Upload Avatar (500 x 500)
Yaobin Wu
wuyaobin2018@smu.edu.cn
Chinese, English
Guangdong
Southern Medical University
Basic Medical Sciences
  • 2012 - Bachelor's in Bioengineering: Xi'an Jiaotong University
  • 2017 - PhD in Biomedical Engineering: Xi'an Jiaotong University
  • Achievement: Selected for the Youth Talent Support Project by the China Association for Science and Technology
  • Achievement: Selected for the EU Marie Curie Scholars Talent Program
  • 2017.10-2018.02 - Postdoctoral Research: Hong Kong University of Science and Technology
  • 2018.03-Present - Associate Professor: Southern Medical University
  • Second Prize at the First China Science and Technology Youth Forum (2022)
  • Youth Talent Support Project by the China Association for Science and Technology (2021-2023)
  • EU Marie Curie Scholars Talent Program
Conductive Elastic Polymers
Supramolecular Self-Healing Elastic Materials
Photocurable Elastic Hydrogels
Bio 3D Printing
Tissue Engineering and Regenerative Medicine
  • Development of Poly(glycerol sebacate) and its Derivatives: a Review of the Progress over the Past Two Decades, Yu L, Zeng G, Xu J, Han M, Wang Z, Li T, Long M, Wang L, Huang W, Wu Y, 2022
  • Injectable Composite Hydrogel Encapsulating Gelatin Methacryloyl/Chitosan Microspheres as ARPE-19 Cell Transplantation Carriers, X. Cheng, P. Yin, T. Li, L. Luo, Y. Yang, L. Wang, W. Su, Y. Wang, Y. Li, Y. Wang, Wu Y, W. Huang, 2022
  • Bioprinted Anisotropic Scaffolds with Fast Stress Relaxation Bioink for Engineering 3D Skeletal Muscle and Repairing Volumetric Muscle Loss, Li T, Hou J, Wang L, Zeng G, Wang Z, Yu L, Yang Q, Yin J, Long M, Chen L, Chen S, Zhang H, Li Y, Wu Y, Huang W, 2022
  • 3D-printed high-density polyethylene scaffolds with bioactive and antibacterial layer-by-layer modification for auricle reconstruction, Yin J, Zhong J, Wang J, Wang Y, Li T, Wang L, Yang Y, Zhen Z, Li Y, Zhang H, Zhong S, Wu Y, Huang W, 2022
  • Injectable remote magnetic nanofiber/hydrogel multiscale scaffold for functional anisotropic skeletal muscle regeneration, Wang L, Li T, Wang Z, Hou J, Liu S, Yang Q, Yu L, Guo W, Wang Y, Guo B, Huang W, Wu Y, 2022
  • Fabrication of Tβ4-Exosome-releasing artificial stem cells for myocardial infarction therapy by improving coronary collateralization, Chen P, Ning X, Li W, Pan Y, Wang L, Li H, Fan X, Zhang J, Luo T, Wu Y, Ou C, Chen M, 2022
  • An Injectable Asymmetric‐Adhesive Hydrogel as a GATA6+ Cavity Macrophage Trap to Prevent the Formation of Postoperative Adhesions after Minimally Invasive Surgery, Wu X, Guo W, Wang L, Xu Y, Wang Z, Yang Y, Yu L, Huang J, Li Y, Zhang H, Wu Y, Li G, Huang W, 2021
  • 3D Bioprinting in Cardiac Tissue Engineering, Wang Z, Wang L, Li T, Liu S, Guo B, Huang W, Wu Y, 2021
  • Injectable microfluidic hydrogel microspheres based on chitosan and poly(ethylene glycol) diacrylate (PEGDA) as chondrocyte carriers, L. Lin, Y. Wang, L. Wang, J. Pan, Y. Xu, S. Li, D. Huang, J. Chen, Z. Liang, P. Yin, Y. Li, H. Zhang, Y. Wu, C. Zeng, W. Huang, 2020
  • 3D Bioprinted Multiscale Composite Scaffolds Based on Gelatin Methacryloyl (GelMA)/Chitosan Microspheres as a Modular Bioink for Enhancing 3D Neurite Outgrowth and Elongation, Chen J, Huang D, Wang L, Hou J, Zhang H, Li Y, Zhong S, Wang Y, Wu Y, Huang W, 2020
  • Aligned Conductive Core-Shell Biomimetic Scaffolds Based on Nanofiber Yarns/Hydrogel for Enhanced 3D Neurite Outgrowth Alignment and Elongation, Wang L, Wu Y, Hu T, Ma PX, Guo B, 2019
  • Micropatterned, electroactive, and biodegradable poly(glycerol sebacate)-aniline trimer elastomer for cardiac tissue engineering, Hu T, Wu Y, Zhao X, Wang, L, Bi, L, Ma, PX, Guo, B, 2019
  • Human skeletal muscle cells on engineered 3D platform express key growth and developmental proteins, Naik AR, Pernal S, Lewis KT, Wu Y, Wu H, Carruthers NJ, Stemmer PM, Jena BP, 2019
  • Conductive micropatterned polyurethane films as tissue engineering scaffolds for Schwann cells and PC12 cells, Wu Y, Wang L, Tianli H, Guo B, Ma PX, 2018
  • Interwoven aligned conductive nanofiber yarn/hydrogel composite scaffolds for engineered 3D cardiac anisotropy, Wu Y, Wang L, Guo B, Ma PX, 2017
  • Self-healing supramolecular bioelastomers with shape memory property as a multifunctional platform for biomedical applications via modular assembly, Wu Y, Wang L, Zhao X, Hou S, Guo B, Ma PX, 2016
  • Electroactive biodegradable polyurethane significantly enhanced Schwann cells myelin gene expression and neurotrophin secretion for peripheral nerve tissue engineering, Wu Y, Wang L, Guo B, Shao Y, Ma PX, 2016
  • Injectable electroactive hydrogels formed via host–guest interactions, Wu Y, Guo B, Ma PX, 2014
  • Injectable biodegradable hydrogels and microgels based on methacrylated poly(ethylene glycol)-co-poly(glycerol sebacate) multi-block copolymers: synthesis, characterization, and cell encapsulation, Wu Y, Wang L, Guo B, Ma PX, 2014
  • Nanofiber yarn/hydrogel core–shell scaffolds mimicking native skeletal muscle tissue for guiding 3D myoblast alignment, elongation, and differentiation, Wang L, Wu Y, Guo B, Ma PX, 2015
  • Electrospun conductive nanofibrous scaffolds for engineering cardiac tissue and 3D bioactuators, Wang L, Wu Y, Hu T, Guo B, Ma PX, 2017
Conductive Polymers Elasticity Self-Healing Hydrogels 3D Printing Tissue Engineering Regenerative Medicine Biomaterials Nanotechnology Biomedical Applications

Contact us

Let's talk!
* Required
* Required
* Required
* Invalid email address
By submitting this form, you agree that IoT ONE may contact you with insights and marketing messaging.
No thanks, I don't want to receive any marketing emails from IoT ONE.
Submit

Thank you for your message!
We will contact you soon.