Preparation of Microvasculature-embedding Porous Hydrogels for 3D Cell Culture

被引:0
|
作者
Hori, Aruto [1 ]
Watabe, Yuki [1 ]
Yajima, Yuya [1 ]
Utoh, Rie [1 ]
Yamada, Masumi [1 ]
Seki, Minoru [1 ]
机构
[1] Chiba Univ, Dept Appl Chem & Biotechnol, Inage Ku, 1-33 Yayoi Cho, Chiba 2638522, Japan
关键词
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Although various types of hydrogel-based 3D cell culture platforms have been developed, it is difficult to prepare porous hydrogels encapsulating intact cells and having capillary networks with a one-step procedure. Here we propose a facile strategy to prepare microvasculature-embedding porous hydrogels for 3D cell culture, utilizing an aqueous two-phase dispersion system. We used an aqueous solution of photo-crosslinkable gelatin (GelMA) and polyethylene glycol (PEG) to form an aqueous two-phase dispersion system. A bi-continuous state was generated by re-mixing these two phases at a proper mixing ratio, and a sponge-like, porous hydrogel could be formed by selectively crosslinking the GelMA-rich phase via UV irradiation. We successfully encapsulated mammalian cells in the hydrogel matrix with a high cell viability, and confirmed that the porous hydrogel was superior to homogeneous hydrogels for cell culture. The presented hydrogel would be applicable to 3D-cell culture for various types of biomedical applications.
引用
收藏
页数:3
相关论文
共 50 条
  • [31] Hydrogels with Dynamically Controllable Mechanics and Biochemistry for 3D Cell Culture Platforms
    Hai-Yang Wu
    Lei Yang
    Jiang-Shan Tu
    Jie Wang
    Jin-Ge Li
    Hong-Ying Lv
    Xiao-Niu Yang
    Chinese Journal of Polymer Science, 2022, 40 : 38 - 46
  • [32] Viscoelastic and phototunable GelMA-alginate hydrogels for 3D cell culture
    Tansik, Gulistan
    Stowers, Ryan
    MRS ADVANCES, 2024, 9 (08) : 505 - 511
  • [33] Peptide hydrogels - versatile matrices for 3D cell culture in cancer medicine
    Worthington, Peter
    Pochan, Darrin J.
    Langhans, Sigrid A.
    FRONTIERS IN ONCOLOGY, 2015, 5
  • [34] Hydrogels with Dynamically Controllable Mechanics and Biochemistry for 3D Cell Culture Platforms
    Hai-Yang Wu
    Lei Yang
    Jiang-Shan Tu
    Jie Wang
    Jin-Ge Li
    Hong-Ying Lv
    Xiao-Niu Yang
    Chinese Journal of Polymer Science, 2022, (01) : 38 - 46
  • [35] Glutathione-triggered formation of molecular hydrogels for 3D cell culture
    Lv, Linna
    Liu, Hanxia
    Chen, Xuemei
    Yang, Zhimou
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2013, 108 : 352 - 357
  • [36] Stress relaxation hydrogels with tunable mechanics and their applications for 3D cell culture
    Lou, Junzhe
    Stowers, Ryan
    Chaudhuri, Ovijit
    Xia, Yan
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [37] Tunable Hydrogels from Pulmonary Extracellular Matrix for 3D Cell Culture
    Link, Patrick A.
    Pouliot, Robert A.
    Mikhaiel, Nabil S.
    Young, Bethany M.
    Heise, Rebecca L.
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2017, (119):
  • [38] Hydrogels with Dynamically Controllable Mechanics and Biochemistry for 3D Cell Culture Platforms
    Wu, Hai-Yang
    Yang, Lei
    Tu, Jiang-Shan
    Wang, Jie
    Li, Jin-Ge
    Lv, Hong-Ying
    Yang, Xiao-Niu
    CHINESE JOURNAL OF POLYMER SCIENCE, 2022, 40 (01) : 38 - 46
  • [39] Photopolymerizable Platelet Lysate Hydrogels for Customizable 3D Cell Culture Platforms
    Santos, Sara C.
    Custodio, Catarina A.
    Mano, Joao F.
    ADVANCED HEALTHCARE MATERIALS, 2018, 7 (23)
  • [40] Hydrocolloid Inks for 3D Printing of Porous Hydrogels
    Sears, Nicholas A.
    Wilems, Thomas S.
    Gold, Karli A.
    Lan, Ziyang
    Cereceres, Stacy N.
    Dhavalikar, Prachi S.
    Foudazi, Reza
    Cosgriff-Hernandez, Elizabeth M.
    ADVANCED MATERIALS TECHNOLOGIES, 2019, 4 (02)