University of Science and Technology of China  South China University of Technology 中文|English
Responsive Nanocarriers
18. X.Z. Yang, X.J. Du, Y. Liu, Y.H. Zhu, Y. Z. Liu, Y.P. Li, J. Wang*, Rational Design of Polyion Complex Nanoparticles to Overcome Cisplatin Resistance in Cancer Therapy, Advanced Materials, 2014, 26, 931-936
 

17. T.M. Sun, Y.C. Wang, F.Wang, J.Z. Du, C.Q. Mao, C.Y. Sun, R. Z. Tang, Y. Liu, J. Zhu, Y. H. Zhu, X.Z. Yang, J. Wang*, Cancer Stem Cell Therapy Using Doxorubicin Conjugated to Gold Nanoparticles via Hydrazone Bonds, Biomaterials, 2014, 35, 836-845 (Top 25 Hottest Articles of Biomaterials, October to December 2013)

 

16. J.Z. Du, C.Q. Mao, Y. Y. Yuan, X.Z. Yang, J. Wang*, Tumor Extracellular Acidity-Activated Nanoparticles as Drug Delivery Systems for Enhanced Cancer Therapy, Biotechnology Advances, 2014, 32, 789-803 (invited review)

 

15. C.Y. Sun, S. Dou, J.Z. Du, X.-Z. Yang, Y. P. Li, J. Wang*, Doxorubicin Conjugate of Poly(ethylene glycol)-block-Polyphosphoester for Cancer Therapy, Advanced Healthcare Materials, 2014, 3, 261-272

 

14. M. H. Xiong, Y. Bao, X. Z. Yang, Y. H. Zhu, J. Wang*, Delivery of Antibiotics with Polymeric Particles, Advanced Drug Delivery Reviews, 2014, 78, 63-76

 

13. H.J. Li, H.X. Wang, C.Y. Sun, J.Z. Du*, J. Wang*, Shell-detachable Nanoparticles Based on A Light-Responsive Amphiphile for Enhanced siRNA Delivery, RSC Advances, 2014, 4, 1961-1964

 

12. M.H. Xiong, Y. Bao, X.J. Du, Z.B.Tan, Q. Jiang, H.X. Wang, Y. H. Zhu, J. Wang*, Differential Anticancer Drug Delivery with A Nanogel Sensitive to Bacteria-Accumulated Tumor Artificial Environment, ACS Nano, 2013, 7, 10636-10645 (most read articles, ACS Nano, Dec., 2013)

 

11. M. H. Xiong, Y. J. Li, Y.Bao, X. Z. Yang, B. Hu*, J. Wang*, Bacteria-Responsive Multifunctional Nanogel for Targeted Antibiotic Delivery, Advanced Materials, 2012, 24, 6175-6180

 

10. Y. Y. Yuan, C. Q. Mao, X. J. Du, J. Z. Du, F. Wang, J. Wang*, Surface Charge Switchable Nanoparticles based on Zwitterionic Polymer for Enhanced Drug Delivery to Tumor, Advanced Materials, 2012, 24, 5476-5480

 

9. Y. Z. Min, C. Q. Mao, S. M. Chen, G. L. Ma, J. Wang*, Y. Z. Liu*, Combating the Drug Resistance of Cisplatin Using a Platinum Prodrug Based Delivery System, Angewandte Chemie-International Edition, 2012, 51, 6742-6747 (Highlighted by Nanomedicine, 2012, 7, 947-948)

 

8. M.H. Xiong, Y. Bao, X.Z. Yang, Y.C. Wang, B.l. Sun*, J. Wang*, Lipase-Sensitive Polymeric Triple-Layered Nanogel for “On-Demand” Drug Delivery, Journal of the American Chemical Society, 2012, 134, 4355-4362

 

7. X.Z. Yang, J.Z. Du, C.Q. Mao, H.Y. Long, J. Wang*, Sheddable Ternary Nanoparticles for Tumor Acidity-Targeted siRNA Delivery, ACS Nano, 2012, 6, 771-781 (most read articles, ACS Nano, Jan., 2012; highlighted by Nanomedicine 2012, 7, 182)

 

6. J.Z. Du, H.Y. Long, Y.Y. Yuan, M.M. Song, L. Chen, H. Bi, J. Wang*, Micelle-to-Vesicle Morphological Transition via Light-Induced Rapid Hydrophilic Arm Detachment from a Star Polymer, Chemical Communications, 2012, 48, 1257-1259

 

5. J.Z. Du, X.J. Du, C.Q. Mao, J. Wang*, Tailor-Made Dual pH-Sensitive Polymer-Doxorubicin Nanoparticles for Efficient Anticancer Drug Delivery, Journal of the American Chemical Society, 2011, 133, 17560-17563

 

4. Y.C. Wang, F. Wang, T.M. Sun, J. Wang*, Redox-Responsive Nanoparticles from the Single Disulfide Bond-Bridged Block Copolymer as Drug Carriers for Overcoming Multi-Drug Resistance in Cancer Cells, Bioconjugate Chemistry, 2011, 22, 1939-1945

 

3. F. Wang, Y. C. Wang, S. Dou, M. H. Xiong, T. M. Sun, J. Wang*, Doxorubicin-Tethered Responsive Gold Nanoparticles Facilitate Intracellular Drug Delivery for Overcoming Multidrug Resistance in Cancer Cells, ACS Nano, 2011, 5, 3679-3692 (most read article, Q2, 2011)

 

2. J. Z. Du, T. M. Sun, W. J. Song, J. Wu, J. Wang*, A Tumor-Acidity-Activated Charge-Conversional Nanogel as an Intelligent Vehicle for Promoted Tumoral-Cell Uptake and Drug Delivery, Angewandte Chemie-International Edition, 2010, 49, 3621-3626

 

1. L. Y. Tang, Y. C. Wang,* Y. Li, J. Z. Du, J. Wang*, Shell-Detachable Micelles Based on Disulfide-Linked Block Copolymer as Potential Carrier for Intracellular Drug Delivery, Bioconjugate Chemistry, 2009, 20, 1095-1099 (most-accessed article during April-June 2009)