Biomedicines,
Journal Year:
2024,
Volume and Issue:
12(11), P. 2483 - 2483
Published: Oct. 29, 2024
Diabetic
foot
ulcers
(DFUs)
are
a
common
and
severe
complication
of
diabetic
patients,
with
significant
global
prevalence
associated
health
burdens,
including
high
recurrence
rates,
lower-limb
amputations,
substantial
economic
costs.
This
study
aimed
to
understand
the
user
needs
healthcare
professionals
treating
for
newly
developed
material
technologies.
Gels,
Journal Year:
2025,
Volume and Issue:
11(2), P. 123 - 123
Published: Feb. 7, 2025
Recent
advancements
in
wound
dressing
materials
have
significantly
improved
acute
and
chronic
management
by
addressing
challenges
such
as
infection
control,
moisture
balance,
enhanced
healing.
Important
progress
has
been
made,
especially
with
hydrogels,
foams,
antimicrobial
for
creating
optimized
dressings.
Hydrogels
are
known
maintaining
optimal
levels,
while
foam
dressings
excellent
exudate
absorbents.
Meanwhile,
incorporates
various
agents
to
reduce
risks.
These
options
healing
time
focusing
on
customized
patient
needs.
Therefore,
this
review
highlights
the
newest
research
prototypes
applications,
emphasizing
their
particular
benefits
clinical
importance.
Innovations
stimuli-responsive
hydrogels
hybrid
bioengineered
composites
discussed
relation
properties,
including
responsiveness
pH,
temperature,
glucose,
or
enzymes
drug
delivery
precision.
Moreover,
ongoing
trials
included,
demonstrating
potential
of
emerging
solutions
be
soon
translated
from
laboratory
settings.
By
discussing
interdisciplinary
approaches
that
integrate
advanced
materials,
nanotechnology,
biological
insights,
work
provides
a
contemporary
framework
patient-centric,
efficient
care
strategies.
Deleted Journal,
Journal Year:
2025,
Volume and Issue:
2(1)
Published: Jan. 2, 2025
Abstract
The
field
of
chronic
wound
care
has
been
rapidly
evolving.
With
a
market
size
for
wounds
in
billions
USD,
this
is
not
an
insignificant
area
to
encourage
more
sustainable
practices
and
processes.
sourcing
starting
materials
dressings
from
renewable
resources
the
first
crucial
step
ensuring
that
environmental
impact
minimized.
Next
important
choice
select
methodologies
accordance
with
principles
green
chemistry.
This
involves
utilizing
solvents
as
reaction
media
chemical
processes
preparing
dressing
materials.
In
many
cases,
like
production
hydrogels,
crosslinking
reagents
are
often
employed.
These
can
be,
general,
easily
replaced
by
enzymes
peroxidases,
tyrosinases
sortases.
Process
intensification
strategies
have
emerged
powerful
approach
ensure
economy
sustainability
at
large
scale.
Use
microwave
radiations
ultrasonication
instead
heat
accelerate
rates
helps
cases
inject
wounds.
review
attempts
highlight
ongoing
efforts
future
possibilities
development
cost-effective
methods.
Graphical
ACS Omega,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 26, 2025
Diabetic
wounds
(DWs)
are
the
most
devastating
complication,
resulting
in
significant
mortality
and
morbidity
diabetic
patients.
Although
pathophysiology
of
DWs
is
multifaceted,
evidence
has
revealed
that
prolonged
inflammation
with
infections,
extracellular
matrix
(ECM)
degradation,
unnecessary
NETosis
impair
DW
healing.
This
theoretical
problem
highlights
necessity
developing
a
novel
strategy
focused
on
targeting
"specific"
molecular
modalities
DWs.
The
primary
culprits,
metalloproteinase
(MMP)-9
protein
kinase
C
(PKC)-βII,
responsible
for
impaired
angiogenesis,
NETosis,
ECM
degradation.
Thus,
interest
identifying
selective
inhibitors
effective
management
increased.
current
study
exemplified
human
β-defensin-2
(HBD-2),
biological
macromolecule
functions
as
dual
inhibitor
MMP-9
PKC-βII,
via
protein-protein
docking
dynamics
simulation
studies.
Overall,
data
analysis
HBD-2
possesses
strong
binding
affinity
stability
against
suggesting
may
be
an
ideal
therapeutic
accelerated
healing
DW.
Our
findings
suggest
HBD-2's
potential
innovative
healing,
offering
valuable
insights
into
its
mechanisms.
However,
vitro
vivo
studies
required
to
bridge
gap
between
computational
modeling
clinical
application.