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姓名: 王小莺

部门: 生命科学技术学院

性别:

职务:

职称: 副教授

学位: 博士

毕业院校: 中山大学

联系电话: 020-85226923

电子邮箱: wangxi@jnu.edu.cn

办公地址:

通讯地址: 暨南大学生物医学工程系

邮编: 510632

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个人简介

王小莺,女,博士,副教授。就读研究生以来一直从事生物医用高分子材料的合成与改性研究,在合成新型生物医用材料、材料的结构与性能研究、组织工程支架的设计与构建以及支架材料的微观结构对细胞增殖、分化的影响等方面做了大量的研究工作,积累了丰富的科研经验。到目前为止,已主持了国家青年基金,教育部归国留学人员基金,广东省自然科学基金项目面上项目,广东省科技计划项目等多项项目的研究,并参与了多项国家基金面上项目,教育部博士点基金,广东省高等学校高层次人才项目的研究。已在SCI国际期刊发表研究论文40余篇,获得国际授权专利1项,中国授权专利7项。

 

学习经历

1994.07-1998.06湖北大学化学与材料科学学院高分子材料系,获工学学士学位。

2000.09-2005.06 中山大学高分子研究所高分子化学与物理专业,获理学博士学位。

 

工作经历

2005.11-2007.12德国马尔堡大学(Philipps University of Marburg)药学系,博士后。

2008.02-2010.03美国特拉华大学(University of Delaware)材料系,博士后。

2015.9-20169美国塔夫茨大学(Tufts University)生物医学工程系,访问学者。

2010.07-至今暨南大学生物医学工程系副教授。

 

 

研究方向

主要论文

[1] Chao Ye, Wang Jianjin, Xu Yiyi, Zheng Ke, Wang Xiaoying,* Ling shengjie,* Kaplan D. L.*. De Novo Synthesis and Assembly of Flexible and Biocompatible Physical Sensing Platforms.Adv. Mater. Technol. 2018,1800141.

[2] Wu, Chaoxi; Wang, Xiaoying; Chu, Bin; Tang, Shunqing; Wang, Yifei. Self-Assembly of Core-Corona β-Glucan into Stiff and Metalizable Nanostructures from 1D to 3D. ACS Nano 2018, 12, 10545−10553.

[3] Zunkai Xu, Ruifang Zhao, Xiuying Huang, Xiaoying Wang, Shunqing Tang. Fabrication and biocompatibility of agarose acetate nanofibrous membrane by electrospinning. Carbohydrate Polymers, 2018, 197: 237-245.

[4] Xiaoying Wang, Yamin Li, Quanshun Li, Caleb Neufeld, Dimitra Pouli, Shuo Sun, Liu Yang, Pu Deng, Ming Wang, Irene Georgakoudi, Shunqing Tang, Qiaobing Xu. Hyaluronic Acid Modification of RNase A and its Intracellular Delivery Using Lipid-like Nanoparticles. J of controlled release, 2017, 263, SI, 39-45.

[5] Wu, Chaoxi; Wang, Xiaoying; Wang, Jianjing; Zhang, Zhen; Wang, Zhiping; Wang, Yifei; Tang, Shunqing. Tile-based self-assembly of a triple-helical polysaccharide into cell wall-like mesoporous nanocapsules, NANOSCALE, 2017, 9(28): 9938-9945.

[6] Liu, Hua; Liu, Wenjun; *Luo, Binghong; Wen, Wei; Liu, Mingxian; Wang, Xiaoying; *Zhou, Changren. Electrospun composite nanofiber membrane of poly(L-lactide) and surface grafted chitin whiskers: Fabrication, mechanical properties and cytocompatibility. Carbohydrate Polymers, 2016, 147: 216-225.

[7] Li, Huihua; Luo, Chuang; *Luo, Binghong; Wen, Wei; Wang, Xiaoying; Ding, Shan; Zhou, Changren. Enhancement of growth and osteogenic differentiation of MC3T3-E1 cells via facile surface functionalization of polylactide membrane with chitooligo-saccharide based on polydopamine adhesive coating. Applied Surface Science, 2016, 360: 858-865.

