邢超

发布时间:2023-05-08浏览次数:712



个人简介

邢超,男,助理研究员,DNA纳米器件的构造及其功能化研究

教育经历

2010.9-2014.6   福州大学   化学基地班   本科

2014.9-2019.6   福州大学   分析化学专业  博士

主要参与的项目

1、国家社科基金重大课题(课题名称),项目编号,参与或主持。

2、国家自然科学基金委员会,青年项目科学基金项目,21505021,智能响应MRI/NIR荧光 双模态纳米探针的构建及其在活体肿瘤成像分析中的应用,2016-012018-1221万元,已结题,参与

3、国家自然科学基金委员会,面上项目,21775025,多功能化DNA纳米凝胶在肿瘤诊断治疗中的应用研究,2018-012021-1263万元,已结题,参与

4、福州市科学技术局,市级科技计划项目,2020-S-28,智能手机生物传感器制备及其在闽江下游水体汞离子检测中的应用,2020-062022-0615万元,在研,主持

5、福建省科学技术厅,面上项目,2020J01861,基于DNA折纸的荧光传感平台开发及其在肿瘤相关mRNA成像中的应用,2020-082023-0810万元,在研,主持

主要成果(文章、专利等)

1.  Xing, Chao et al.; Spatial Regulation of Biomolecular Interactions with a Switchable Trident-Shaped DNA Nanoactuator, ACS Applied Materials & Interfaces, 2018, 10(38): 32579-32587.

2.  Xing, Chao et al.; Active Self-Assembly of Train-Shaped DNA Nanostructures via Catalytic Hairpin Assembly Reactions, Small, 2019, 15(27): 0-1901795.

3. Xing, Chao et al.; Light-Controlled, Toehold-Mediated Logic Circuit for Assembly of DNA Tiles, ACS Appl Mater Interfaces, 2020, 12(5): 6336-6342.

4. Xing, Chao* et al.; Target- directed enzyme-free dual-amplification DNA circuit for rapid signal amplification, Journal of Materials Chemistry B, 2020, 8(47): 10770-10775.

5. Xing, Chao* et al.; Accelerated DNA tetrahedron-based molecular beacon for efficient microRNA imaging in living cells, Chemical Communications.

6. Xing, Chao, et al.; "Construction of a Target-Initiated, Enzyme-Free DNA Cascade Circuit for Amplified Detection of Mercury." ACS Applied Bio Materials 3.4 (2020): 1853-1857.

7. Xing, Chao* et al.; "Localized DNA Catalytic Hairpin Assembly Reaction on DNA Origami for Tumor-Associated MicroRNA Detection and Imaging in Live Cells." Sensors and Actuators B: Chemical (2021): 130195.

8. Xing, Chao* et al.; "Ultrasensitive electrochemical detection of microRNA based on in-situ catalytic hairpin assembly actuated DNA tetrahedral interfacial probes." Talanta 233 (2021): 122600.

9. Xing, Chao* et al.;"“Don’t eat me/eat me”-combined apoptotic body analogues for efficient targeted therapy of triple-negative breast cancer." Journal of Materials Chemistry B (2021).