高丹

发布者:系统管理员发布时间:2022-11-25浏览次数:1453

副研究员,硕士生导师

学科:化学生物学

联系信息

电话: 0755-26036035

邮箱: gao.dan@sz.tsinghua.edu.cn

地址: J402B

教育经历

200609-201106月,北京化工大学与清华大学联合培养,化学工程与技术,博士

200209-200606月,北京服装学院,应用化学专业,本科

工作经历

201912-至今,清华大学深圳国际研究生院,副研究员

20193-201912月,清华大学深圳国际研究生院,讲师

20181-20191月,斯坦福大学,访问学者

20138-20193月,清华大学深圳研究生院,讲师

20117-20136月,清华大学深圳研究生院,博士后

教学课程

文献检索与论文写作

药物化学专题实验

研究领域

研究方向:生命分析化学,主要以微流控芯片结合质谱、光谱联用分析技术为基础,开展药物分析、新型有机合成以及生物传感等工作,致力于服务国家药品质量与安全、新药创制以及疾病诊断的研究与开发。作为项目负责人国家自然科学基金面上项目、青年基金,中国博士后基金、广东省自然科学基金项目、深圳市基础研究学科布局、基础研究自由探索等多个项目;参与“十二五”重大新药创制、973项目、国家863项目等多项。在Trends in Analytical Chemistry, Chemical Science, ACS Applied Materials & Interfaces, Analytical Chemistry, Lab on a Chip等学术期刊发表学术论文60余篇,申请专利7项。

代表性论文

[1]Hu, W.;  Gao, D.*;  Su, Z.;  Qian, R.;  Wang, Y.; Liang, Q.*, A cellular chip-MS system for investigation of Lactobacillus rhamnosus GG and irinotecan synergistic effects on colorectal cancer. Chinese Chem. Lett. 2021.

[2]Li, J.;  An, Z.;  Sun, J.;  Tan, C.*;  Gao, D.*;  Tan, Y.; Jiang, Y., Highly Selective Oxidation of Organic Sulfides by a Conjugated Polymer as the Photosensitizer for Singlet Oxygen Generation. ACS Appl. Mater. Interfaces 2020,12 (31), 35475-35481.

[3]Gao, D.;  Jin, F.;  Lee, J. K.; Zare, R. N.*, Aqueous microdroplets containing only ketones or aldehydes undergo Dakin and Baeyer–Villiger reactions. Chem. Sci. 2019,10 (48), 10974-10978.

[4]Li, S.;  Gao, D.*;  Song, C.;  Tan, C.*; Jiang, Y., Isotope Labeling Strategies for Acylcarnitines Profile in Biological Samples by Liquid Chromatography-Mass Spectrometry. Anal. Chem. 2019,91 (3), 1701-1705.

[5]Gao, D.;  Jin, F.;  Yan, X.; Zare, R. N.*, Selective Synthesis in Microdroplets of 2-Phenyl-2,3-dihydrophthalazine-1,4-dione from Phenyl Hydrazine with Phthalic Anhydride or Phthalic Acid. Chem. Eur. J. 2019,25 (6), 1466-1471.

[6]Song, C.;  Gao, D.*;  Li, S.;  Liu, L.;  Chen, X.; Jiang, Y.*, Determination and quantification of fatty acid C=C isomers by epoxidation reaction and liquid chromatography-mass spectrometry. Anal. Chim. Acta 2019,1086, 82-89.

[7]Li, A.;  Tan, C.*;  Yuan, T.;  Liang, J.;  Gao, D.*;  Tan, Y.; Jiang, Y., Efficient photocatalytic oxidation sensitized by conjugated polymers in a batch reaction and microreactors under visible light. J. Mater. Chem. A 2018,6 (33), 15927-15932.

[8]Chen, Y.;  Gao, D.*;  Wang, Y.;  Lin, S.; Jiang, Y., A novel 3D breast-cancer-on-chip platform for therapeutic evaluation of drug delivery systems. Anal. Chim. Acta 2018,1036, 97-106.

[9]Shao, X.;  Gao, D.*;  Chen, Y.;  Jin, F.;  Hu, G.;  Jiang, Y.; Liu, H., Development of a blood-brain barrier model in a membrane-based microchip for characterization of drug permeability and cytotoxicity for drug screening. Anal. Chim. Acta 2016,934, 186-93.

[10]Xie, W.;  Gao, D.*;  Jin, F.;  Jiang, Y.; Liu, H.*, Study of Phospholipids in Single Cells Using an Integrated Microfluidic Device Combined with Matrix-Assisted Laser Desorption/Ionization Mass Spectrometry. Anal. Chem. 2015,87 (14), 7052-9.

[11]Chen, Y.;  Gao, D.*;  Liu, H.;  Lin, S.; Jiang, Y., Drug cytotoxicity and signaling pathway analysis with three-dimensional tumor spheroids in a microwell-based microfluidic chip for drug screening. Anal. Chim. Acta 2015,898, 85-92.

[12]Wu, Q.;  Gao, D.;  Wei, J.;  Jin, F.;  Xie, W.;  Jiang, Y.*; Liu, H.*, Development of a novel multi-layer microfluidic device towards characterization of drug metabolism and cytotoxicity for drug screening. Chem. Commun. 2014,50 (21), 2762-4.

[13]Gao, D.;  Liu, H.;  Jiang, Y.; Lin, J. M.*, Recent advances in microfluidics combined with mass spectrometry: technologies and applications. Lab Chip 2013,13 (17), 3309-22.

[14]Gao, D.;  Liu, H.;  Lin, J. M.*;  Wang, Y.; Jiang, Y.*, Characterization of drug permeability in Caco-2 monolayers by mass spectrometry on a membrane-based microfluidic device. Lab Chip 2013,13 (5), 978-85.

[15]Gao, D.;  Liu, H.;  Jiang, Y.;  Lin, J.-M.*;  Gao, D.;  Liu, H.; Jiang, Y., Recent developments in microfluidic devices for in vitro cell culture for cell-biology research. Trends Anal. Chem. 2012,35, 150-164.

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