王佳思
姓名:王佳思
邮箱:wangjs8@mail.sysu.edu.cn
主要经历:
2019.12-至今:中山大学,“百人计划”副教授,硕导
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:
精准诊断是精准治疗的前提,随着分子生物学的发展,从分子层面理解疾病是未来生物医学发展趋势,是精准医学的重要内涵。发展分子生物检测新技术是实现疾病早期诊断及精准治疗的核心。课题组长期致力于开发新的生物分子检测技术,通过结合多学科技术,开发应用于疾病精准检测的新方法以及仪器平台。具体研究方向包括:
1. 数字式分子诊断新技术。通过融合分子生物学、微流控芯片、分析化学等技术手段,研发新型数字单分子检测芯片与仪器,实现重大疾病的早期诊断以及传染病的高灵敏度检测。
2. 现场检测技术开发与应用。通过结合纳米材料、微流控芯片等技术,开发现场检测技术以及便携式仪器。
3. 合成生物学新方法。以分子生物学工具为基础,结合酶学、材料学等技术,开发新型合成生物学新技术,解决重大疾病中关键问题。
招聘:
长期招聘生物材料、分子生物学、分析化学、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。
成果总结:
在国际著名学术期刊Nat Commun, J Am Chem Soc,Angew Chem Int Ed Engl , Nucleic Acids Res等发表论文50余篇。文章引用次数超过3400次,H指数28。申请PCT一项,国内专利3项。
代表性论文
1. Yingying Xue,Xinyi Luo…Jiasi Wang*, PddCas: A Polydisperse Droplet Digital CRISPR/Cas-Based Assay for the Rapid and Ultrasensitive Amplification-Free Detection of Viral DNA/RNA. Anal Chem. 2023, 95(2):966-975. (IF= 8)
2. Xinnan Bai, Ke Wang, … Jiasi Wang*, Semiconducting polymer dots as fluorescent probes for in vitro biosensing. J Mater Chem B. 2022, 10(33):6248-6262. (IF=7.6)
3. Ke Wang, Xinnan Bai, …Jiasi Wang*, Absolute quantification of circRNA using digital reverse transcription-hyperbranched rolling circle amplification. Sensor Actuat B-Chem. 375 (2022) 132893. (IF= 9.2)
4. Yaqin Zhang, Minyan Chen, …Jiasi Wang*. Sensitive and rapid on-site detection of SARS-CoV-2 using a gold nanoparticle-based high-throughput platform coupled with CRISPR/Cas12-assisted RT-LAMP. Sensor Actuat B-Chem. 345 (2021) 130411. (IF= 9.2)
5. Xinyi Luo, Yingying Xue, Enguo Ju, Yu Tao, Mingqiang Li, Li Zhou, Chongguang Yang, Jianhua Zhou, Jiasi Wang*. Digital CRISPR/Cas12b-based platform enabled absolute quantification of viral RNA. Anal Chim Acta. 1192 (2022) 339336 (IF= 6.9)
6. Sheng Li, Wenlong Guo, Minmin Xiao, Yulin Chen, Xinyi Luo, Wenfei Xu, Jianhua Zhou, Jiasi Wang*. Rapid and Sensitive Diagnosis of COVID-19 Using an Electricity-Free Self-Testing System. Biosensors. 2023, 13(2):180 (IF=5.7)
7. Jiasi 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= 31.041)
8. Jiasi 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=16)
9. Jiasi 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= 19)
10. Jiasi 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=15)
11. Jiasi Wang&, Jeannette P. Staheli& …, Daniel T. Chiu*. Detection of 14 high-risk human papillomaviruses using digital LAMP assays on a self-digitization chip. Anal Chem. 2021, 93(6):3266. (IF= 8)
12. J Kreutz, ‡ Jiasi 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, 19, 1035. (co-first author) (IF=7.5)
13. Jiasi 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=7.5)
14. Jiasi 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= 8.3)
15. Jiasi Wang, X Qu. Recent Progress in Nanosensors for Sensitive Detection of Biomolecules. Nanoscale, 2013, 5, 3589-600. (IF=8.3)
专利
(1) 王佳思; 薛莹莹; 白心楠; 一种多重单分子定量检测技术及其检测系统, 2021-11-05, 中国, 202111307579.2
(2) 王佳思; 薛莹莹; 王珂; 周建华; 一种多分散液滴数字核酸检测方法及其应用, 2022-07-15, 中国, 202210482347 .9
(3) 王佳思; 薛莹莹; 一种数字环介导等温扩增的方法, 2020-11-06, 中国, CN202011235835.7
(4) CHIU, Daniel T.; YU, Jiangbo; KREUTZ, Jason E.; WANG,Jiasi; Digital Nucleic Acid Amplification Using Encoded Particle, 2018-1-11, WIPO, PCT/US2018/058803