[1]Dan Zou, Wei Wang, Daoxi Lei, Ying Yin, Peng Ren, Jinju Chen, Tieying Yin, Bochu Wang, Guixue Wang,Yazhou Wang*.Penetrate blood-brain barrier and enable anti-tumor and nerve repair in glioma by DOX-loaded monosialoganglioside micelles system.International Journal of Nanomedicine2017, 12:4879-4889
[2]Sun W, Huang Y, Yin T*, Wang J, Du R, Qiu J, Zhang Y,Wang Y*, Chen J, Wang G. Effects of elemene on inhibiting proliferation of vascular smooth muscle cells and promoting reendothelialization at the stent implantation site.Biomaterials Science2017, 5(6), 1144-1155.
[3]Yazhou Wang, Guixue Wang*.Polymeric nanomicelles: a potential hazard for the cardiovascular system? Nanomedicine,2017, 12(12): 1355-1358 (Editorial article)
[4] Fei Fang, Dan Zou, Wei Wang, Ying yin, Tieying Yin, Shilei Hao, Bochu Wang, Guixue Wang,Yazhou Wang*. Non-invasive Approaches for Drug Delivery to the Brain Based on the Receptor Mediated Transport,Materials Science and Engineering C, 2017(76):1316-1327
[5]Yazhou Wang*, Wei Wang, Zong Li, Shilei Hao & Bochu Wang, A novel perspective on neuron study: damaging and promoting effects in different neurons induced by mechanical stress,Biomech Model Mechanobiol, 2016;15(5):1019-27
[6]Yazhou Wang*, Zong Li, Pengyu Shao, Shilei Hao, Wei Wang, Qian Yang, Bochu Wang,A novel multiple drug release system in vitro based on adjusting swelling core of emulsion electrospun nanofibers with core–sheath structure,Materials Science and Engineering C,2014(44):109–116.
[7]Yazhou Wang* , Yiqiong Zhang, Bochu Wang, Yang Cao, Qingsong Yu, Tieying Yin, Fabrication of core–shell micro/nanoparticles for programmable dual drug release by emulsion electrospraying,J Nanopart Res,(2013) 15:1726
[9]Yazhou Wang, Guixue Wang, Liang Chen, Hao Li, Tieying Yin, Bochu Wang, James C-M Lee, Qingsong Yu. Electrospun nanofiber meshes with tailored architectures and patterns as potential tissue-engineering scaffolds,Biofabrication,2009 (1): 015001
[10]Yazhou Wang, Bochu Wang, Weili Qiao, Tieying Yin, A novel controlled release drug delivery system for multiple drugs based on electrospun nanofibers containing nanoparticles,Journal of Pharmaceutical Sciences, 2010.99(12):4805-4811
[11]Yazhou Wang, Bochu Wang, Guixue Wang, Tieying Yin, Qingsong Yu, A novel method for preparing electrospun fibers with nano-/micro-scale porous structures,Polymer Bulletin, 2009(63):259–265
[12]Yazhou Wang, Hao Li, Guixue Wang, Tieying Yin, Bochu Wang, Qingsong Yu, Electrospinning of polymer
nanofibers with ordered patterns and architectures.J. Nanosci. Nanotechnol.10, 1699-1706 (2010)
[13]Yazhou Wang, Weili Qiao, Bochu wang, Yiqiong Zhang, Pengyu Shao, and Tieying Yin Electrospun composite nanofibers containing nanoparticles for programmable release of dual drugs,Polymer Journal, 2011.43(5): 478-483
[14] Cao, Yang, Wang, Bochu,Wang, Yazhou, Lou, Deshuai, Polymer-controlled core-shell nanoparticles: a novel strategy for sequential drug release, RSC Advances, 2014, 4(57):30430-30439.
[15] Cao, Yang; Wang, Bochu;Wang, Yazhou; Lou, Deshuai, Dual Drug Release from Core-Shell Nanoparticles with Distinct Release Profiles, Journal of Pharmaceutical Sciences, 2014 ,103(10):3205-3216.
[16]Hao S, Wang B,Wang Y.Porous hydrophilic core/hydrophobic shell nanoparticles for particle size and drug release control [J]. Materials Science and Engineering: C, 2015. doi:10.1016/j.msec.2014.12.029
[17]Hao S, Wang B,Wang Y.Researching the dose ratio in a controlled release multiple-drug delivery system: using combination therapy with porous microparticles for the treatment of Helicobacter pylori infection [J]. Journal of Materials Chemistry B, 2015, 3(3): 417-431.
[18]Hao S,Wang Y,Wang B. Sinking-Magnetic Microparticles Prepared by the Electrospray Method for Enhanced Gastric Antimicrobial Delivery [J]. Molecular pharmaceutics, 2014, 11(5): 1640-1650.
[19]Hao S,Wang Y,Wang B, et al. Formulation of porous poly (lactic-co-glycolic acid) microparticles by electrospray deposition method for controlled drug release [J]. Materials Science and Engineering: C, 2014, 39: 113-119.
[20]Hao S, Wang B,Wang Y, et al. Enteric-coated sustained-release nanoparticles by coaxial electrospray: preparation, characterization, and in vitro evaluation [J]. Journal of nanoparticle research, 2014, 16(2): 1-11.
[21]Hao S,Wang Y, Wang B, et al. A novel gastroretentive porous microparticle for anti- Helicobacter pylori therapy: Preparation,in vitro and in vivoevaluation[J]. International journal of pharmaceutics, 2014, 463(1): 10-21.
[22]Shilei Hao,Yazhou Wang, Bochu Wang, Jia Deng, Xi Liu, Junyu Liu, Rapid preparation of pH-sensitive polymeric nanoparticle with high loading capacity using electrospray for oral drug delivery, Materials Science and Engineering C DOI:10.1016/j.msec.2013.07.009
[23]Lin Zhang,Yazhou Wang, Yang Cao, Deshuai Lou, Bochu Wang, Transport barriers and strategies of anti-tumor nanocarriers delivery system, Journal of Biomedical Materials Research: Part A 2013 DOI: 10.1002/jbm.a.34635
[24]Shilei Hao, Bochu Wang,Yazhou Wang,Liancai Zhu, Bin Wang, Tingwang Guo, Preparation of Eudragit L 100-55 enteric nanoparticles by a novel emulsion diffusion method, Colloids and Surfaces B: Biointerfaces 108 (2013) 127– 133
[25]Deshuai Lou, Bochu Wang,Yazhou Wang, Yang Cao,Selective killing of cancer stem cells by a novel dual-targeting strategy,Medical Hypotheses 79 (2012) 430–432
[26]Wang B, Liu J, Ma LN, Xiao HL,Wang YZ, Li Y, Wang Z, Fan L, Lan C, Yang M, Hu L, Wei Y, Bian XW, Chen D, Wang J.Chimeric 5/35 adenovirus-mediated Dickkopf-1 overexpression suppressed tumorigenicity of CD44?gastric cancer cells via attenuating Wnt signaling.J Gastroenterol. 2013 Jul;48(7):798-808.