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中山大学深圳校区生物医学工程学院导师教师师资介绍简介-王佳思

本站小编 Free考研考试/2021-05-15



姓名:王佳思
邮箱:wangjs8@mail.sysu.edu.cn
主要经历:
2019.12-至今:中山大学,“****”副教授
2016.3-2019.11:华盛顿大学,生物医学工程,博后
2010.8-2016.2:中科院长春应化所,化学生物学,博士
2003.9-2010.7:吉林大学,生物化学与分子生物学,学士,硕士
研究方向:
1. 数字PCR技术的开发与应用。通过融合微流控、计算机、分析化学等技术手段,研发新型的数字PCR芯片与仪器,实现传染病以及重大疾病相关基因信息的高灵敏度检测。
2. 现场检测技术的开发与应用。基于微流控芯片,结合纳米材料,生物技术等学科,开发新的生物分子现场检测技术,以及相关的便携式仪器的开发。
3. 合成生物学为基础的检测技术。结合最新的分子生物学、酶学、材料学等技术,针对临床重大疾病,开发新的生物分子检测以及成像方法。
招聘:
长期招聘生物材料、分析化学、分子生物学、医疗电子研究背景的副研究员和博士后,待遇优厚。
副研究员年龄在38周岁以下,博士毕业并具有2项及以上代表性学术成果。
博士后获得博士学位 3年以内,年龄不超过35岁。
硕士研究生招生/本科实习:
欢迎保研/考研的本科同学加入实验室开展研究,欢迎各年级本科同学加入实验室实习并完成毕业设计。实验室开展多学科交叉研究,各种研究兴趣以及背景的同学都能找到自己的位置。推荐并鼓励本科同学发表研究论文并继续攻读学位或出国留学。
论著发明:
1. J Kreutz,?J Wang,?A Sheen,?A Thompson, J Staheli, M Dyen, Q Feng and D Chiu.Self-Digitization Chip for Quantitative Detection of Human Papillomavirus Gene Using Digital LAMP.Lab on Chip. 2019, DOI: 10.1039/c8lc01223g. (co-first author)(IF=5.995)
2.J Wang, J Kreutz, A Thompson, Y Qin, A Sheen, J Wang, L Wu, S Xu, M Chang, D Raugi, R Smith, G Gottlieb and D Chiu. SD-chip enabled quantitative detection of HIV RNA using digital nucleic acid sequence-based amplification (dNASBA).Lab on Chip. 2018, 18(22):3501-3506.(IF=5.995)
3.J Wang, H Qin, F Wang, J Ren, X Qu, Metal Ions Activated DNAzymes Used for Regulation of Telomerase Activity in Living Cells.Chem. Eur. J,2017, 23(47):11226-11229.(IF=5.16)
4.J Wang, P Shi, K Dong, Z Yan, J Ren, X Qu, Regulation of cell fate by near infrared-responsive telomerase activity.Materials Today, 2017, 20 (8), 406-412.(IF=24.537)
5. J Wang, C Zhao, A Zhao, M Li, J Ren, X Qu. New Insights in Amyloid Beta Interactions with Human Telomerase.J Am Chem Soc. 2015, 137, 1213-9.(IF=14.357)
6.J Wang, Y Chen, J Ren, C Zhao, X Qu. G-Quadruplex binding enantiomers show chiral selective interactions with human telomere.Nucleic Acids Res.2014, 42: 3792-3802.(IF=11.561)
7.J Wang, L Wu, J Ren, X Qu. Visual detection of telomerase activity with a tunable dynamic range by using a gold nanoparticle probe-based hybridization protection strategy.Nanoscale,2014, 6, 1661-6.(IF=7.233)
8.J Wang, X Qu. Recent Progress in Nanosensors for Sensitive Detection of Biomolecules.Nanoscale,2013, 5, 3589-600.(IF=7.233)
9.J Wang, L Wu, J Ren, X Qu. Visualizing Human Telomerase Activity With Primer Modified Au Nanoparticles.Small,2012, 8, 259.Inside Cover, Highlighted by “Chemistry World”, “Materials Views”, “Materials Views China”. (IF=9.598)
10. W Li,J Wang, J Ren, X Qu. Near-Infrared Upconversion Controls Photocaged Cell Adhesion.J Am Chem Soc.2014, 136, 2248-51.
11. W Li,J Wang, J Ren, X Qu. Near-Infrared- and pH-Responsive System for Reversible Cell Adhesion using Graphene/Gold Nanorods Functionalized with i-Motif DNA.Angew Chem Int Ed Engl. 2013, 52, 6726-30.
12. W Li,J Wang, J Ren, X Qu. 3D Graphene Oxide–Polymer Hydrogel: Near-Infrared Light-Triggered Active Scaffold for Reversible Cell Capture and On-Demand Release.Adv Mater, 2012, 24, 125-131.
13. L Wu,J Wang, L Feng, J Ren, W Wei, X Qu. Label-Free Ultrasensitive Detection of Human Telomerase Activity Using Porphyrin-Functionalized Graphene and Electrochemiluminescence Technique.Adv Mater, 2012, 24, 2447-52.
14. L Wu,J Wang, J Ren, X Qu. Ultrasensitive Telomerase Activity Detection in Circulating Tumor Cells Based on DNA Metallization and Sharp Solid-State Electrochemical Techniques.Adv Funct Mater, 2014, 24, 2727–2733.
15. L Feng, L Wu,J Wang, J Ren, D Miyoshi, N Sugimoto, X Qu. Detection of a Prognostic Indicator in Early-Stage Cancer Using Functionalized Graphene-Based Peptide Sensors.Adv Mater, 2012, 24, 125-131.
16. Y Chen, K Qu, C Zhao, L Wu, J Ren,J Wang, X Qu. Insights into the biomedical effects of carboxylated single-wall carbon nanotubes on telomerase and telomeres.Nat Commun.2012, 3, 1074.


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