State of the Art Technology for Bone Tissue Engineering and Drug Delivery

被引:30
|
作者
Bagde, A. D.
Kuthe, A. M.
Quazi, S.
Gupta, V.
Jaiswal, S.
Jyothilal, S.
Lande, N.
Nagdeve, S.
机构
关键词
CALCIUM-PHOSPHATE CEMENT; IN-VITRO ELUTION; MECHANICAL-PROPERTIES; COMPOSITE SCAFFOLDS; ANTIBIOTIC DELIVERY; BIOMATERIAL SCAFFOLDS; CERAMIC SCAFFOLDS; RELEASE; FABRICATION; BEADS;
D O I
10.1016/j.irbm.2019.03.001
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Background: Critical size bone defect and fracture unable to regenerate itself, inspire the origination and technological advancement in the field of bone tissue engineering (BTE). The strategies of bone tissue engineering are often classified into three groups: First, is a direct injection of cells into the tissue of interest; second is grafting of cell-scaffold constructs: and third is scaffold-based signaling molecules, drug delivery or both. Much research was available on the first two categories, still finding the structure and property of scaffold close towards the natural tissue is yet to achieve. Aim of the Review: The proposed mini review focus on ceramic biomaterials uses for bone regeneration and drug delivery. It covers the fabrication process of scaffold including conventional and nonconventional i.e. rapid prototyping approach along with it advantage. The use of scaffold for drug delivery and signaling molecules such as growth factor is an emerging field of research in tissue engineering. Conclusion: The biodegradable beads used as a local drug delivery system are ubiquitous in surgery to treat post-operative infections but does not play any role in tissue regeneration. The use of this clinically accepted drug delivery technique in bone regeneration is an alternative way for the treatment on several bone infections (especially osteomyelitis and arthritis associated with tuberculosis). It is predicted to be the future of organ replacement and treatment. (C) 2019 AGBM. Published by Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:133 / 144
页数:12
相关论文
共 50 条
  • [31] 3D Printing Technology Over a Drug Delivery for Tissue Engineering
    Lee, Jin Woo
    Cho, Dong-Woo
    [J]. CURRENT PHARMACEUTICAL DESIGN, 2015, 21 (12) : 1606 - 1617
  • [32] Nanoparticle technology in bone tissue engineering
    Kim, Kyobum
    Fisher, John P.
    [J]. JOURNAL OF DRUG TARGETING, 2007, 15 (04) : 241 - 252
  • [33] Natural marine sponges for bone tissue engineering: The state of art and future perspectives
    Granito, Renata Neves
    Custodio, Marcio Reis
    Muniz Renno, Ana Claudia
    [J]. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2017, 105 (06) : 1717 - 1727
  • [34] Bioactive glass scaffolds for bone tissue engineering: state of the art and future perspectives
    Fu, Qiang
    Saiz, Eduardo
    Rahaman, Mohamed N.
    Tomsia, Antoni P.
    [J]. MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2011, 31 (07): : 1245 - 1256
  • [35] Tissue engineering - state of the art and in future
    Meurer, A.
    Brochhausen, C.
    Kirkpatrick, C. J.
    [J]. ORTHOPADE, 2009, 38 (11): : 1007 - 1008
  • [36] Cardiac Tissue Engineering State of the Art
    Hirt, Marc N.
    Hansen, Arne
    Eschenhagen, Thomas
    [J]. CIRCULATION RESEARCH, 2014, 114 (02) : 354 - 367
  • [37] Cardiovascular tissue engineering: state of the art
    Vara, DS
    Salacinski, HJ
    Kannan, RY
    Bordenave, L
    Hamilton, G
    Seifalian, AM
    [J]. PATHOLOGIE BIOLOGIE, 2005, 53 (10): : 599 - 612
  • [38] A 3D Bioprinted Pseudo-Bone Drug Delivery Scaffold for Bone Tissue Engineering
    Kondiah, Pariksha Jolene
    Kondiah, Pierre P. D.
    Choonara, Yahya E.
    Marimuthu, Thashree
    Pillay, Viness
    [J]. PHARMACEUTICS, 2020, 12 (02)
  • [39] Composite or Modified Hydroxyapatite Microspheres as Drug Delivery Carrier for Bone and Tooth Tissue Engineering
    Wang, Zhe
    Shang, Jiaxin
    Zhang, Zheng
    [J]. CURRENT MEDICINAL CHEMISTRY, 2024,
  • [40] Translation of three-dimensional printing of ceramics in bone tissue engineering and drug delivery
    Yago Raymond
    Linh Johansson
    Emilie Thorel
    Maria-Pau Ginebra
    [J]. MRS Bulletin, 2022, 47 : 59 - 69