Javascript must be enabled to continue!
Electrospinning of Eudragit RS100 for Nerve Tissue Engineering Scaffold
View through CrossRef
Electrospinning technique is widely investigated in medical applications such as tissue engineering scaffolds, wound dressing and drug delivery. In this study, the aligned nanofiber scaffold of Eudragit RS100 was successfully fabricated via electrospinning technique for nerve tissue engineering scaffold. The diameter distribution and degree of alignment of Eudragit RS100 nanofiber scaffold were observed by scanning electron microspore (SEM). The chemical and crystalline structure of Eudragit RS100 nanofiber scaffold were analyzed using Fourier transform infrared spectroscopy (FTIR) and Powder X-ray diffactometer (PXRD). Cell culture studies using rat Schwann cells were determined to evaluate cell proliferation cell alignment and morphology. The results implied that the diameter of fiber was in the nanometer region. The Eudragit RS100 nanofiber scaffold were in an amorphous form and its chemical structure was not destructive after the electrospinning process. The Eudragit RS100 nanofiber scaffold showed biocompatibility with rat Schwann cells and growing parallel to the aligned fibers. In conclusion, the Eudragit RS100 nanofiber scaffold may have the ability to apply to nerve tissue engineering scaffold.
Trans Tech Publications, Ltd.
Title: Electrospinning of Eudragit RS100 for Nerve Tissue Engineering Scaffold
Description:
Electrospinning technique is widely investigated in medical applications such as tissue engineering scaffolds, wound dressing and drug delivery.
In this study, the aligned nanofiber scaffold of Eudragit RS100 was successfully fabricated via electrospinning technique for nerve tissue engineering scaffold.
The diameter distribution and degree of alignment of Eudragit RS100 nanofiber scaffold were observed by scanning electron microspore (SEM).
The chemical and crystalline structure of Eudragit RS100 nanofiber scaffold were analyzed using Fourier transform infrared spectroscopy (FTIR) and Powder X-ray diffactometer (PXRD).
Cell culture studies using rat Schwann cells were determined to evaluate cell proliferation cell alignment and morphology.
The results implied that the diameter of fiber was in the nanometer region.
The Eudragit RS100 nanofiber scaffold were in an amorphous form and its chemical structure was not destructive after the electrospinning process.
The Eudragit RS100 nanofiber scaffold showed biocompatibility with rat Schwann cells and growing parallel to the aligned fibers.
In conclusion, the Eudragit RS100 nanofiber scaffold may have the ability to apply to nerve tissue engineering scaffold.
Related Results
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract
Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
In this study, porous scaffolds were fabricated using inorganic material-hydroxyapatite and chitosan for bone-tissue engineering. The combination of hydroxyapatite and chitosan may...
Phrenic Nerve Block for Management of Post-Thoracic Outlet Decompression Cough: A Case Report and Literature Review
Phrenic Nerve Block for Management of Post-Thoracic Outlet Decompression Cough: A Case Report and Literature Review
Abstract
Introduction
Thoracic outlet syndrome is a group of disorders arising from compressive forces on the neurovascular bundle in that region due to different etiologies. This...
MG-63 cells proliferation following various types of mechanical stimulation on cells by auxetic hybrid scaffolds
MG-63 cells proliferation following various types of mechanical stimulation on cells by auxetic hybrid scaffolds
Abstract
Background
Mechanical properties and cyto-compatibility of a composite scaffold which possessed negative (−) Poi...
Formulation and Evaluation of Lornoxicam Nanosuspension with Eudragit Rs100 Polymer
Formulation and Evaluation of Lornoxicam Nanosuspension with Eudragit Rs100 Polymer
BCS Class II has a low aqueous solubility problem in pharmaceutical formulation. Hence to overcome this problem this research the was carried out for BCS Class II drug lornoxicam w...
Development of Fluorescently Labeled Self-Emulsifying Drug Delivery
Systems (SEDDS) for Prolonged Stability, In Vitro Sustained Release, and
Cellular Uptake
Development of Fluorescently Labeled Self-Emulsifying Drug Delivery
Systems (SEDDS) for Prolonged Stability, In Vitro Sustained Release, and
Cellular Uptake
Aim:
In this study, four fluorescein hydrophobic ionic complexes were formed with the
cationic polymers Eudragit RS, Eudragit RL, Eudragit E, and polyethyleneimine (PEI) to provide...
A study on tacrolimus combined with hyaluronic acid gel to inhibit scar proliferation at nerve anastomoses
A study on tacrolimus combined with hyaluronic acid gel to inhibit scar proliferation at nerve anastomoses
Abstract
Objective
: To investigate the effect of additional application of hyaluronic acid (HA) gel containing tacrolimus (FK5...
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
In scaffold based bone tissue engineering, both the pore size and the mechanical properties of the scaffold are of great importance. However, an increase in pore size is generally ...