[8] Hai-Qin Deng, Hui-Heng Lin, Jian-Jin Wang, Jing Lei, Shun-Qing Tang, and XiaoYing Wang*. Design and Synthesis of Linear Biodegradable Elastomers for Soft Tissue Engineering. International Conference on Medicine and Biopharmaceutical (ICMB 2015), Guilin, Guangxi, August 15-16, 2015.

[9] Xu, Wan; Luo, Binghong; Wen, Wei; Xie, Weijing; Wang, Xiaoying; Liu, Mingxian; Zhou, Changren. Surface Modification of Halloysite Nanotubes with L-lactic Acid: An Effective Route to High-Performance Poly(L-lactide) Composites. Journal of Applied Polymer Science, 2015, 132: 41

[10] Jianjin Wang, Haiqing Deng, Huiheng Lin, Zheng Wu, Shunqing Tang, Xiaoying Wang*. Linear Biodegradable Elastomers with Tunable Elastic and Shape-memory Properties for Soft Tissue Engineering. NanoMed, Guangzhou, January 5-7, 2017.

[11] Hai-Qin Deng, Hui-Heng Lin, Jian-Jin Wang, Jing Lei, Shun-Qing Tang, and XiaoYing Wang*. Design and Synthesis of Linear Biodegradable Elastomers for Soft Tissue Engineering. International Conference on Medicine and Biopharmaceutical (ICMB 2015), Guilin, Guangxi, August 15-16, 2015.

[12] Linmin Zhang, Yueheng Wu, Chaoxi Wu, Xiaoying Wang, Shunqing Tang. An agarose-PEI-HA copolymer as tumor-targeted gene vector with high efficiency and low toxicity. J of controlled release, 2017, 259, e85.

[13] Xiaoying Wang, Sheng Zhong, Lisa A. Gurski, Darrin J. Pochan, Mary C. Farach-Carson and Xinqiao Jia. Amphiphilic block copolyesters bearing pendant cyclic ketal groups as nanocarriers for controlled release of camptothecin. J. Biomater. Sci. Polymer Edn. J. Biomater. Sci. Polymer Edn. 2011, 22, 1275-1298.

[14] Cuiping Guo, Weicai Chen, Shudong Lin, Hao Li, Du Cheng, Xiaoying Wang, Xintao Shuai. Synthesis And Characterization Of Polycation Block Copolymer Poly(L-lysine)-b-Poly[N-(N',N'- Diisopropyl-Aminoethyl)Aspartamide] As Potential pH Responsive Gene Delivery System. Polymer, 2012, 53, 342-349.

[15] Erik Rytting, Michael Bur, Regis Cartier, Thierry Bouyssou, Xiaoying Wang, Michael Krüger, Claus-Michael Lehr, Thomas Kissel. In vitro and in vivo performance of biocompatible negatively charged salbutamol loaded nanoparticles. Journal of Controlled Release, 2010, 141(1), 101-107.

[16] A. Henning, M. Schneider, N. Nafee, L. Muijs, E. Rytting, X. Wang, T. Kissel, D. Grafahrend, D. Klee, C.-M. Lehr. Influence of Particle Size and Material Properties on Mucociliary Clearance from the Airways. Journal of Aerosol Medicine and Pulmonary Drug Delivery. 2010, 23(4):233-241.

[17] MoritzBeck-Broichsitter, Rytting Erik, Tobias Lebhardt, Wang, xiaoying, Kissel Thomas. Preparation of nanoparticles by solvent displacement for drug delivery: A shift in the “ouzo region” upon drugloading. European Journal of Pharmaceutical Sciences. 2010, 41(2), 244-253.

18] WangXiaoying; Xiao, Longxi; Liu, Chao; Jia, Xinqiao. Block copolyester micelles as nanocarriers for sustained release of camptothecin. Polymer Preprints (American Chemical Society, Division of Polymer Chemistry) 2009, 50(1), 1472-1473.

[19] Wang, xiaoying; Xie, Xiulan; Cai, Cuifang; Rytting, Erik; Steele, Terry; Kissel, Thomas.

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