Lingxia Zhang, Lianzhou Wang and Jianlin Shi, Hollow Mesoporous Organosilica Nanoparticles: A Generic Intelligent Framework-Hybridization Approach for Biomedicine, Journal of the American Chemical Society, 2014, 136, 16326-16334.
(3)    Yu Chen, Pengfei Xu, Meiying Wu, Qingshuo Meng, Hangrong Chen, Zhu Shu, Jin Wang, Lingxia Zhang, Yaping Li and Jianlin Shi, Colloidal RBCs-Shaped, Hydrophilic and Hollow Mesoporous Carbon Nanocapsules for Highly Efficient Biomedical Engineering, Advanced Materials, 2014, 26, 4294-4301.
(4)    Yu Chen, Ling Jiang, Ronghui Wang, Ming Lu, Qunxia Zhang, Yang Zhou, Zhigang Wang, Guangming Lu, Ping Liang, Haitao Ran, Hangrong Chen and Yuanyi Zheng, Injectable Smart Phase-Transformation Implants for Highly Efficient In Vivo Magnetic-Hyperthermia Regression of Tumors, Advanced Materials, 2014, 26, 7468-7473.
(5)    Yu Chen, Delai Ye, Meiying Wu, Hangrong Chen, Linlin Zhang, Jianlin Shi and Lianzhou Wang, Break-up of Two-Dimensional MnO2 Nanosheets Promotes Ultrasensitive pH-Triggered Theranostics of Cancer, Advanced Materials, 2014, 26, 7019-7026.
(6)    Yu Chen, Pengfei Xu, Zhu Shu, Meiying Wu, Lianzhou Wang, Shengjian Zhang, Yuanyi Zheng, Hangrong Chen, Jin Wang, Yaping Li and Jianlin Shi, Multifunctional Graphene Oxide-Based Triple Stimuli-Responsive Nanotheranostics, Advanced Functional Materials, 2014, 24(28), 4386-4396.
(7)    Yu Chen, Hangrong Chen and Jianlin Shi, Drug Delivery/Imaging Multifunctionality of Mesoporous Silica-Based Composite Nanostructures, Expert Opinion on Drug Delivery, 2014, 11(6), 917-930.
(8)    Yu Chen, Hangrong Chen and Jianlin Shi, Inorganic Nanoparticles-Based Drug Co-Delivery Nanosystems to Overcome the Multidrug Resistance of Cancer Cells, Molecular Pharmaceutics, 2014, 11, 2495-2510.
(9)    Meiying Wu, Qingshuo Meng, Yu Chen, Pengfei Xu, Shengjian Zhang, Yaping Li, Lingxia Zhang, Min Wang, Heliang Yao, Jianlin Shi, Ultrasmall Confined Iron Oxide Nanoparticle MSNs as a pH‐Responsive Theranostic Platform, Advanced Functional Materials, 2014, 24(27), 4273-4283.
(10)Xia Wang, Hangrong Chen, Kun Zhang, Ming Ma, Faqi Li, Deping Zeng, Shuguang Zheng, Yu Chen, Lixin Jiang, Huixiong Xu, Jianlin Shi, An Intelligent Nanotheranostic Agent for Targeting, Redox‐Responsive Ultrasound Imaging, and Imaging‐Guided High‐Intensity Focused Ultrasound Synergistic Therapy, Small, 2014, 10(7), 1403-1411.
(11)Xuemei Zhang, Yuanyi Zheng, Zhigang Wang, Shuai Huang, Yu Chen, Wei Jiang, Hua Zhang, Mingxia Ding, Qingshu Li, Xiaoqiu Xiao, Xin Luo, Zhibiao Wang, Hongbo Qi, Methotrexate-loaded PLGA nanobubbles for ultrasound imaging and Synergistic Targeted therapy of residual tumor during HIFU ablation, Biomaterials, 2014, 35(19), 5148-5161.
(12)Kun Zhang, Hangrong Chen, Faqi Li, Qi Wang, Shuguang Zheng, Huixiong Xu, Ming Ma, Xiaoqing Jia, Yu Chen, Juan Mou, Xia Wang, Jianlin Shi, A continuous tri-phase transition effect for HIFU-mediated intravenous drug delivery, Biomaterials, 2014, 35(22), 5875-5885.
(13)Ming Hua Yao, Ming Ma, Yu Chen, Xiao-qing Jia, Guang Xu, Hui-xiong Xu, Hang-rong Chen, Rong Wu, Multifunctional Bi2S3/PLGA nanocapsule for combined HIFU/radiation therapy, Biomaterials, 35(28), 8197-8205.
2013年
(1)    Yu Chen, Hangrong Chen and Jianlin Shi, In Vivo Bio-Safety Evaluations and Diagnostic/Therapeutic Applications of Chemically Designed Mesoporous Silica Nanoparticles, Advanced Materials, 2013, 25, 3144-3176.
(2)    Yu Chen, Pengfei Xu, Hangrong Chen, Yongsheng Li, Wenbo Bu, Zhu Shu, Yaping Li, Jiamin Zhang, Lingxia Zhang, Limin Pan, Xiangzhi Cui, Zile Hua, Jin Wang, Linlin Zhang and Jianlin Shi, Colloidal HPMOs NPs: Silica-Etching Chemistry Tailoring, Topological Transformation and Nano-Biomedical Applications, Advanced Materials, 2013, 2013, 25, 3100-3105.
(3)    Yu Chen, Hangrong Chen and Jianlin Shi, Engineering of Hollow Mesoporous Nanoparticles for Biomedical Applications, Advanced Porous Materials, 2013, 1, 36-62.
(4)    Yang Zhou, Zhigang Wang, Yu Chen, Hongxia Shen, Zhenchun Luo, Ao Li, Qi Wang, Haitao Ran, Pan Li, Weixiang Song, Zhu Yang, Hangrong Chen, Zhibiao Wang, Guangmin Lu, Yuanyi Zheng, Microbubbles from Gas‐Generating Perfluorohexane Nanoemulsions for Targeted Temperature‐Sensitive Ultrasonography and Synergistic HIFU Ablation of Tumors, Advanced Materials, 2013, 25(30), 4123-4130.
(5)    Xia Wang, Hangrong Chen, Yuanyi Zheng, Ming Ma, Yu Chen, Kun Zhang, Deping Zeng, Jianlin Shi, Au-nanoparticle coated mesoporous silica nanocapsule-based multifunctional platform for ultrasound mediated imaging, cytoclasis and tumor ablation, Biomaterials, 2013, 34(8), 2057-2068.


