楊雅敏,女,博士,南京航空航天大學自動化學院生物醫學工程系副教授,碩士生導師。
基本介紹
- 中文名:楊雅敏
- 國籍:中國
- 學位/學歷:博士
- 職業:教師
- 專業方向:生物醫學工程
- 任職院校:南京航空航天大學自動化學院
個人經歷,研究方向,學習成果,
個人經歷
美國斯蒂文斯理工學院生物醫學工程博士,加拿大多倫多大學機械與工業工程系博士後。擔任南京航空航天大學自動化學院生物醫學工程系副主任,生物醫學工程實驗室主任;擔任江蘇省生物醫學工程學會教育與科普專業委員會委員、江蘇省生物醫學工程學會醫學生物光子學委員會委員、中國生物醫學工程學會會員、中國電子學會會員;擔任Biosensors and Bioelectronics,Materials Today Chemistry,Nanoscale Advances,International Journal of Nanomedicine等國際期刊審稿人。
研究方向
生物醫學光子學、腫瘤治療及檢測、微流控晶片、現代生物醫學儀器等。
學習成果
有關研究成果在ACS Nano, Lab on a Chip, Chemical Communications, Journal of Biomedical Nanotechnology, Biomaterials等學術刊物上共已發表12篇文章,著作1部,國際會議和學術論壇報告8次。
PUBLICATIONS:
1.Y. Hu1, Y. Yang1, H. Wang and H. Du, Synergistic integration of layer-by-layer assembly of photosensitizer and gold
nanorings for enhanced photodynamic therapy in the near infrared, ACS Nano
2. Y. Yang, X. Yang, J. Zou, C. Jia, Y. Hu, H. Du, and H. Wang, Evaluation of photodynamic therapy efficiency using an in
vitro three-dimensional microfluidic breast cancer tissue model, Lab on a Chip,
3. Y. Yang, N. Gao, Y. Hu, C. Jia, T. Chou, H. Du and H. Wang, Gold nanoparticle-enhanced photodynamic therapy:
effects of surface charge and mitochondrial targeting, Therapeutic Delivery,
4. X. Lü, Y. Huang, Y. Qu, Y. Yang, and S. Wu, MicroRNA sequencing analysis of the molecular mechanisms of the
influence of gold nanoparticles on human dermal fibroblasts, Biomaterial
5. Y. Yang and H. Wang, Recent advances in nanomedicine for photodynamic therapy of cancer, invited book chapter,
Photodynamic Therapy: Fundamentals, Applications and Health Outcome Effects, 2015
6. Y. Yang, Y. Hu, H. Du, and H. Wang, Intracellular induced gold nanoaggregates by electrostatic interaction and their
applications in photodynamic therapy, Chemical Communications,
7. Y. Yang and H. Wang, Perspectives of nanotechnology in minimally invasive therapy of breast cancer, Journal ohealthcare engineering,
8. Y. Yang and H. Wang, Applications of nanomaterials for cancer treatment: recent patents review, Recent patents on
nanomedicine,omez, H. Du, and H. Wang, Gold nanoparticle-enhanced and size-dependent
generation of reactive oxygen species from protophorphyrin IX, ACSNano,
10. X. Lü, Y. Huang, Y. Yu, Y. Yang, Application of genomics/proteomics technologies in the research of biocompatibility
of biomaterials, Journal of Inorganic Materials,
11. X. Lü, Y. Qu, Y. Yang, Y. Huang, Proteomic analysis of molecular mechanism of interactions between gold2011, 42(6): 1016-1020
12. Y. Yang, X. Lü, Y. Qu. Global gene expression analysis of the effects of gold nanoparticles on human dermal
fibroblasts, Journal of Biomedical Nanotechnology,
13. X. Lü, H. Lu, L. Zhao, Y. Yang, Z. Lu, Genome-wide pathways analysis of nickel ion-induced differential genes
expression in fibroblasts, Leading Opinion, Biomaterials,

