Effects of Six Processing Parameters on the Size of PCL Fibers Prepared by Melt Electrospinning Writing [PDF]
Melt electrospinning writing is a new and promising method for fabricating micro/nanofibers, which has shown great prospects in the biomedical fields such as 3D printing of porous scaffolds.
Yu Xie +5 more
doaj +7 more sources
Melt Electrospinning Writing of Magnetic Microrobots [PDF]
The magnetic microrobots actuated by an external magnetic field can access distant, enclosed, and small spaces under fuel‐free conditions, which is apromising technology for manipulation and delivery under microenvironment; however, the complicated ...
Yingchun Su +8 more
doaj +7 more sources
Biomimicry in Bio-Manufacturing: Developments in Melt Electrospinning Writing Technology Towards Hybrid Biomanufacturing [PDF]
Melt electrospinning writing has been emerged as a promising technique in the field of tissue engineering, with the capability of fabricating controllable and highly ordered complex three-dimensional geometries from a wide range of polymers.
Ferdows Afghah +3 more
doaj +6 more sources
Melt Electrospinning Writing of Poly‐Hydroxymethylglycolide‐co‐ε‐Caprolactone‐Based Scaffolds for Cardiac Tissue Engineering [PDF]
Current limitations in cardiac tissue engineering revolve around the inability to fully recapitulate the structural organization and mechanical environment of native cardiac tissue. This study aims at developing organized ultrafine fiber scaffolds with improved biocompatibility and architecture in comparison to the traditional fiber scaffolds obtained ...
Miguel Castilho +2 more
exaly +14 more sources
Polycaprolactone (PCL) scaffold is a common biological material for tissue engineering, owing to its good biocompatibility, biodegradability and plasticity.
Zhijun Chen +9 more
doaj +8 more sources
Melt Electrospinning Writing of Mesh Implants for Pelvic Organ Prolapse Repair [PDF]
Over the past decade, melt electrospinning writing has attracted renewed attention. When combined with three-dimensional (3D) printing capabilities, complex 3D structures can be produced, from ultrafine fibers in the absence of toxic solvents, making it particularly attractive to fabricate customized scaffolds and implants for ...
Rynkevic R +2 more
exaly +4 more sources
Medical-grade polycaprolactone scaffolds made by melt electrospinning writing for oral bone regeneration – a pilot study in vitro [PDF]
Background The spectrum of indications for the use of membranes and scaffolds in the field of oral and maxillofacial surgery includes, amongst others, guided bone regeneration (GBR). Currently available membrane systems face certain disadvantages such as
A. Fuchs +8 more
doaj +5 more sources
Fabrication of heterogeneous scaffolds using melt electrospinning writing: Design and optimization
Melt electrospinning writing (MEW) has recently emerged as a direct three-dimensional (3D) writing approach for the fabrication of orderly porous structures with well-defined geometrical features.
Yuan Jin +6 more
doaj +4 more sources
Integrating melt electrospinning writing and microfluidics to engineer a human cardiac microenvironment for high-fidelity drug screening [PDF]
The preclinical evaluation of drug-induced cardiotoxicity is critical for developing novel drug, helping to avoid drug wastage and post-marketing withdrawal.
Yu-hong Wang +12 more
doaj +4 more sources
As an emerging 3D printing technique, melt electrospinning writing (MEW) has been used to fabricate scaffolds with controllable structure and good mechanical strength for bone regeneration. However, how to further improve MEW scaffolds with nanoscale extracellular matrix (ECM) mimic structure and bioactivity is still challenging.
Han Wang, Yadong Tang, Xujie Liu
exaly +3 more sources