2013年之前
(1)    Yu Chen, Hangrong Chen, Yang Sun, Yuanyi Zheng, Deping Zeng, Faqi Li, Shengjian Zhang, Xia Wang, Kun Zhang, Ming Ma, Qianjun He, Linlin Zhang and Jianlin Shi, Multifunctional Mesoporous Composite Nanocapsules for Highly Efficient MRI-Guided High Intensity Focused Ultrasound Cancer Surgery, Angewandte Chemie International Edition, 2011, 50(52), 12505-12509.
(2)    Yu Chen, Yu Gao, Hangrong Chen, Deping Zeng, Yaping Li, Yuanyi Zheng, Faqi Li, Xia Wang, Feng Chen, Qianjun He, Linlin Zhang and Jianlin Shi, Engineering “Inorganic Nanoemulsion/Nanoliposome” by Fluoride-Silica Chemistry for Efficient Delivery/Co-delivery of Hydrophobic Agents, Advanced Functional Materials, 2012, 22(8), 1586-1597.
(3)    Limin Pan, Qianjun He, Jianan Liu, Yu Chen, Ming Ma, Linlin Zhang, Jianlin Shi, Nuclear-targeted drug delivery of TAT peptide-conjugated monodisperse mesoporous silica nanoparticles, Journal of the American Chemical Society, 2012, 134(33), 5722-5725.
(4)    Xia Wang, Hangrong Chen, Yu Chen, Ming Ma, Kun Zhang, Faqi Li, Yuanyi Zheng, Deping Zeng, Qi Wang, Jianlin Shi, Perfluorohexane‐Encapsulated Mesoporous Silica Nanocapsules as Enhancement Agents for Highly Efficient High Intensity Focused Ultrasound (HIFU), Advanced Materials, 2012, 24(6), 785-791.
(5)    Yu Chen, Hangrong Chen, Shengjian Zhang, Feng Chen, Lingxia Zhang, Jiamin Zhang, Min Zhu, Huixia Wu, Jingwei Feng and Jianlin Shi, Multifunctional Mesoporous Nanoellipsoids for Biological Bimodal Imaging and Magnetically Targeted Delivery of Anticancer Drugs, Advanced Functional Materials, 2011, 21(2), 270-278.
(6)    Yu Chen, Hangrong Chen, Limin Guo, Qianjun He, Feng Chen, Jian Zhou, Jingwei Feng and Jianlin Shi, Hollow/Rattle-type Mesoporous Nanostructures by a Structural Difference-Based Selective Etching Strategy, ACS Nano, 2010, 4(1), 529-539.
(7)    Yu Chen, Hangrong Chen, Deping Zeng, Yunbo Tian, Feng Chen, Jingwei Feng and Jianlin Shi, Core/Shell Structured Hollow Mesoporous Nanocapsules: A Potential Platform for Simultaneous Cell Imaging and Anticancer Drug Delivery, ACS Nano, 2010, 4(10), 6001-6013.
(8)    Yu Gao,†Yu Chen,† Xiufeng Ji,† Xinyu He, Jianlin Shi and Yaping Li, Controlled Intracellular Release of Doxorubicin in Multidrug Resistant Cancer Cells by Tuning the Shell-Pore Sizes of Mesoporous Silica Nanoparticles, ACS Nano, 2011, 5(12), 9788-9798. (†Co-first author)
