Nanomaterials-Based Hybrid Bioink Platforms in Advancing 3D Bioprinting Technologies for Regenerative Medicine

被引:4
|
作者
Chandra, Dilip Kumar [1 ]
Reis, Rui L. [2 ,3 ]
Kundu, Subhas C. [2 ,3 ]
Kumar, Awanish [1 ]
Mahapatra, Chinmaya [1 ]
机构
[1] Natl Inst Technol Raipur, Dept Biotechnol, Raipur 492010, Chhattisgarh, India
[2] Univ Minho, I3Bs Res Inst Biomat Biodegradables & Biomimet, Headquarters European Inst Excellence Tissue Engn, 3Bs Res Grp, P-4805017 Guimaraes, Portugal
[3] ICVS 3Bs PT Govt Associate Lab, P-4800058 Braga, Portugal
来源
ACS BIOMATERIALS SCIENCE & ENGINEERING | 2024年 / 10卷 / 07期
关键词
3D bioprinting; hybrid bioink; nanomaterials; tissue regenerations; MECHANICAL-PROPERTIES; COMPOSITE HYDROGEL; ALGINATE; SCAFFOLDS; PRINTABILITY; GELATIN; DIFFERENTIATION; NANOCLAY; INKS; NANOPARTICLES;
D O I
10.1021/acsbiomaterials.4c00166
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
3D bioprinting is recognized as the ultimate additive biomanufacturing technology in tissue engineering and regeneration, augmented with intelligent bioinks and bioprinters to construct tissues or organs, thereby eliminating the stipulation for artificial organs. For 3D bioprinting of soft tissues, such as kidneys, hearts, and other human body parts, formulations of bioink with enhanced bioinspired rheological and mechanical properties were essential. Nanomaterials-based hybrid bioinks have the potential to overcome the above-mentioned problem and require much attention among researchers. Natural and synthetic nanomaterials such as carbon nanotubes, graphene oxides, titanium oxides, nanosilicates, nanoclay, nanocellulose, etc. and their blended have been used in various 3D bioprinters as bioinks and benefitted enhanced bioprintability, biocompatibility, and biodegradability. A limited number of articles were published, and the above-mentioned requirement pushed us to write this review. We reviewed, explored, and discussed the nanomaterials and nanocomposite-based hybrid bioinks for the 3D bioprinting technology, 3D bioprinters properties, natural, synthetic, and nanomaterial-based hybrid bioinks, including applications with challenges, limitations, ethical considerations, potential solution for future perspective, and technological advancement of efficient and cost-effective 3D bioprinting methods in tissue regeneration and healthcare.
引用
收藏
页码:4145 / 4174
页数:30
相关论文
共 50 条
  • [21] Advancements of 3D bioprinting in regenerative medicine: Exploring cell sources for organ fabrication
    Ma, Yue
    Deng, Bo
    He, Runbang
    Huang, Pengyu
    HELIYON, 2024, 10 (03)
  • [22] Recent advances in the 3D skin bioprinting for regenerative medicine: Cells, biomaterials, and methods
    Carvalho, Loyna Nobile
    Peres, Lucas Correia
    Alonso-Goulart, Vivian
    dos Santos, Beatriz Jardim
    Braga, Mario Fernando Alves
    Campos, Felipe dos Anjos Rodrigues
    Palis, Gabriela de Aquino Pinto
    Quirino, Ludmilla Sousa
    Guimaraes, Laura Duarte
    Lafeta, Sofia Alencar
    Simbara, Marcia Mayumi Omi
    Castro-Filice, Leticia de Souza
    JOURNAL OF BIOMATERIALS APPLICATIONS, 2024, 39 (05) : 421 - 438
  • [23] Hydrogels for 3D bioprinting in tissue engineering and regenerative medicine: Current progress and challenges
    Fang, Wenzhuo
    Yang, Ming
    Wang, Liyang
    Li, Wenyao
    Liu, Meng
    Jin, Yangwang
    Wang, Yuhui
    Yang, Ranxing
    Wang, Ying
    Zhang, Kaile
    Fu, Qiang
    INTERNATIONAL JOURNAL OF BIOPRINTING, 2023, 9 (05) : 207 - 238
  • [24] Visible Light-Induced 3D Bioprinting Technologies and Corresponding Bioink Materials for Tissue Engineering: A Review
    Zheng, Zizhuo
    Eglin, David
    Alini, Mauro
    Richards, Geoff R.
    Qin, Ling
    Lai, Yuxiao
    ENGINEERING, 2021, 7 (07) : 966 - 978
  • [25] A dentin-derived hydrogel bioink for 3D bioprinting of cell laden scaffolds for regenerative dentistry
    Athirasala, Avathamsa
    Tahayeri, Anthony
    Thrivikraman, Greeshma
    Franca, Cristiane M.
    Monteiro, Nelson
    Tran, Victor
    Ferracane, Jack
    Bertassoni, Luiz E.
    BIOFABRICATION, 2018, 10 (02)
  • [26] Carbon Nanomaterials-Based Novel Hybrid Platforms for Electrochemical Sensor Applications in Drug Analysis
    Cetinkaya, Ahmet
    Kaya, S. Irem
    Ozcelikay, Goksu
    Budak, Fatma
    Ozkan, Sibel A.
    CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 2024, 54 (05) : 1227 - 1242
  • [27] Optimization of Polysaccharide Hydrocolloid for the Development of Bioink with High Printability/Biocompatibility for Coextrusion 3D Bioprinting
    Lim, Wonseop
    Shin, Seon Young
    Cha, Jae Min
    Bae, Hojae
    POLYMERS, 2021, 13 (11)
  • [28] Mechanically Tunable Bioink for 3D Bioprinting of Human Cells
    Forget, Aurelien
    Blaeser, Andreas
    Miessmer, Florian
    Koepf, Marius
    Campos, Daniela F. Duarte
    Voelcker, Nicolas H.
    Blencowe, Anton
    Fischer, Horst
    Shastri, V. Prasad
    ADVANCED HEALTHCARE MATERIALS, 2017, 6 (20)
  • [29] Scaffolds Bioink for Three-Dimensional (3D) Bioprinting
    An, Jin-Hee
    Kim, Hack-Youn
    FOOD SCIENCE OF ANIMAL RESOURCES, 2025, 45 (01) : 126 - 144
  • [30] Hyaluronic acid as a bioink for extrusion-based 3D printing
    Petta, D.
    D'Amora, U.
    Ambrosio, L.
    Grijpma, D. W.
    Eglin, D.
    D'Este, M.
    BIOFABRICATION, 2020, 12 (03)