谢曦
个人信息(CONTACT INFORMATION)
姓名(Name): 谢曦(Xi Xie)
职称(Title): 教授 /博导 (Professor)
电子邮箱(Email): xiexi27@mail.sysu.edu.cn
教育经历(EDUCATION)
2009.09至2014.06, 美国斯坦福大学, 材料科学与工程, 博士
2005.09至2009.06, 中山大学, 高分子材料与工程, 本科
工作经历(WORK EXPERIENCE)
2016.07至今,中山大学, 电子与信息工程学院、
光电材料与技术国家重点实验室,教授,博导
2017.01至2021.12,中山大学附属第一医院,双聘教授
2014.07至2016.07,美国麻省理工学院, 博士后
科研项目(FUNDING PROJECTS)
1.国家自然与科学基金委面上项目. (NO. 32171399). 穿膜纳米电极阵列的构建及高通量记录心肌细胞内电信号的机制研究. 58万. 2022-2025.主持
2.国家自然与科学基金委面上项目. (NO. 61771498). 纳米针-电穿孔系统的构建及从个体细胞微创式提取蛋白的机制研究. 62万. 2018-2021.主持
3.科技部,国家重点研发计划课题,2021YFF1200702,新一代高相容性生物植入电极设计与应用(课题:人工酶电极传感系统的研制与性能研究),455.77万.2021-2024.主持
5.中山大学"百人计划"入选者. 300万人民币. 2016-2021. 主持
6.广州市科技计划项目 (生物相容电极与皮下血糖监测的关键技术研究与应用, 201803010097). 200万人民币. 2018-2020. 主持.
7.广东省自然科学基金面上项目,三维微针传感阵列的构建及体内多生理参数同步监测机制研究,10万,2021-2023年,主持.
学术服务(PROFESSIONAL SERVICES)
1.Nature出版社Microsystems & Nanoengineering期刊(SCI一区,IF=5.6,国家“卓越计划”领军期刊),副主编
2.中国生物医学工程学会生物医学传感技术分会,委员
3.中国电子学会生物医学电子学分会委员兼青年工作组主任
4.中国微米纳米技术学会微纳执行器与微系统分会,理事
5.中国生物医学工程学会纳米医学分会,理事
7.《生命科学仪器》、《国际生物医学工程》等中国核心期刊 编委
学术和人才奖励(AWARDS)
1.《麻省理工科技评论》TR35中国区 2019
2.中国电子学会优秀科技工作奖 2019
3.中国生物医学工程学会青年学者奖 2020
4.Young Scientist Award of Microsystems & Nanoengineering Summit 2019
研究方向(RESEARCH INTERESTS)
谢曦教授团队围绕发展“高端生物传感芯片”(Bio-MEMS)领域,致力于发展微纳加工技术构建新型的三维微纳芯片,原创性研制具有高灵敏性、高生物相容性、多功能性的微介入式三维传感芯片,为新一代高精密生物科研仪器与可穿戴智能设备提供重要技术支持:(1)在活体层面,发展新型的微创式诊疗系统的制备与集成技术,解决实时检测体内疾病的关键难点;(2)在离体细胞层面,系统性发展安全穿刺细胞膜的微纳器件技术,解决多时间点检测、调控活细胞内部信息的关键难点。
学术成果(SELECTED ACADEMIC ACHIEVEMENTS)
代表性论文
1. Ji Wang,+ Hui-Jiuan Chen,+ Tian Hang, et al., Jun Tao, Mei X. Wu,* Xi Xie*. Physical Activation of Innate Immunity by Spiky Particles. Nature Nanotechnology. 2018, DOI: 10.1038/s41565-018-0274-0 (Nature子刊, 通讯作者)
2. Xi Xie,+ Joshua C. Doloff,+ Volkan Yesilyurt,+ Atieh Sadraei,+ et al., Robert Langer, and Daniel G. Anderson*. Reduction of measurement noise in a continuous glucose monitor by coating the sensor with a zwitterionic polymer. Nature Biomedical Engineering. 2018, DOI: 10.1038/s41551-018-0273-3. (Nature子刊, 第一作者)
3. Cheng Yang, Qianni Wu, Junqing Liu, Jingshan Mo, Xiangling Li, Chengduan Yang, Ziqi Liu, Jingbo Yang, Lelun Jiang, Weirong Chen, Hui-jiuan Chen, Ji Wang, Xi Xie*.Intelligent wireless theranostic contact lens for electrical sensing and regulation of intraocular pressure. Nature Communications. 2022. Accepted. (Nature子刊, 通讯作者)
4. Li, Xiangling、Huang, Xinshuo、Mo, Jingshan、Wang, Hao、Huang, Qiqi、Yang, Cheng、Zhang, Tao、Chen, Hui-Jiuan、Hang, Tian、Liu, Fanmao、Jiang, Lelun、Wu, Qianni、Li, Hongbo、Hu, Ning、Xie, Xi*,A Fully Integrated Closed-Loop System Based on Mesoporous Microneedles-Iontophoresis for Diabetes Treatment. Advanced Science. 2021,DOI: 10.1002/advs.202100827. (通讯作者)
5.Roey Elnathan*, et al., Xi Xie*, et al, and Ciro Chiappini*. Biointerface design for vertical nanoprobes. Nature Review Materials. 2022, Accepted. (Nature子刊, 共同通讯作者)
6. Ciro Chiappini,* et al., Xi Xie, et al. Roey Elnathan*.Tutorial: using nanoneedles for intracellular delivery. Nature Protocols. 2020.DOI:10.1038/s41596-021-00600-7. (Nature子刊, 共同通讯作者)
7. Yang, Cheng,et al and Xie, Xi*. Wearable and Implantable Intraocular Pressure Biosensors: Recent Progress and Future Prospects. Advanced Science. 2021.DOI: 10.1002/advs.202002971 (通讯作者)