(9)    Yu Chen, Hangrong Chen, Shengjian Zhang, Feng Chen, Shikuan Sun, Qianjun He, Ming Ma, Xia Wang, Huixia Wu, Lingxia Zhang and Jianlin Shi, Structure-Property Relationships in Manganese oxide - Mesoporous Silica Nanoparticles Used for T1-Weighted MRI and Simultaneous Anticancer Drug Delivery, Biomaterials, 2012, 33(7), 2388-2398.
(10)Yu Chen, Qi Yin, Xiufeng Ji, Shengjian Zhang, Hangrong Chen, Yuanyi Zheng, Yang Sun, Haiyun Qu, Zheng Wang, Yaping Li, Xia Wang, Kun Zhang, Linlin Zhang and Jianlin Shi, Manganese Oxide-Based Multifunctionalized Mesoporous Silica Nanoparticles for pH-Responsive MRI, Ultrasonography and Circumvent of MDR in Cancer Cells, Biomaterials, 2012, 33(29), 7126-7137.
(11)Ming Ma, Hangrong Chen, Yu Chen, Xia Wang, Feng Chen, Xiangzhi Cui, Jianlin Shi, Au capped magnetic core/mesoporous silica shell nanoparticles for combined photothermo-/chemo-therapy and multimodal imaging, Biomaterials, 2012, 33(3), 989-998
(12)Yang Sun, Yuanyi Zheng, Haitao Ran, Yang Zhou, Hongxia Shen, Yu Chen, Hangrong Chen, Tianyi M Krupka, Ao Li, Pan Li, Zhibiao Wang, Zhigang Wang, Superparamagnetic PLGA-iron oxide microcapsules for dual-modality US/MR imaging and high intensity focused US breast cancer ablation, Biomaterials, 2012, 33(24), 5854-5864.
(13)Yu Chen, Chen Chu, Yuchuan Zhou, Hangrong Chen, Feng Chen, Qianjun He, Yonglian Zhang, Linlin Zhang and Jianlin Shi, Reversible Pore-Structure Evolution in Hollow Silica Nanocapsules: Large Pores for siRNA Delivery and Nanoparticle Collecting, Small, 2011, 7(20), 2935-2944.
(14)Yu Chen, Hangrong Chen, Ming Ma, Feng Chen, Limin Guo, Lingxia Zhang and Jianlin Shi, Double Mesoporous Silica Shelled Spherical/Ellipsoidal Nanostructures: Synthesis and Hydrophilic/Hydrophobic Anticancer Drug Delivery, Journal of Materials Chemistry, 2011, 21(14), 5290-5298.
(15)Yu Chen, Hangrong Chen, Limin Guo and Jianlin Shi, Magnetic Hollow Mesoporous Silica Nanospheres: Facile Fabrication and Ultrafast Immobilization of Enzymes, Journal of Nanoscience and Nanotechnology, 2011, 11(12), 10844-10848.
(16)Qianjun He, Jiamin Zhang, Jianlin Shi, Ziyan Zhu, Linxia Zhang, Wenbo Bu, Limin Guo, Yu Chen, The effect of PEGylation of mesoporous silica nanoparticles on nonspecific binding of serum proteins and cellular responses, Biomaterials, 2010, 31(6), 1085-1092.
详细介绍:
http://mesoporous.weebly.com/

