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Zheng Wang——Professor

Nationality:
CHINA
Phone:
022-27404018
Email:
wangzheng2006@tju.edu.cn
Office:
Room A406, Building 24, Tianjin University
School:
School of Pharmaceutical Science and Technology
ResearcherID:
Group weblink
Education Experience
1998 Ph. D. Nankai University, CN
2003 Postdoctoral Kornan University, JPN; Montreal University, CAN
Professional Experience
2013-2015 Professor Tianjin University, China.
2004-2013 Associate professor Tianjin University, China.
2002-2003 Postdoctoral associate 907 Rose Street, Lexington, KY, 40536-0082 USA
2001-2002 Postdoctoral associate Centre-ville Montreal, Quebec, H3C 3J7 Canada
2002-2002 Collaborating visitor Collaborating visitor in AstraZeneca R&D Montreal
2000-2001 Postdoctoral associate High Technology Research Center, Konan University, Kobe, 658-8501, Japan
1998-2000 Postdoctoralassociate School of Chemical Engineering & Technology, Tianjin University, Tianjin, China
Research Area

The research in the group of Wang encompasses four main areas, including 1) Functional polymeric materials (biodegradable polymeric materials, smart polymeric materials such as thermo-sensitive and pH sensitive polymers, dendrimers etc.), 2) Nanotechnology for solubility improvement of water-insoluble drugs, 3) Targeted and controlled drug release systems, and 4) Self-assembled nanostructures for controlled drug release.

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Honors and Awards
Patents
Highlighted Publications
Song, L.; Sun, M.; Zhao, Y.; Wang, Z. Tailored dual coating of magnetic nanoparticles for enhanced drug loading. RSC Adv. 2014, 4, 4893.
Zhang, Q.; Zhu, J.; Song, L.; Zhao, Y.; Wang, Z. Engineering magnetic-molecular sequential targeting nanoparticles for anti-tumor therapy. J. Mater. Chem. B. 2013, 1, 6402.
Yang, J.; Chen, J.; Pan, D.; Wan, Y.; Wang, Z. pH-sensitive interpenetrating network hydrogels based on chitosan derivatives and alginate for oral drug delivery. Carbohydr, Polym. 2013, 92, 719.
Yang, R.; Zhang, S.; Kong, D.; Gao, X.; Zhao, Y.; Wang, Z. Biodegradable Polymer-Curcumin Conjugate Micelles Enhance the Loading and Delivery of Low-potency Curcumin. Pharm. Res. 2012, 29, 3512.
Zhao, Y.; Yang, R.; Liu, D.; Sun, M.; Zhou, L.; Wang, Z.; Wan, Y. Starburst low molecular weight polyethyl enimine for efficient gene delivery. J. Biomed. Mater. Res., A 2012, 100, 134.
ResearcherID Publications
Year Title Author(s) Source Volume
2012 Thermosensitivity of low generation poly(amidoamine) dendrimers with enriching peripheral functional groups Zhao, Yanjun; Shen, Li; Wan, Ying; et al. Colloids and Surfaces a-Physicochemical and Engineering Aspects 403
2011 Folate-conjugated amphiphilic star-shaped block copolymers as targeted nanocarriers Zhu, Jundong; Zhou, Zhichao; Yang, Cuihong; et al. Journal of Biomedical Materials Research Part a 97A
2011 PEGylated thermo-sensitive poly(amidoamine) dendritic drug delivery systems Zhao, Yanjun; Fan, Xiangpan; Liu, Dong; et al. International Journal of Pharmaceutics 409
2011 Sustained release of ketoprofen from fibrous chitosan-poly(epsilon-caprolactone) membranes Wang, Zheng; Wu, Hua; Liao, Chunyan; et al. Carbohydrate Polymers 84
2010 Thermosensitive Poly(N-isopropylacrylamide)-g - Polyamidoamine Dendrimer Derivatives: Preparation and the Drug Release Behaviors Wang, Zheng; Zhou, Bo; Liu, Dong; et al. Polymers and Organic Chemistry 297
2010 Tunable Amphiphilic Poly(Ether-Anhydride) Gel Nanoparticles for the Delivery of Hydrophobic Drugs Wang, Zheng; Cai, Zheng; Guo, Qian; et al. Polymers and Organic Chemistry 297
New pH-sensitive curcumin-loaded micelle precursor, prepared by taking poly(lactic acid)-poly(ethylene glycol)-monomethyl ether derivative and curcumin derivative, dissolving in solvent, and reacting CHEN C; ZHANG Q; WANG Z; et al.
New pH-sensitive single chain methoxypolyethylene glycol-poly(lactic acid)-N-curcumin micelle precursor compound, prepared by binding hydrazine-modified methoxypolyethylene glycol-poly(lactic acid) and hydroxycarbonylated curcumin ZHANG Q; WANG Z; ZHAO Y; et al.
New redox-sensitive monomethyl polyethylene glycol-polylactic acid-curcumin prodrug micelle monomer used as carrier of traditional Chinese medicine WANG Z; ZHAO Y; CHEN C; et al.
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