Frontiers in Bioengineering and Biotechnology,
Год журнала:
2023,
Номер
11
Опубликована: Апрель 6, 2023
As
an
interdisciplinary
field,
drug
delivery
relies
on
the
developments
of
modern
science
and
technology.
Correspondingly,
how
to
upgrade
traditional
dosage
forms
for
a
more
efficacious,
safer,
convenient
poses
continuous
challenge
researchers.
Journal of Functional Biomaterials,
Год журнала:
2022,
Номер
13(4), С. 289 - 289
Опубликована: Дек. 9, 2022
Electrospinning
is
an
advanced
technology
for
the
preparation
of
drug-carrying
nanofibers
that
has
demonstrated
great
advantages
in
biomedical
field.
Electrospun
nanofiber
membranes
are
widely
used
field
drug
administration
due
to
their
such
as
large
specific
surface
area
and
similarity
extracellular
matrix.
Different
electrospinning
technologies
can
be
prepare
different
structures,
those
with
a
monolithic
structure,
core–shell
Janus
or
porous
structure.
It
also
possible
controlled-release
functions,
sustained
release,
delayed
biphasic
targeted
release.
This
paper
elaborates
on
drug-loaded
using
various
concludes
mechanisms
behind
controlled
release
drugs.
Polymers,
Год журнала:
2022,
Номер
14(22), С. 4947 - 4947
Опубликована: Ноя. 16, 2022
The
aim
of
this
study
was
to
develop
a
novel
ultrathin
fibrous
membrane
with
core-sheath
structure
as
an
antioxidant
food
packaging
membrane.
prepared
by
coaxial
electrospinning,
and
the
release
active
substances
regulated
its
special
structure.
Ferulic
acid
(FA)
incorporated
into
electrospun
zein/polyethylene
oxide
fibers
ensure
their
synergistic
properties.
We
found
that
had
good
morphology
smooth
surface.
internal
stable,
three
materials
we
used
were
compatible.
For
different
loading
positions,
it
observed
core
layer
ferulic-acid-loaded
sustained
action,
while
sheath
pre-burst
action.
Finally,
apples
selected
for
using
membranes
simulate
practical
applications.
effective
in
reducing
water
loss
apple
quality
loss,
well
extending
shelf
life.
According
these
experiments,
FA-loaded
zein/PEO
electrospinning
fiber
can
be
will
also
undergo
more
improvements
future.
Polymers,
Год журнала:
2022,
Номер
14(20), С. 4311 - 4311
Опубликована: Окт. 13, 2022
Since
the
third
scientific
and
technological
revolution,
electronic
information
technology
has
developed
rapidly,
piezoelectric
materials
that
can
convert
mechanical
energy
into
electrical
have
become
a
research
hotspot.
Among
them,
polymers
are
widely
used
in
various
fields
such
as
water
treatment,
biomedicine,
flexible
sensors
due
to
their
good
flexibility
weak
toxicity.
However,
compared
with
ceramic
materials,
properties
of
poor,
so
it
is
very
important
improve
polymers.
Electrospinning
by
adjusting
electrospinning
parameters
control
piezoelectrically
active
phase
transition
In
addition,
prepared
nanofibrous
membrane
also
substrate
for
supporting
functional
particles,
which
effectively
doping
particles.
This
paper
reviews
electrospun
polymer
membranes,
especially
polyvinylidene
fluoride
(PVDF)-based
membranes
(NFs).
Additionally,
this
introduces
methods
increasing
from
perspective
structure
species.
Finally,
applications
NFs
biology,
energy,
photocatalysis
discussed,
future
directions
development
prospected.
Polymers,
Год журнала:
2023,
Номер
15(4), С. 921 - 921
Опубликована: Фев. 12, 2023
Electrospun
porous
nanofibers
have
gained
a
lot
of
interest
recently
in
various
fields
because
their
adjustable
structure,
high
specific
surface
area,
and
large
number
active
sites,
which
can
further
enhance
the
performance
materials.
This
paper
provides
an
overview
common
polymers,
preparation,
applications
electrospun
nanofibers.
Firstly,
polymers
commonly
used
to
construct
structures
main
pore-forming
methods
by
electrospinning,
namely
template
method
phase
separation
method,
are
introduced.
