张越
一、基本情况
出生年月:1991年4月
职称:讲师
最高学位:博士
工作单位:威尼斯wns.8885556
Email: yue.zhang.23@whut.edu.cn;
二、教育及工作经历
(1) 2016-07 至 2021-11, 伦敦大学学院, 生物医学材料, 博士
(2) 2014-09 至 2015-09, 伦敦大学学院, 生物材料与组织工程, 硕士
(3) 2011-09 至 2014-06, 谢菲尔德大学, 生物工程, 学士
2023-11 至 今, 威尼斯wns.8885556, 威尼斯wns.8885556, 讲师
三、研究领域
近年来,相关研究主要集中在生物医用高分子材料领域,一方面采用壳聚糖、细胞外基质等天然高分子材料以及PLGA、聚乙烯醇、聚氨酯等合成高分子材料作为基材,深入研究其在皮肤组织修复和骨组织修复中的应用,包括骨支架和骨诱导膜的开发;另一方面基于电液动雾化技术,开展纳米粒子和纤维作为药物载体以及组织支架的研究工作,探索这种技术在制备具有特定性能的纳米材料方面的潜力。
四、科研项目
企业委托项目,新型装药自传爆间隔器研发及爆破效果优化研究项目,2024.6至2025.9,164万,主持
五、代表性论文
[1] T. Chen, Z. Zhang, X. Zhou, Z. Zhang, J. Liu, Q. Gong, T. Ma, A. Dilihumaer, Y. Zhan, Z. Xie, L. Fan, Y. Zhang*, S. Tao*, Y. Chu*, Fe3O4@PDA Nanoparticle-Doped Smart Hydrogel Scaffold for Osteochondral Defect Repair by Synergistical Stimulation, Adv. Funct. Mater. (2025) 2501354.
[2] Q. Gong, X. Cao, G. Wang, T. Ma, L. Qin, G. He, Y. Zhang*, L. Fan*, Y. Chu*, Advanced Multi-functional polyurethane sponge with excellent salt Resistant, Antifouling and Oil-Water separation capabilities for highly efficient and Persistent solar desalination, Sep. Purif. Technol. 360 (2025) 130936.
[3] T. Ma, L. Yan, B. Wang, Q. Gong, G. Wang, T. Chen, S. Liu, H. Wei, G. He, Y. Zhang*, L. Fan*, Y. Chu*, Preparation and composition analysis of PVA/chitosan/PDA hybrid bioactive multifunctional hydrogel for wound dressing, Eur. Polym. J. 221 (2024) 113527.
[4] W. Luo, X. Zhang, Y. Chu, T. Chen, H. Sun, J. Liu, G. Zhang, L. Fan, H. Xu*, Y. Zhang*, M. Yang*, Incorporation of Finasteride-Loaded Microspheres into Personalized Microneedle for Sustained Transdermal Delivery, Langmuir. 40 (2024) 10551–10560.
[5] Y. Zhang*, A. Henry Harker, C.J. Luo, M. Parhizkar, M. Edirisinghe, Co-delivery of saxagliptin and dapagliflozin by electrosprayed trilayer poly (D, l-lactide-co-glycolide) nanoparticles for controlled drug delivery, Int. J. Pharm. 628 (2022) 122279.
[6] Y. Zhang, P. Tremblay, T. Zhang, Electrosprayed trilayer poly ( D , L -lactide-co-glycolide ) nanoparticles for the controlled co-delivery of a SGLT2 inhibitor and a thiazide-like diuretic, J. Drug Deliv. Sci. Technol. 81 (2023) 104311.
[7] Y. Zhang, R. Zhang, U.E. Illangakoon, A.H. Harker, C. Thrasivoulou, M. Parhizkar, M. Edirisinghe, C.J. Luo, Copolymer composition and nanoparticle configuration enhance in vitro drug release behavior of poorly water-soluble progesterone for oral formulations, Int. J. Nanomedicine. 15 (2020) 5389–5403.