Key components of engineering vascularized 3-dimensional bioprinted bone constructs

被引:58
作者
Shahabipour, Fahimeh
Ashammakhi, Nureddin
Oskuee, Reza K.
Bonakdar, Shahin
Hoffman, Tyler
Shokrgozar, Mohammad A.
Khademhosseini, Ali
机构
[1] Pasteur Inst Iran, Natl Cell Bank Iran, Tehran, Iran
[2] Univ Calif Los Angeles, C MIT, Los Angeles, CA USA
[3] Univ Calif Los Angeles, Calif NanoSyst Inst CNSI, Los Angeles, CA USA
[4] Univ Calif Los Angeles, Dept Bioengn, Los Angeles, CA USA
[5] Univ Calif Los Angeles, Dept Radiol Sci, Los Angeles, CA 90024 USA
[6] Mashhad Univ Med Sci, Inst Pharmaceut Technol, Targeted Drug Delivery Res Ctr, Mashhad, Razavi Khorasan, Iran
[7] Univ Calif Los Angeles, Dept Chem & Biomol Engn, Los Angeles, CA USA
基金
美国国家卫生研究院;
关键词
ENDOTHELIAL GROWTH-FACTOR; CALCIUM-PHOSPHATE CEMENT; IN-VITRO; MORPHOGENETIC PROTEIN-2; MECHANICAL-PROPERTIES; SEQUENTIAL DELIVERY; CELL-LADEN; STEM-CELLS; POLY(PROPYLENE FUMARATE); ENHANCE VASCULARIZATION;
D O I
10.1016/j.trsl.2019.08.010
中图分类号
R446 [实验室诊断]; R-33 [实验医学、医学实验];
学科分类号
1001 ;
摘要
Vascularization has a pivotal role in engineering successful tissue constructs. However, it remains a major hurdle of bone tissue engineering, especially in clinical applications for the treatment of large bone defects. Development of vascularized and clinically-relevant engineered bone substitutes with sufficient blood supply capable of maintaining implant viability and supporting subsequent host tissue integration remains a major challenge. Since only cells that are 100-200 mu m from blood vessels can receive oxygen through diffusion, engineered constructs that are thicker than 400 mu m face a challenging oxygenation problem. Following implantation in vivo, spontaneous ingrowth of capillaries in thick engineered constructs is too slow. Thus, it is critical to provide optimal conditions to support vascularization in engineered bone constructs. To achieve this, an in-depth understanding of the mechanisms of angiogenesis and bone development is required. In addition, it is also important to mimic the physiological milieu of native bone to fabricate more successful vascularized bone constructs. Numerous applications of engineered vascularization with cell-and/or microfabrication-based approaches seek to meet these aims. Three-dimensional (3D) printing promises to create patient-specific bone constructs in the future. In this review, we discuss the major components of fabricating vascularized 3D bioprinted bone constructs, analyze their related challenges, and highlight promising future trends.
引用
收藏
页码:57 / 76
页数:20
相关论文
共 42 条
  • [31] Development of a multicellular 3D-bioprinted microtissue model of human periodontal ligament-alveolar bone biointerface: Towards a pre-clinical model of periodontal diseases and personalized periodontal tissue engineering
    Vurat, Murat Taner
    Seker, Sukran
    Lalegul-Ulker, Ozge
    Parmaksiz, Mahmut
    Elcin, Ayse Eser
    Elcin, Yasar Murat
    [J]. GENES & DISEASES, 2022, 9 (04) : 1008 - 1023
  • [32] 3-Dimensional porous nanocomposite scaffolds based on cellulose nanofibers for cartilage tissue engineering: tailoring of porosity and mechanical performance
    Naseri, Narges
    Poirier, Jean-Michel
    Girandon, Lenart
    Froehlich, Mirjam
    Oksman, Kristiina
    Mathew, Aji P.