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沙发
发表于 2018-5-22 08:56:12 | 只看该作者
报告人:陈雨 研究员(中国科学院上海硅酸盐研究所
报告题目:无机纳米生物材料
报告时间:2:00 PM, May 24th (Thursday)
报告地点:苏州大学纳米科学技术学院909-B

摘要:
纳米生物技术的发展为重大疾病的早期诊断和高效治疗提供了新的策略。具有特殊纳米结构和化学组成的纳米生物材料是纳米生物技术发展的基石。相比于传统的有机纳米生物材料,无机质纳米生物材料具有生物安全性高、功能多、化学/热稳定性好等优点,因此在生物医药领域中显示出良好的性能和应用前景。本报告将结合研究团队的前期研究基础,重点阐述几类新型的无机质纳米生物材料,包括零维的介孔氧化硅/介孔有机硅纳米颗粒、二维无机纳米片层材料(氧化物,过渡金属硫化物,MXene等),以及有机/无机杂化的三维可注射型植入材料或者3D打印支架材料。报告将分从无机纳米生物材料的设计、可控制备、性能评价和生物学效应评价三个方面展开,探讨其在药物缓控释、诊断成像、基因治疗、催化医学、超声诊疗、心脏治疗、肿瘤诊疗等领域中的应用。

个人简介:
陈雨,男,1984年生,国家自然科学基金优秀青年基金获得者,国家万人计划青年拔尖人才,上海市优秀学术带头人,中国科学院上海硅酸盐研究所“所百人计划”入选者,高性能陶瓷和超微结构国家重点实验室研究员、博士生导师、国家重点研发计划“青年科学家”专项首席科学家(纳米专项)。曾先后荣获“上海市自然科学一等奖”、“中科院上海分院杰出青年”、“首届中国科学院卓越青年科学家”、“上海市青年科技启明星(A类)”、“上海市青年拔尖人才”、“首届中国科协青年人才托举工程”、“上海市人才发展基金计划”、“中国科学院卢嘉锡青年人才奖”等。陈雨共发表论文130余篇,包括Nat. Commun., Nat. Chem. Biol., Chem. Soc. Rev.(2篇), Acc. Chem. Res., Adv. Mater.(18篇), J. Am. Chem. Soc.(5篇), Angew. Chem. Int. Ed., Nano Letters, Adv. Funct. Mater.(6篇), ACS Nano(6篇), Nano Today, Biomaterials(18篇)等,第一/通讯作者论文中影响因子(IF)大于10的论文36篇,论文被引用7800余次,H-index为45。

