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Xiaoran Li


Personal Resume

Currently she is a Full Professor in Innovation Center for Textile Science and Technology, Donghua University. She has undertaken 10 research projects such as Ministry of Science and Technology of China, National Natural Science Foundation of China, Natural Science Foundation of Shanghai, DHU Distinguished Young Professor Program, etc.




Education



  2000-2004

Hebei University of Technology, China

B.S.

  2004-2010

Tianjin University, China

Ph.D. 

  2007-2009

Washington University in St. Louis, USA

Joint Ph.D.




Employment History



  2010-2012

Chinese Academy of Sciences, China

Assistant prof.

  2013-2018Chinese Academy of Sciences, ChinaAssociate prof.

  2018-present

Innovation Center for Textile Science and Technology, 

Donghua University

Full prof.




Major Research Achievements

       Her main research interests are fabrication of fiber based biomedical materials and their applications in the fields of wound dressing materials, and hemostatic materials etc. She has published more than 60 peer reviewed journal papers in some high-quality journals including Advanced Functional Materials, ACS Nano, Nano Letters, Biomaterials, Advanced Drug Delivery Reviews, Small etc. She has held 18 authorized Chinese invention patents.

Representative Works:

[1] Mengya Li, Yuping Dong, Maidi Wang, Xuyan Lu, Xiaoran Li*, Jianyong Yu and Bin Ding*. Hydrogel/nanofibrous membrane composites with enhanced water retention, stretchability and self-healing capability for wound healing. Composites Part B: Engineering 2023, 257, 10672.

[2] Maidi Wang, Jingtao Du, Mengya Li, Pierini Filippo, Xiaoran Li*, Jianyong Yu and Bin Ding*. In situ forming double-crosslinked hydrogels with highly dispersed short fibers for the treatment of irregular woundsBiomaterials Science 2023, 11, 2383-2394.

[3] Xuyan Lu, Xiaoran Li*, Jianyong Yu and Bin Ding*. Nanofibrous hemostatic materials: Structural design, fabrication methods, and hemostatic mechanisms. Acta Biomaterialia 2022, 154, 49-62.

[4] Zhenni Chen, Haimin Zhang, Caixia Fan, Yan Zhuang, Wen Yang, Yanyan Chen, He Shen, Zhifeng Xiao, Yannan Zhao*, Xiaoran Li* and Jianwu Dai*. Adhesive, stretchable, and spatiotemporal delivery fibrous hydrogels harness endogenous neural stem/progenitor cells for spinal cord injury repair. ACS Nano 2022, 16 (2), 1986.

[5] Jingtao Du, Yueming Yao, Maidi Wang, Ruigong Su*, Xiaoran Li*, Jianyong Yu and Bin Ding*. Programmable building of radially gradient nanofibrous patches enables deployment, bursting bearing capability, and stem cell recruitment. Advanced Functional Materials 2021, 8, 2109833.

[6] Yuping Dong, Yuqi Zheng, Keyan Zhang, Yueming Yao, Lihuan Wang, Xiaoran Li*, Jianyong Yu and Bin Ding*. Electrospun nanofibrous materials for wound healing. Advanced Fiber Materials 2020, 2, 212-227.

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College of Textiles
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