    [J]. RSC ADVANCES, 2016, 6 (08): : 5999 - 6007
  • [33] Non-Canonical Wnt16 and microRNA-145 Mediate the Response of Human Bone Marrow Stromal Cells to Additively Manufactured Porous 3-Dimensional Biomimetic Titanium-Aluminum-Vanadium Constructs
    Cohen, David. J.
    Berger, Michael B.
    Deng, Jingyao
    Jacobs, Thomas W.
    Boyan, Barbara D.
    Schwartz, Zvi
    [J]. CELLS, 2025, 14 (03)
  • [34] Laser-assisted fabrication and non-invasive imaging of 3D cell-seeding constructs for bone tissue engineering
    Mihailescu, M.
    Paun, I. A.
    Zamfirescu, M.
    Luculescu, C. R.
    Acasandrei, A. M.
    Dinescu, M.
    [J]. JOURNAL OF MATERIALS SCIENCE, 2016, 51 (09) : 4262 - 4273
  • [35] 3D bioprinted poly(lactic acid)/mesoporous bioactive glass based biomimetic scaffold with rapid apatite crystallization and in-vitro Cytocompatability for bone tissue engineering
    Pant, Shubham
    Thomas, Sabu
    Loganathan, Sravanthi
    Valapa, Ravi Babu
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 217 : 979 - 997
  • [36] 3D printing of poly(ε-caprolactone)/poly(D,L-lactide-co-glycolide)/hydroxyapatite composite constructs for bone tissue engineering
    Moncal, Kazim K.
    Heo, Dong N.
    Godzik, Kevin P.
    Sosnoski, Donna M.
    Mrowczynski, Oliver D.
    Rizk, Elias
    Ozbolat, Veil
    Tucker, Scott M.
    Gerhard, Ethan M.
    Dey, Madhuri
    Lewis, Gregory S.
    Yang, Jian
    Ozbolat, Ibrahim T.
    [J]. JOURNAL OF MATERIALS RESEARCH, 2018, 33 (14) : 1972 - 1986
  • [37] Preclinical Study of Human Bone Marrow-Derived Mesenchymal Stem Cells Using a 3-Dimensional Manufacturing Setting for Enhancing Spinal Fusion
    Cho, Sumin
    Choi, Hyemin
    Jeong, Hyundoo
    Kwon, Su Yeon
    Roh, Eun Ji
    Jeong, Kwang-Hun
    Baek, Inho
    Kim, Byoung Ju
    Lee, Soo-Hong
    Han, Inbo
    Cha, Jae Min
    [J]. STEM CELLS TRANSLATIONAL MEDICINE, 2022, 11 (10) : 1072 - 1088
  • [38] How does differential rod contouring contribute to 3-dimensional correction and affect the bone-screw forces in adolescent idiopathic scoliosis instrumentation?
    Wang, Xiaoyu
    Boyer, Laure
    Le Naveaux, Franck
    Schwend, Richard M.
    Aubin, Carl-Eric
    [J]. CLINICAL BIOMECHANICS, 2016, 39 : 115 - 121
  • [39] Influence of Alveolar Bone Loss and Cement Layer Thickness on the Biomechanical Behavior of Endodontically Treated Maxillary Incisors: A 3-dimensional Finite Element Analysis
    de Oliveira Dal Piva, Amanda Maria
    Mendes Tribst, Joao Paulo
    de Assuncao e Souza, Rodrigo Othavio
    Souto Borges, Alexandre Luiz
    [J]. JOURNAL OF ENDODONTICS, 2017, 43 (05) : 791 - 795
  • [40] Association of 3-Dimensional Cartilage and Bone Structure with Articular Cartilage Properties in and Adjacent to Autologous Osteochondral Grafts after 6 and 12 Months in a Goat Model
    Chan, Elaine F.
    Liu, I-Ling
    Semler, Eric J.
    Aberman, Harold M.
    Simon, Timothy M.
    Chen, Albert C.
    Truncale, Kate G.
    Sah, Robert L.
    [J]. CARTILAGE, 2012, 3 (03) : 255 - 266