Electrohydrodynamic 3D printing of microscale poly (ε-caprolactone) scaffolds with multi-walled carbon nanotubes

J He, F Xu, R Dong, B Guo, D Li - Biofabrication, 2017 - iopscience.iop.org
Electrohydrodynamic 3D printing is a promising strategy to controllably fabricate hierarchical
fibrous architectures that mimic the structural organizations of native extracellular matrix …

Development of melt electrohydrodynamic 3D printing for complex microscale poly (ε-caprolactone) scaffolds

J He, P Xia, D Li - Biofabrication, 2016 - iopscience.iop.org
The replication of native hierarchical structures into synthetic scaffolds is important to direct
cell growth and tissue regeneration. However, most of the existing scaffold strategies lack …

Electrohydrodynamic printing of sub-microscale fibrous architectures with improved cell adhesion capacity

B Zhang, J He, Q Lei, D Li - Virtual and Physical Prototyping, 2020 - Taylor & Francis
ABSTRACT A solution-based electrohydrodynamic (EHD) printing strategy was developed
to fabricate sub-microscale biopolymeric fibres to mimic the tiny architectures of native …

Fabrication of microfibrous PCL/MWCNTs scaffolds via melt-based electrohydrodynamic printing

Z Meng, J He, Z Xia, D Li - Materials Letters, 2020 - Elsevier
Electrohydrodynamic (EHD) printing has attracted extensive attention in tissue engineering
due to its unique capacity to mimic the fibrillar organizations of the native extracellular …

Engineered Nanotopography on the Microfibers of 3D-Printed PCL Scaffolds to Modulate Cellular Responses and Establish an In Vitro Tumor Model

L Jing, X Wang, B Leng, N Zhan, H Liu… - ACS Applied Bio …, 2021 - ACS Publications
Scaffold-based three-dimensional (3D) cell culture systems have gained increased interest
in cell biology, tissue engineering, and drug screening fields as a replacement of two …

Fabrication of hierarchical polycaprolactone/gel scaffolds via combined 3D bioprinting and electrospinning for tissue engineering

YZ Yu, LL Zheng, HP Chen, WH Chen… - Advances in Manufacturing, 2014 - Springer
It is a severe challenge to construct 3D scaffolds which hold controllable pore structure and
similar morphology of the natural extracellular matrix (ECM). In this study, a compound …

[PDF][PDF] Investigation of process parameters of electrohydro-dynamic jetting for 3D printed PCL fibrous scaffolds with complex geometries

H Wang, S Vijayavenkataraman, Y Wu… - International Journal of …, 2016 - academia.edu
Tissue engineering is a promising technology in the field of regenerative medicine with its
potential to create tissues de novo. Though there has been a good progress in this field so …

Three-dimensional printing and electrospinning dual-scale polycaprolactone scaffolds with low-density and oriented fibers to promote cell alignment

C Vyas, G Ates, E Aslan, J Hart, B Huang… - 3D printing and additive …, 2020 - liebertpub.com
Complex and hierarchically functionalized scaffolds composed of micro-and nanoscale
structures are a key goal in tissue engineering. The combination of three-dimensional (3D) …

A PCL/cellulose coil-shaped scaffold via a modified electrohydrodynamic jetting process

YE Choe, GH Kim - Virtual and Physical Prototyping, 2020 - Taylor & Francis
Scaffolds are regarded as a key factor for tissue engineering as they provide a three-
dimensional structural frame for host cells to attach, proliferate, and differentiate. Recently …

Cell studies on Electrohydrodynamic (EHD)-3D-bioprinted Bacterial Cellulose\Polycaprolactone scaffolds for tissue engineering

E Altun, N Ekren, SE Kuruca, O Gunduz - Materials Letters, 2019 - Elsevier
The application of three-dimensional (3D) printed scaffolds for tissue engineering have
gained significant attention in recent years. The biological activity of scaffolds used in tissue …