Journal of Materials Chemistry B,
Journal Year:
2024,
Volume and Issue:
12(13), P. 3292 - 3306
Published: Jan. 1, 2024
Synthesis
strategy
of
glucose-responsive
intelligent
hydrogels
based
on
multifunctional
nanocomposite
nodes
and
their
mechanism
in
diabetic
infected
wounds.
Cell Biochemistry and Function,
Journal Year:
2023,
Volume and Issue:
41(5), P. 517 - 541
Published: June 6, 2023
Abstract
Hyperglycemia,
a
distinguishing
feature
of
diabetes
mellitus
that
might
cause
diabetic
foot
ulcer
(DFU),
is
an
endocrine
disorder
affects
extremely
high
percentage
people.
Having
comprehensive
understanding
the
molecular
mechanisms
underlying
pathophysiology
wound
healing
can
help
researchers
and
developers
design
effective
therapeutic
strategies
to
treat
process
in
patients.
Using
nanoscaffolds
nanotherapeutics
with
dimensions
ranging
from
1
100
nm
represents
state‐of‐the‐art
viable
strategy
for
accelerating
patients,
particularly
those
DFU.
Nanoparticles
interact
biological
constituents
infiltrate
sites
owing
their
reduced
diameter
enhanced
surface
area.
Furthermore,
it
noteworthy
they
promote
processes
vascularization,
cellular
proliferation,
cell
signaling,
cell‐to‐cell
interactions,
formation
biomolecules
are
essential
healing.
Nanomaterials
possess
ability
effectively
transport
deliver
various
pharmacological
agents,
such
as
nucleic
acids,
growth
factors,
antioxidants,
antibiotics,
specific
tissues,
where
be
continuously
released
affect
The
present
article
elucidates
ongoing
endeavors
field
nanoparticle‐mediated
therapies
management
Advanced Functional Materials,
Journal Year:
2024,
Volume and Issue:
unknown
Published: July 3, 2024
Abstract
The
seamless
integration
of
emerging
directional
liquid
transport
(DLT)
technology
with
traditional
textile
materials
has
ushered
in
the
next‐generation
multifunctional
textiles,
i.e.,
DLT
which
will
play
a
vital
role
areas
such
as
wearable
smart
and
ecological
environmental
protection.
To
further
promote
combination
technology,
concise
overview
research
progress
including
basic
mechanisms,
various
preparation
strategies
diversified
applications
textiles
is
provided.
In
this
review,
theoretical
mechanisms
from
perspective
wetting
wicking
discussed.
Besides,
categorized
them
into
three
categories
summarized:
fiber‐based
fabric‐based
fiber/fabric
hybrid‐based
textiles.
Subsequently,
current
potential
are
classified
discussed,
mainly
focusing
on
functional
clothing,
oil‐water
separation,
fog
collection,
distillation,
sensors,
biomedicine,
so
on.
Finally,
challenges
prospects
to
enhance
functionality
application
performance
outlined.
Scientific Reports,
Journal Year:
2024,
Volume and Issue:
14(1)
Published: Oct. 11, 2024
Wound
management
is
a
critical
aspect
of
healthcare,
necessitating
effective
and
innovative
wound
dressing
materials.
Many
existing
dressings
lack
effectiveness
exhibit
limitations,
including
poor
antimicrobial
activity,
toxicity,
inadequate
moisture
regulation,
weak
mechanical
performance.
The
aim
this
study
to
develop
natural-based
nanofibrous
structure
that
possesses
desirable
characteristics
for
use
as
dressing.
chemical
analysis
confirmed
the
successful
creation
Zein
(Ze)
(25%
w/v)
/gelatin
(Gel)
(10%
/chitosan
(CS)
(2%
/Polyvinyl
alcohol
(PVA)
scaffolds
loaded
with
vitamin
E
tocopheryl
polyethylene
glycol
succinate
(Vit
E).
swelling
percentages
nanofiber
(NF),
NF
+
Vit
E,
cross-linked
(CNF),
CNF
were
49%,
110%,
410%,
676%,
respectively;
degradation
rates
NF,
CNF,
29.57
±
5.06%,
33.78
7.8%,
14.03
7.52%,
43
6.27%,
respectively.
antibacterial
properties
demonstrated
impregnated
antibiotics
reduced
Escherichia
coli
(E.
coli)
counts
by
approximately
27–28%
Staphylococcus
aureus
(S.
aureus)
about
34–35%
compared
negative
control.
In
conclusion,
Ze/Gel/CS/PVA
have
potential
suitable
materials
because
environmentally
friendly
contribute
sustainable
care
controlled
ensures
breakdown
harmlessly.
Journal of Materials Chemistry B,
Journal Year:
2024,
Volume and Issue:
12(13), P. 3292 - 3306
Published: Jan. 1, 2024
Synthesis
strategy
of
glucose-responsive
intelligent
hydrogels
based
on
multifunctional
nanocomposite
nodes
and
their
mechanism
in
diabetic
infected
wounds.