PubMed ID: 31000161Among other synthetic polymers, poly-?-caprolacton (PCL) nanofibers are one of the most popular ones, especially in tissue engineering application due to its distinct mechanical and chemical properties. However, in some cases, lacking functional group on polymer structure obstructs the covalent modification of the PCL nanofibers for the aim. Herein, polyethyleneimine (PEI) was blended with PCL polymer to provide functional amino groups on the surface of the nanofiber mat. PCL-PEI nanofiber was successfully constructed and preparation parameters were optimized. Scanning electron microscopy (SEM) and contact angle measurements were carried out to characterize the PCL-PEI nanofiber. After characterization, Gluconobacter oxyd...
Biomaterials and Tissue Engineering Nanofiber technology has received significant attention as a pos...
WOS: 000430778400038PubMed ID: 29573728The construction and biofunctionalization of the poly (C-capr...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
PubMed: 310001612-s2.0-85062687823Among other synthetic polymers, poly-?-caprolacton (PCL) nanofiber...
WOS: 000466821100004PubMed ID: 31000161Among other synthetic polymers, poly-E-caprolacton (PCL) nano...
Poly(ε-caprolactone) (PCL) electrospun nanofibers have been reported as a scaffold for tissue engine...
ABSTRACT: Electrospun nanofiber surfaces are modified with proteins to control protein release. A mi...
WOS: 000334572800080PubMed ID: 24660809The combination of nanomaterials and conducting polymers attr...
Thesis (Ph.D.)-- Wichita State University, College of Engineering, Dept. of Mechanical EngineeringTh...
Nanofiber technology has received significant attention as a possible solution to the current challe...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
Scaffold design has pivotal role in tissue engineering. In the present study, We modified the s...
Nanofiber technology is an increasing interest in the biomedical field of tissue regeneration and dr...
PubMed: 295737282-s2.0-85044142891The construction and biofunctionalization of the poly (?-caprolact...
Electrospinning is an attractive method for producing nanofibrous scaffolds for tissue engineering a...
Biomaterials and Tissue Engineering Nanofiber technology has received significant attention as a pos...
WOS: 000430778400038PubMed ID: 29573728The construction and biofunctionalization of the poly (C-capr...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
PubMed: 310001612-s2.0-85062687823Among other synthetic polymers, poly-?-caprolacton (PCL) nanofiber...
WOS: 000466821100004PubMed ID: 31000161Among other synthetic polymers, poly-E-caprolacton (PCL) nano...
Poly(ε-caprolactone) (PCL) electrospun nanofibers have been reported as a scaffold for tissue engine...
ABSTRACT: Electrospun nanofiber surfaces are modified with proteins to control protein release. A mi...
WOS: 000334572800080PubMed ID: 24660809The combination of nanomaterials and conducting polymers attr...
Thesis (Ph.D.)-- Wichita State University, College of Engineering, Dept. of Mechanical EngineeringTh...
Nanofiber technology has received significant attention as a possible solution to the current challe...
The combination of nanomaterials and conducting polymers attracted remarkable attention for developm...
Scaffold design has pivotal role in tissue engineering. In the present study, We modified the s...
Nanofiber technology is an increasing interest in the biomedical field of tissue regeneration and dr...
PubMed: 295737282-s2.0-85044142891The construction and biofunctionalization of the poly (?-caprolact...
Electrospinning is an attractive method for producing nanofibrous scaffolds for tissue engineering a...
Biomaterials and Tissue Engineering Nanofiber technology has received significant attention as a pos...
WOS: 000430778400038PubMed ID: 29573728The construction and biofunctionalization of the poly (C-capr...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...