Secondly,
recent
air
purification,
water
treatment,
energy
storage,
biomedicine,
food
packaging,
sensor,
sound
wave
absorption,
flame
retardant,
heat
insulation
reviewed.
Finally,
challenges
possible
research
directions
for
future
study
discussed.
Polymers,
Год журнала:
2022,
Номер
14(19), С. 3990 - 3990
Опубликована: Сен. 23, 2022
Electrospun
porous
nanofibers
have
large
specific
surface
areas
and
abundant
active
centers,
which
can
effectively
improve
the
properties
of
nanofibers.
In
field
photocatalysis,
electrospun
increase
contact
area
loaded
photocatalytic
particles
with
light,
shorten
electron
transfer
path,
activity.
this
paper,
main
pore−forming
mechanisms
nanofiber
are
summarized
as
breath
figures,
phase
separation
(vapor−induced
separation,
non−solvent−induced
thermally
induced
separation)
post−processing
(selective
removal).
Then,
application
loading
in
degradation
pollutants
(such
organic,
inorganic,
bacteria)
water
is
introduced,
its
future
development
prospected.
Although
structures
beneficial
improving
performance
nanofibers,
they
reduce
their
mechanical
properties.
Therefore,
strategies
for
also
briefly
discussed.
Biomolecules,
Год журнала:
2023,
Номер
13(1), С. 184 - 184
Опубликована: Янв. 16, 2023
Herbal
medicine
has
a
long
history
of
medical
efficacy
with
low
toxicity,
side
effects
and
good
biocompatibility.
However,
the
bioavailability
extract
raw
herbs
bioactive
compounds
is
poor
because
their
water
solubility.
In
order
to
overcome
solubility
issues,
electrospinning
technology
can
offer
delivery
alternative
resolve
them.
The
electrospun
fibers
have
advantages
high
specific
surface
area,
porosity,
excellent
mechanical
strength
flexible
structures.
At
same
time,
various
natural
synthetic
polymer-bound
mimic
extracellular
matrix
applications
in
different
fields.
this
paper,
development
polymers
used
for
incorporating
herbal
into
nanofibers
are
reviewed.
Finally,
recent
progress
these
biomedical
(drug
delivery,
wound
dressing,
tissue
engineering)
food
fields
along
future
prospects
discussed.
Frontiers in Bioengineering and Biotechnology,
Год журнала:
2024,
Номер
12
Опубликована: Фев. 5, 2024
Diabetic
wounds
are
a
significant
subset
of
chronic
characterized
by
elevated
levels
inflammatory
cytokines,
matrix
metalloproteinases
(MMPs),
and
reactive
oxygen
species
(ROS).
They
also
associated
with
impaired
angiogenesis,
persistent
infection,
high
likelihood
hospitalization,
leading
to
substantial
economic
burden
for
patients.
In
severe
cases,
amputation
or
even
mortality
may
occur.
foot
ulcers
(DFUs)
common
complication
diabetes,
up
25%
diabetic
patients
being
at
risk
developing
over
their
lifetime,
more
than
70%
ultimately
requiring
amputation.
Electrospun
scaffolds
exhibit
structural
similarity
the
extracellular
(ECM),
promoting
adhesion,
growth,
migration
fibroblasts,
thereby
facilitating
formation
new
skin
tissue
wound
site.
The
composition
size
electrospun
can
be
easily
adjusted,
enabling
controlled
drug
release
through
fiber
structure
modifications.
porous
nature
these
facilitates
gas
exchange
absorption
exudate.
Furthermore,
surface
readily
modified
impart
specific
functionalities,
making
electrospinning
nanofiber
highly
promising
treatment
wounds.
This
article
provides
concise
overview
healing
process
in
normal
pathological
mechanisms
underlying
wounds,
including
complications
such
as
ulcers.
It
explores
advantages
treatment.
Additionally,
it
summarizes
findings
from
various
studies
on
use
different
types
reviews
methods
loading
onto
scaffolds.
These
advancements
broaden
horizon
effectively
treating
RSC Advances,
Год журнала:
2024,
Номер
14(5), С. 3359 - 3378
Опубликована: Янв. 1, 2024
Electrostatic
spinning
as
a
technique
for
producing
nanoscale
fibers
has
recently
attracted
increasing
attention
due
to
its
simplicity,
versatility,
and
loadability.