In this study, PU was used as the foundation polymer, was
blended with CA and zein to achieve desirable properties such as
better
cell
viability,
cell
attachment
and
proliferation,
enhanced
blood clotting ability and improved hydrophilicity. The antimi-
crobial
agent
streptomycin
was
incorporated
into
the
electrospun
nanofibers, and its antimicrobial ability against the gram negative
and gram positive bacteria were examined. The study demonstrates
the process, stability, and the characterization of the composite
nanofibrous scaffolds. An electrospun nanofiber membrane con-
taining antibiotic agents can be used as a barrier to prevent the
post-wound infections. The combination of both of these properties
can result in a perfect wound dressing material.
In this study, PU was used as the foundation polymer, was
blended with CA and zein to achieve desirable properties such as
better
cell
viability,
cell
attachment
and
proliferation,
enhanced
blood clotting ability and improved hydrophilicity. The antimi-
crobial
agent
streptomycin
was
incorporated
into
the
electrospun
nanofibers, and its antimicrobial ability against the gram negative
and gram positive bacteria were examined. The study demonstrates
the process, stability, and the characterization of the composite
nanofibrous scaffolds. An electrospun nanofiber membrane con-
taining antibiotic agents can be used as a barrier to prevent the
post-wound infections. The combination of both of these properties
can result in a perfect wound dressing material.
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