Electrospinning is a popular technique used to mimic the natural sub-micron features of the native tissue. The ultra-fine fibers provide a favorable extracellular matrix-like environment for regulation of cellular functions. This article summarizes and reviews the current advances in electrospun fiber application and focuses on the novel strategies applied for tissue regeneration and repair. It explores the different factors affecting the attachment and proliferation of mesenchymal stem cells (MSCs) on the electrospun substrates. The influence of different features of electrospun fibers in the differentiation of MSCs into specific lineages (bone, cartilage, tendon/ligament and nerves) has been elaborated. In addition, the different techniqu...
Tissue engineering is a promising strategy with great therapeutic potential intended to assist the n...
Tendon and ligament tissue regeneration and replacement are complex since scaffolds need to guarante...
Electrospinning technology is currently the only technology capable of directly and continuously pre...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
The process of electrospinning has experienced decades of development for a variety of applications ...
Tissue engineering makes use of the principles of medicine, biology and engineering and integrates t...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Electrospinning is considered the most versatile micro‐/nanofiber fabrication technology. The electr...
Worldwide research on electrospinning enabled it as a versatile technique for producing nanofibers w...
Electrospinning has been employed extensively in tissue engineering to generate nanofibrous scaffold...
Tissue engineering is an interdisciplinary field that integrates medical, biological, and engineerin...
Electrospinning is the technique for producing nonwoven fibrous structures, to mimic the fabrication...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
Tissue engineering is a promising strategy with great therapeutic potential intended to assist the n...
Tendon and ligament tissue regeneration and replacement are complex since scaffolds need to guarante...
Electrospinning technology is currently the only technology capable of directly and continuously pre...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
The process of electrospinning has experienced decades of development for a variety of applications ...
Tissue engineering makes use of the principles of medicine, biology and engineering and integrates t...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Electrospinning is considered the most versatile micro‐/nanofiber fabrication technology. The electr...
Worldwide research on electrospinning enabled it as a versatile technique for producing nanofibers w...
Electrospinning has been employed extensively in tissue engineering to generate nanofibrous scaffold...
Tissue engineering is an interdisciplinary field that integrates medical, biological, and engineerin...
Electrospinning is the technique for producing nonwoven fibrous structures, to mimic the fabrication...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
Tissue engineering is a promising strategy with great therapeutic potential intended to assist the n...
Tendon and ligament tissue regeneration and replacement are complex since scaffolds need to guarante...
Electrospinning technology is currently the only technology capable of directly and continuously pre...