The Use of Electrospinning Technique on Osteochondral Tissue Engineering

被引:24
作者
Casanova, Marta R. [1 ,2 ]
Reis, Rui L. [1 ,2 ]
Martins, Albino [1 ,2 ]
Neves, Nuno M. [1 ,2 ]
机构
[1] 3Bs Res Grp Biomat Biodegradable & Biomimet, Zona Ind Gandra, Avepk Parque Ciencia & Tecnol, Barco, Guimaraes, Portugal
[2] ICVS 3Bs PT Govt Associate Lab, Braga, Guimaraes, Portugal
来源
OSTEOCHONDRAL TISSUE ENGINEERING: NANOTECHNOLOGY, SCAFFOLDING-RELATED DEVELOPMENTS AND TRANSLATION | 2018年 / 1058卷
关键词
Nanofibrous meshes; Processing parameters; Topographies; Surface functionalization; POLYCAPROLACTONE NANOFIBER MESHES; SURFACE MODIFICATION; MOLECULAR-WEIGHT; CELL-DIFFERENTIATION; POLYMER NANOFIBERS; PLASMA TREATMENT; SCAFFOLDS; BONE; COMPOSITE; FIBERS;
D O I
10.1007/978-3-319-76711-6_11
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Electrospinning, an electrostatic fiber fabrication technique, has attracted significant interest in recent years due to its versatility and ability to produce highly tunable nanofibrous meshes. These nanofibrous meshes have been investigated as promising tissue engineering scaffolds since they mimic the scale and morphology of the native extracellular matrix. The sub-micron diameter of fibers produced by this process presents various advantages like the high surface area to volume ratio, tunable porosity, and the ability to manipulate the nanofiber composition in order to get desired properties and functionality. Electrospun fibers can be oriented or arranged randomly, giving control over both mechanical properties and the biological response to the fibrous scaffold. Moreover, bioactive molecules can be integrated with the electrospun nanofibrous scaffolds in order to improve the cellular response. This chapter presents an overview of the developments on electrospun polymer nanofibers including processing, structure, and their applications in the field of osteochondral tissue engineering.
引用
收藏
页码:247 / 263
页数:17
相关论文
共 92 条
[11]   Electrospun scaffold containing TGF-β1 promotes human mesenchymal stem cell differentiation towards a nucleus pulposus-like phenotype under hypoxia [J].
Cui, Xiang ;
Liu, Minghan ;
Wang, Jiaxu ;
Zhou, Yue ;
Xiang, Qiang .
IET NANOBIOTECHNOLOGY, 2015, 9 (02) :76-84
[12]   Electrospun Nanofibrous Meshes Cultured With Wharton's Jelly Stem Cell: An Alternative for Cartilage Regeneration, Without the Need of Growth Factors [J].
da Silva, Marta Alves ;
Martins, Albino ;
Costa-Pinto, Ana R. ;
Monteiro, Nelson ;
Faria, Susana ;
Reis, Rui L. ;
Neves, Nuno M. .
BIOTECHNOLOGY JOURNAL, 2017, 12 (12)
[13]   Evaluation of Extracellular Matrix Formation in Polycaprolactone and Starch-Compounded Polycaprolactone Nanofiber Meshes When Seeded with Bovine Articular Chondrocytes [J].
da Silva, Marta Alves ;
Crawford, Aileen ;
Mundy, Jenifer ;
Martins, Albino ;
Araujo, Jose V. ;
Hatton, Paul V. ;
Reis, Rui L. ;
Neves, Nuno M. .
TISSUE ENGINEERING PART A, 2009, 15 (02) :377-385
[14]   A comparative study of jet formation and nanofiber alignment in electrospinning and electrocentrifugal spinning systems [J].
Dabirian, F. ;
Ravandi, S. A. Hosseini ;
Pishevar, A. R. ;
Abuzade, R. A. .
JOURNAL OF ELECTROSTATICS, 2011, 69 (06) :540-546
[15]   Controlled deposition of electrospun poly(ethylene oxide) fibers [J].
Deitzel, JM ;
Kleinmeyer, JD ;
Hirvonen, JK ;
Tan, NCB .
POLYMER, 2001, 42 (19) :8163-8170
[16]   Controlled deposition of electrospun poly(ethylene oxide) fibers [J].
Deitzel, JM ;
Kleinmeyer, JD ;
Hirvonen, JK ;
Tan, NCB .
POLYMER, 2001, 42 (19) :8163-8170
[17]   Electrospun nanofibers: Internal structure and intrinsic orientation [J].
Dersch, R ;
Liu, TQ ;
Schaper, AK ;
Greiner, A ;
Wendorff, JH .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2003, 41 (04) :545-553
[18]  
DOSHI J, 1995, J ELECTROSTAT, V35, P151, DOI 10.1016/0304-3886(95)00041-8
[19]  
Erisken C, 2011, TISSUE ENG PT A, V17, P1239, DOI [10.1089/ten.tea.2009.0693, 10.1089/ten.TEA.2009.0693]
[20]   Viscoelastic and Biomechanical Properties of Osteochondral Tissue Constructs Generated From Graded Polycaprolactone and Beta-Tricalcium Phosphate Composites [J].
Erisken, Cevat ;
Kalyon, Dilhan M. ;
Wang, Hongjun .
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 2010, 132 (09)