8. Gen He+, Ning Hu+, Alex Xu+, Xiangling Li, Yunlong Zhao, Xi Xie*. Nanoneedle Platforms: The Many Ways to Pierce Cell Membrane. Advanced Functional Materials. 2020, DOI: 10.1002/adfm.201909890. (通讯作者)
9. Gen He+, Chengduan Yang+, Jianming Feng, Jiangming Wu, Lingfei Zhou, Rui Wen, Shuang Huang, Qianni Wu, Fanmao Liu, Hui‐Jiuan Chen, Tian Hang, Xi Xie*. Hierarchical Spiky Microstraws-Integrated Microfluidic Device for Efficient Capture and In Situ Manipulation of Cancer Cells. Advanced Functional Materials. 2019, DOI: 10.1002/adfm.201806484. (通讯作者)
10. Chengduan Yang, Gen He, Aihua Zhang, Qianni Wu, Lingfei Zhou, Tian Hang, Di Liu, Shuai Xiao, Hui-Jiuan Chen, Fanmao Liu, Linxian Li, Ji Wang* and Xi Xie*. Injectable Slippery Lubricant-Coated Spiky Microparticles with Persistent and Exceptional Biofouling-Resistance, ACS Central Science. 2019, DOI: 10.1021/acscentsci.8b00605. (通讯作者)
11. Yaping Chen+, Ji Wang+, Xiangling Li, Ning Hu, Nicolas H. Voelcker*, Xi Xie*, Roey Elnathan*, Emerging Roles of 1D Vertical Nanostructures in Orchestrating Immune Cell Functions, Advanced Materials, 2020, DOI: 10.1002/adma.202001668. (共同通讯作者)
12. Gen He,+ Chengduan Yang,+ et al., Xi Xie*. Hierarchical Spiky Microstraws-integrated Microfluidic Device for Efficient Capture and in situ Manipulation of Cancer Cells. Advanced Functional Materials. 2018, DOI: 10.1002/adfm.201806484. (通讯作者)
13. Gen He,+ et al., Xi Xie*. Multifunctional Branched Nanostraw-Electroporation Platform for Intracellular Regulation and Monitoring of Circulating Tumor Cells. Nano Letters. 2018, DOI: 110.1021/acs.nanolett.9b02790 (通讯作者)
14. Hui-Jiuan Chen+, Tian Han+, et al, Ji Wang * and Xi Xie*. Functionalized Spiky Particles for Intracellular Biomolecular Delivery, ACS Central Science. 2019, DOI: 10.1021/acscentsci.8b00749 (通讯作者)
15. Quanchang Jin,+ Hui-jiuan Chen,+ et al., Xi Xie*, Reduced Graphene Oxide Nanohybrid-assembled Microneedles as Mini-invasive Electrodes for Real-time Transdermal Biosensing. Small, 2018, DOI: 10.1002/smll.201804298 (通讯作者)
16. Chengduan Yang,+ Gen He,+ et al., Ji Wang,* Xi Xie.* Injectable Slippery Lubricant-coated Spiky Microparticles with Persistent and Exceptional Biofouling-resistance. ACS Central Science, 2018, DOI: 10.1021/acscentsci.8b00605. (通讯作者)
17. Shuang Huang,+ Gen He,+ et al., Xi Xie*, Stretchable strain vector sensor based on parallelly aligned vertical graphene. ACS Applied Materials & Interfaces, 2018, DOI: 10.1021/acsami.8b18210. (通讯作者)
18. Rui Wen,+ Aihua Zhang+, et al. Gen He*, Xi Xie*, Intracellular Delivery and Sensing System Based on Electroplated Conductive Nanostraw Arrays. ACS Applied Materials & Interfaces, 2019, 10.1021/acsami.9b15619 (通讯作者)
授权专利
1.中国发明专利,ZL201710365254.7,双面空心纳米针阵列装置及其制备方法。
2.中国发明专利,ZL201810580389.X,枝状纳米管阵列的制备方法、识别肿瘤细胞的方法及用于捕获和原位调控癌细胞的微流装置。
3.中国发明专利,ZL201810972816.9,基于有序石墨烯的可检测应力方向的柔性力学传感器及其制备方法。
4.中国发明专利,ZL201910916528.6,一种基于“类液”聚合物接枝表面的自清洁涂层的制备方法。
5.中国发明专利,ZL201911132583.2,一种可促进牙组织修复的口腔植入式无线供电发光微装置。
6.中国发明专利,ZL202020193876.3,光机电一体化生理多指标同步检测系统。
7.中国发明专利,ZL202110021619.0,一种检测植物活性小分子的传感器和制备方法。
8.中国发明专利,ZL202110021620.3,一种检测植物根系和土壤参数的传感器及制备方法。
9.中国实用新型专利,ZL202020193877.8,基于纳米管阵列传感器的可调电压模式细胞穿孔透膜装置。
10.中国实用新型专利,ZL202020193876.3,光机电一体化生物多指标同步检测系统。