Electrospun Collagen Nanofibers and Their Applications in Skin Tissue Engineering

被引:0
作者
Jia Xian Law
Ling Ling Liau
Aminuddin Saim
Ying Yang
Ruszymah Idrus
机构
[1] Universiti Kebangsaan Malaysia Medical Centre,Tissue Engineering Centre
[2] Universiti Kebangsaan Malaysia Medical Centre,Department of Physiology, Faculty of Medicine
[3] Ampang Puteri Specialist Hospital,Ear, Nose and Throat Consultant Clinic
[4] Keele University,Institute for Science and Technology in Medicine, School of Medicine
来源
Tissue Engineering and Regenerative Medicine | 2017年 / 14卷
关键词
Electrospinning; Collagen; Skin; Tissue engineering; Nanofiber; Scaffold;
D O I
暂无
中图分类号
学科分类号
摘要
Electrospinning is a simple and versatile technique to fabricate continuous fibers with diameter ranging from micrometers to a few nanometers. To date, the number of polymers that have been electrospun has exceeded 200. In recent years, electrospinning has become one of the most popular scaffold fabrication techniques to prepare nanofiber mesh for tissue engineering applications. Collagen, the most abundant extracellular matrix protein in the human body, has been electrospun to fabricate biomimetic scaffolds that imitate the architecture of native human tissues. As collagen nanofibers are mechanically weak in nature, it is commonly cross-linked or blended with synthetic polymers to improve the mechanical strength without compromising the biological activity. Electrospun collagen nanofiber mesh has high surface area to volume ratio, tunable diameter and porosity, and excellent biological activity to regulate cell function and tissue formation. Due to these advantages, collagen nanofibers have been tested for the regeneration of a myriad of tissues and organs. In this review, we gave an overview of electrospinning, encompassing the history, the instrument settings, the spinning process and the parameters that affect fiber formation, with emphasis given to collagen nanofibers’ fabrication and application, especially the use of collagen nanofibers in skin tissue engineering.
引用
收藏
页码:699 / 718
页数:19
相关论文
共 696 条
[1]  
Tam J(2013)Fractional skin harvesting: autologous skin grafting without donor-site morbidity Plast Reconstr Surg Glob Open 1 e47-926
[2]  
Wang Y(1993)Tissue engineering Science 260 920-95
[3]  
Farinelli WA(2011)Biomaterials & scaffolds for tissue engineering Mater Today 14 88-861
[4]  
Jiménez-Lozano J(2016)A comparative study of skin cell activities in collagen and fibrin constructs Med Eng Phys 38 854-1884
[5]  
Franco W(2016)Secretion of wound healing mediators by single and bi-layer skin substitutes Cytotechnology 68 1873-300
[6]  
Sakamoto FH(2015)Concentration-dependent effect of platelet-rich plasma on keratinocyte and fibroblast wound healing Cytotherapy 17 293-215
[7]  
Langer R(2017)Platelet-rich plasma with keratinocytes and fibroblasts enhance healing of full-thickness wounds J Tissue Viability 26 208-479
[8]  
Vacanti J(2008)Scaffolding in tissue engineering: general approaches and tissue-specific considerations Eur Spine J 17 467-75
[9]  
O’brien FJ(2016)Optimization of liver decellularization maintains extracellular matrix micro-architecture and composition predisposing to effective cell seeding PLoS ONE 11 e0155324-258
[10]  
Law JX(2015)Optimization and critical evaluation of decellularization strategies to develop renal extracellular matrix scaffolds as biological templates for organ engineering and transplantation Am J Transplant 15 64-880