Literature DB >> 32150742

A novel waterborne polyurethane with biodegradability and high flexibility for 3D printing.

Zhaoxuan Feng1, Di Wang, Yudong Zheng, Liang Zhao, Tao Xu, Zhimeng Guo, M Irfan Hussain, Jinshi Zeng, Lingyun Lou, Yi Sun, Haiyue Jiang.   

Abstract

Three-dimensional (3D) printing provides a new approach of fabricating implantable products because it permits a flexible manner to extrude complex and customized shapes of the tissue scaffolds. Compared with other printable biomaterials, the polyurethane elastomer has several merits, including excellent mechanical properties and good biocompatibility. However, some intrinsic behavior, especially its high melting point and slow rate of degradation, hampered its application in 3D printed tissue engineering. Herein, we developed a 3D printable amino acid modified biodegradable waterborne polyurethane (WBPU) using a water-based green chemistry process. The flexibility of this material endows better compliance with tissue during implantation and prevents high modulus transplants from scratching surrounding tissues. The histocompatibility experiments show that the WBPU induces no apparent acute rejection or inflammation in vivo. We successfully fabricated a highly flexible WBPU scaffold by deposition 3D printing technology at a low temperature (50°C ~ 70 °C), and the printed products could support the adhesion and proliferation of chondrocytes and fibroblasts. The printed blocks possessed controllable degradability due to the different amounts of hydrophilic chain extender and did not cause accumulation of acidic products. In addition, we demonstrated that our WBPU is highly applicable for implantable tissue engineering because there is no cytotoxicity during its degradation. Taken together, we envision that this printable WBPU can be used as an alternative biomaterial for tissue engineering with low temperature printing, biodegradability, and compatibility.

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Year:  2020        PMID: 32150742     DOI: 10.1088/1758-5090/ab7de0

Source DB:  PubMed          Journal:  Biofabrication        ISSN: 1758-5082            Impact factor:   9.954


  7 in total

1.  Antibacterial and Alkali-responsive Cationic Waterborne Polyurethane Based on Modification of Aloe Emodin.

Authors:  Xiaoyan Xiong; Xiaobin Li; Zifan Zhu; Ending Zhang; Jun Shi; Mangeng Lu
Journal:  Chem Res Chin Univ       Date:  2022-08-04       Impact factor: 2.726

2.  Waterborne Polyurethane Acrylates Preparation towards 3D Printing for Sewage Treatment.

Authors:  Kunrong Li; Yan Li; Jiale Hu; Yuanye Zhang; Zhi Yang; Shuqiang Peng; Lixin Wu; Zixiang Weng
Journal:  Materials (Basel)       Date:  2022-05-05       Impact factor: 3.748

3.  Hierarchical macro-microporous WPU-ECM scaffolds combined with Microfracture Promote in Situ Articular Cartilage Regeneration in Rabbits.

Authors:  Mingxue Chen; YangYang Li; Shuyun Liu; Zhaoxuan Feng; Hao Wang; Dejin Yang; Weimin Guo; Zhiguo Yuan; Shuang Gao; Yu Zhang; Kangkang Zha; Bo Huang; Fu Wei; Xinyu Sang; Qinyu Tian; Xuan Yang; Xiang Sui; Yixin Zhou; Yufeng Zheng; Quanyi Guo
Journal:  Bioact Mater       Date:  2020-12-22

Review 4.  Waterborne Polyurethane Dispersions and Thin Films: Biodegradation and Antimicrobial Behaviors.

Authors:  Samy A Madbouly
Journal:  Molecules       Date:  2021-02-11       Impact factor: 4.411

5.  A novel bioactive polyurethane with controlled degradation and L-Arg release used as strong adhesive tissue patch for hemostasis and promoting wound healing.

Authors:  Faxing Zou; Yansen Wang; Yudong Zheng; Yajie Xie; Hua Zhang; Jishan Chen; M Irfan Hussain; Haoye Meng; Jiang Peng
Journal:  Bioact Mater       Date:  2022-01-07

6.  Value of 3D Printed PLGA Scaffolds for Cartilage Defects in Terms of Repair.

Authors:  Longkun Fan; Wei Teng; Jinqiu He; Dongni Wang; Chunhui Liu; Yujia Zhao; Limin Zhang
Journal:  Evid Based Complement Alternat Med       Date:  2022-08-03       Impact factor: 2.650

7.  Biodegradable, Stretchable and Transparent Plastic Films from Modified Waterborne Polyurethane Dispersions.

Authors:  Uttam C Paul; Gözde Bayer; Silvia Grasselli; Annalisa Malchiodi; Ilker S Bayer
Journal:  Polymers (Basel)       Date:  2022-03-16       Impact factor: 4.329

  7 in total

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