联系人:刘庄 教授



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板凳
发表于 2018-12-5 15:25:18 | 只看该作者
陈雨Adv. Sci.:无机纳米酶催化级联反应用于治疗肿瘤
无毒且具有催化活性的无机纳米颗粒(NPs)的可以在肿瘤内产生活性氧来治疗肿瘤。目前,具有天然模拟酶催化活性的纳米材料在生物医学中的应用研究也得到了广泛的探索,并且其主要是被应用于检测生物分子,而针对于肿瘤治疗的研究还比较少。陈雨等人报道了一种高效的无机纳米酶基平台,它可以触发级联催化反应,进而用于对肿瘤微环境响应的肿瘤治疗,该纳米材料基于负载有超小的金和Fe3O4 纳米颗粒的介孔二氧化硅材料,金纳米颗粒作为葡萄糖氧化酶可以催化葡萄糖被氧化成葡糖酸和过氧化氢,而产生的过氧化氢也可以被Fe3O4 纳米颗粒催化产生高毒性的羟基自由基来诱导肿瘤细胞死亡。体外和体内的结果表明,这种生物相容性好的复合纳米催化剂的治疗效果明显,肿瘤抑制率(69.08%)也十分理想。这一研究为合理设计具有多酶活性的无机纳米酶来达到高疗效、良好生物安全性的肿瘤治疗开辟了新的道路。

Gao S S,Lin H, et al. Nanocatalytic Tumor Therapy by Biomimetic Dual Inorganic Nanozyme-Catalyzed Cascade Reaction[J]. Advanced Science, 2018.
DOI:10.1002/advs.201801733
https://doi.org/10.1002/advs.201801733

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地板
发表于 2019-1-18 12:50:25 | 只看该作者
陈雨ACS Nano:与低氧无关的光子热动力学用于癌症纳米医学
低氧的肿瘤微环境严重降低了氧依赖性的抗癌模式的治疗效果,因为肿瘤缺氧会阻碍细胞毒性活性氧的生成。Xiang等人报告一种利用热不稳定引发剂产生的与氧无关的自由基诱导癌细胞死亡的热动力学癌症治疗方法。实验通过将介孔二氧化硅层直接生长在二维Nb2C MXene纳米片表面,使其向多功能化方向发展,其中介孔可以作为引发剂的储集层,而MXene核则在近红外II区(NIR-II)扮演了光热触发器的角色。在1064 nm的NIR-II激光照射下,Nb2CMXene的光热转化效应会诱导包裹的启动子(AIPH)快速释放和分解产生自由基,促进肿瘤细胞在正常和低氧微环境下的凋亡。体外和体内评估都证明了这种光子纳米平台激活的热动力癌症疗法具有很好的协同治疗效果。

Xiang H J, Lin H, et al.Hypoxia-Irrelevant Photonic Thermodynamic Cancer Nanomedicine[J]. ACS Nano,2019.
DOI:10.1021/acsnano.8b08910
https://pubs.acs.org/doi/10.1021/acsnano.8b08910

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5#
发表于 2019-8-15 08:57:04 | 只看该作者
催化和生物医学通常被认为是两个独立的研究领域。近年来,随着纳米化学的发展,大量的纳米催化剂,如纳米酶、光催化试剂和电催化试剂等也都在体内被用于启动催化反应和调节生物微环境以实现治疗的效果。纳米催化剂在生物医学领域的应用也得到了迅速的发展,并有望推动纳米医学这一分支学科的前进。在过去的一个世纪里,许多化学家都在努力地将具有高效和高选择性的催化剂巧妙地转化为纳米诊疗药物,通过催化反应来优化治疗的结果。
中科院上海硅酸盐研究所陈雨研究员施剑林研究员合作,根据催化反应的基本反应因素,对构建纳米药物的基本原理进行了综述说明;然后全面介绍了这一新兴领域的最新研究进展,并详细讨论了具有诊疗功能的纳米催化系统的内在机理。
Bowen Yang, Yu Chen, Jianlin Shi. et al. Nanocatalytic Medicine. Advanced Materials. 2019
DOI: 10.1002/adma.201901778

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