Bioactive, degradable and multi-functional three-dimensional membranous scaffolds of bioglass and alginate composites for tissue regenerative applications

被引:45
|
作者
Bargavi, P. [1 ]
Ramya, R. [2 ]
Chitra, S. [1 ]
Vijayakumari, S. [1 ]
Chandran, R. Riju [1 ]
Durgalakshmi, D. [3 ]
Rajashree, P. [4 ]
Balakumar, S. [1 ]
机构
[1] Univ Madras, Natl Ctr Nanosci & Nanotechnol, Guindy Campus, Chennai 600025, Tamil Nadu, India
[2] SRMIST, SRM Dent Coll, Chennai 600089, Tamil Nadu, India
[3] Anna Univ, Dept Med Phys, Chennai 600025, Tamil Nadu, India
[4] Univ Madras, CAS Crystallog & Biophys, Guindy Campus, Chennai 600025, Tamil Nadu, India
关键词
ZIRCONIA POROUS SCAFFOLDS; IN-VITRO; PORE-SIZE; SOL-GEL; NANOCOMPOSITE HYDROGELS; SWELLING BEHAVIOR; HYBRID HYDROGELS; CELL-CULTURE; GLASS; BIOMATERIALS;
D O I
10.1039/d0bm00714e
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
With a worldwide increase in the aged populace and associated geriatric diseases, there is an enormous need for the regeneration of degenerated organ systems. For this purpose, bioactive glass particulate (nBG) integrated alginate (Alg) composite membrane scaffolds were fabricated by a sol-gel assisted freeze-drying method and validated for their multifunctional utility in regenerative medicine. The presence of the combeite highly crystalline structure of nBG and Alg amorphous broad peaks were confirmed. Repetitive peaks from acids along with stretching confirmed the chemical interactions of the composites. Swelling ability, porosity, andin vitrodegradation and biomineralization were analysed for up to 7 days. The results indicated that reduced swelling and degradation enhanced apatite formation. Hemocompatibility and the hemostatic properties on scaffolds were also systematically investigated. Additionally, significant cyto-compatibility and proliferation were noted in a culture with KB3-1. Further 3-D co-cultures with HDF cells and KB3-1 cells exhibited spheroid formation on Alg, nBG/Alg and nBG-Zr/Alg with profound dynamism required to establish organoids of interest. Thus, the results indicate that these 3D hydrogel membranes could offer infinite possibilities in the field of regenerative medicine, notably as an extracellular matrix (ECM) supporting the regeneration of bone, intra-vascularization, and neo-tissue formation, such as cartilage and ligaments.
引用
收藏
页码:4003 / 4025
页数:23
相关论文
共 50 条
  • [41] Multi-functional Lagrangian flow structures in three-dimensional ac electro-osmotic micro-flows
    Speetjens, M. F. M.
    de Wispelaere, H. N. L.
    van Steenhoven, A. A.
    FLUID DYNAMICS RESEARCH, 2011, 43 (03)
  • [42] Preparation, characterization, and evaluation of genipin crosslinked chitosan/gelatin three-dimensional scaffolds for liver tissue engineering applications
    Zhang, Yi
    Wang, Qiang-Song
    Yan, Kuo
    Qi, Yun
    Wang, Gui-Fang
    Cui, Yuan-Lu
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2016, 104 (08) : 1863 - 1870
  • [43] Graphene oxide/alginate composites as novel bioinks for three-dimensional mesenchymal stem cell printing and bone regeneration applications
    Choe, Goeun
    Oh, Seulgi
    Seok, Ji Min
    Park, Su A.
    Lee, Jae Young
    NANOSCALE, 2019, 11 (48) : 23275 - 23285
  • [44] Surface modification of three-dimensional porous polymeric scaffolds in tissue engineering applications: A focus review on physical modifications methods
    Poddar, Deepak
    Jain, Purnima
    POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2022, 61 (12): : 1308 - 1333
  • [45] New Challenges and Prospective Applications of Three-Dimensional Bioactive Polymeric Hydrogels in Oral and Craniofacial Tissue Engineering: A Narrative Review
    Atia, Gamal Abdel Nasser
    Shalaby, Hany K. K.
    Ali, Naema Goda
    Morsy, Shaimaa Mohammed
    Ghobashy, Mohamed Mohamady
    Attia, Hager Abdel Nasser
    Barai, Paritosh
    Nady, Norhan
    Kodous, Ahmad S. S.
    Barai, Hasi Rani
    PHARMACEUTICALS, 2023, 16 (05)
  • [46] Preparation of three-dimensional multilayer ECM-simulated woven/knitted fabric composite scaffolds for potential tissue engineering applications
    Guo, Dandan
    Wang, Shuai
    Yin, Yuxiang
    Luo, Jun
    Meng, Chenjie
    Liu, Qingsheng
    Ni, Haiyan
    Feng, Jianyong
    TEXTILE RESEARCH JOURNAL, 2020, 90 (7-8) : 925 - 936
  • [47] Three-dimensional printed poly(L-lactide) copolymers with nano-hydroxyapatite scaffolds for enhanced osteogenic and regenerative activities in bone tissue engineering
    Fan, Tiantang
    Zhang, Yujue
    Meng, Xiao
    Qu, Yangcui
    Wang, Ying
    Liu, Qing
    Wang, Guannan
    COLLOID AND INTERFACE SCIENCE COMMUNICATIONS, 2022, 51
  • [48] Development of novel three-dimensional scaffolds based on bacterial nanocellulose for tissue engineering and regenerative medicine: Effect of processing methods, pore size, and surface area
    Osorio, Marlon
    Fernandez-Morales, Patricia
    Ganan, Piedad
    Zuluaga, Robin
    Kerguelen, Herbert
    Ortiz, Isabel
    Castro, Cristina
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2019, 107 (02) : 348 - 359
  • [49] The combination of multi-functional ingredients-loaded hydrogels and three-dimensional printed porous titanium alloys for infective bone defect treatment
    Qiao, Shichong
    Wu, Dongle
    Li, Zuhao
    Zhu, Yu
    Zhan, Fei
    Lai, Hongchang
    Gu, Yingxin
    JOURNAL OF TISSUE ENGINEERING, 2020, 11
  • [50] One-step method for the preparation of poly(methyl methacrylate) modified titanium-bioactive glass three-dimensional scaffolds for bone tissue engineering
    Han, Xiao
    Lin, Huiming
    Chen, Xiang
    Li, Xin
    Guo, Gang
    Qu, Fengyu
    IET NANOBIOTECHNOLOGY, 2016, 10 (02) : 45 - 53