Hybrid functionalized coatings on Metallic Biomaterials for Tissue Engineering

被引:29
|
作者
Santos-Coquillat, Ana [2 ]
Martinez-Campos, Enrique [3 ,4 ]
Mora Sanchez, Hugo [1 ]
Moreno, Lara [1 ]
Arrabal, Raul [1 ]
Mohedano, Marta [1 ]
Gallardo, Alberto [3 ,4 ]
Rodriguez-Hernandez, Juan [3 ,4 ]
Matykina, Endzhe [1 ,4 ]
机构
[1] Univ Complutense, Fac Ciencias Quim, Dept Ingn Quim & Mat, Madrid 28040, Spain
[2] Inst Invest Sanitaria Gregorio Maranon, Expt Med & Surg Unit, Madrid 28007, Spain
[3] Inst Polymer Sci & Technol CSIC, Polymer Functionalizat Grp, Madrid 28040, Spain
[4] Inst Pluridisciplinar UCM, Grp Sintesis Organ & Bioevaluac, IQM CSIC, Unidad Asociada Al ICTP, Paseo de Juan XXIII 1, Madrid 28040, Spain
来源
关键词
Smart biomaterials; Hybrid coatings; Bone regeneration; Cardiovascular stents; Drug eluting coatings; Cell therapy; PLASMA ELECTROLYTIC OXIDATION; MICRO-ARC OXIDATION; TIO2 NANOTUBE ARRAYS; TITANIUM-DIOXIDE NANOTUBES; IN-VITRO CORROSION; COMPRESSION FATIGUE BEHAVIOR; POLYMER-COATED MAGNESIUM; MELTED TI-6AL-4V ALLOY; MG-CA ALLOYS; OF-THE-ART;
D O I
10.1016/j.surfcoat.2021.127508
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The review encompasses state-of-the-art strategies for design and fabrication of smart biomaterials for tissue engineering. The focus of the work is mainly put on metallic biomaterials with hybrid coatings consisting of bioceramic and polymeric layers with hierarchical organization and drug-eluting capacity. Key technologies and steps to design hybrid smart and multifunctional coatings on metallic cores for bone regeneration implants and cardiovascular stents are outlined, including additive manufacturing of titanium and magnesium alloys for permanent and temporary implant applications. Three levels of hierarchical surface functionalization are described: i) in situ modification of the core material, incorporating bioactive inorganic species and phases by means of ceramic coatings via anodic electrochemical treatments; ii) post-treatment application of polymer layers, monolithic or with specific porous breath figure topography; and iii) application of a cellular therapy component (single cell or cell sheet). Recent progress in incorporation of drug-eluting functionality into such materials via direct or nanocarrier-assisted loading is also highlighted.
引用
收藏
页数:31
相关论文
共 50 条
  • [31] The Biomaterials Conundrum in Tissue Engineering
    Williams, David F.
    TISSUE ENGINEERING PART A, 2014, 20 (7-8) : 1129 - 1131
  • [32] Biomaterials in myocardial tissue engineering
    Reis, Lewis A.
    Chiu, Loraine L. Y.
    Feric, Nicole
    Fu, Lara
    Radisic, Milica
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2016, 10 (01) : 11 - 28
  • [33] Biomaterials for tissue engineering applications
    Keane, Timothy J.
    Badylak, Stephen F.
    SEMINARS IN PEDIATRIC SURGERY, 2014, 23 (03) : 112 - 118
  • [34] Biomaterials for Brain Tissue Engineering
    Pettikiriarachchi, Jerani T. S.
    Parish, Clare L.
    Shoichet, Molly S.
    Forsythe, John S.
    Nisbet, David R.
    AUSTRALIAN JOURNAL OF CHEMISTRY, 2010, 63 (08) : 1143 - 1154
  • [35] Cellulose Biomaterials for Tissue Engineering
    Hickey, Ryan J.
    Pelling, Andrew E.
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2019, 7 (MAR):
  • [36] Biomaterials for vascular tissue engineering
    Ravi, Swathi
    Chaikof, Elliot L.
    REGENERATIVE MEDICINE, 2010, 5 (01) : 107 - 120
  • [37] Complexity in biomaterials for tissue engineering
    Place, Elsie S.
    Evans, Nicholas D.
    Stevens, Molly M.
    NATURE MATERIALS, 2009, 8 (06) : 457 - 470
  • [38] Boron biomaterials for tissue engineering
    Harmata, Andrew J.
    Murray, Richard A.
    Zhang, Guoqing
    Jecmenica, Mladen
    Neal, Rebekah A.
    Strausberg, Laura J.
    Campbell, Kirsti A.
    Botchwey, Edward A.
    Brayman, Kenneth L.
    Fraser, Cassandra L.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 238
  • [39] Biomaterials for tissue engineering: Summary
    Christenson, L
    Mikos, AG
    Gibbons, DF
    Picciolo, GL
    TISSUE ENGINEERING, 1997, 3 (01): : 71 - 76
  • [40] Hybrid biomaterials for tissue engineering: A preparative method for PLA or PLGA-collagen hybrid sponges
    Chen, GP
    Ushida, T
    Tateishi, T
    ADVANCED MATERIALS, 2000, 12 (06) : 455 - +