Konjac glucomannan/zein active film loaded with tea polyphenol–ferric nanoparticles for strawberry preservation
Zhenhua Wu,
No information about this author
Lin Wang,
No information about this author
Hu Zhi
No information about this author
et al.
International Journal of Biological Macromolecules,
Journal Year:
2025,
Volume and Issue:
299, P. 139905 - 139905
Published: Jan. 19, 2025
Language: Английский
Konjac glucomannan/xanthan gum film embedding soy protein isolate–tannic acid–iron complexes for blueberry preservation
Zhenhua Wu,
No information about this author
Lin Wang,
No information about this author
Chen Ma
No information about this author
et al.
Food Hydrocolloids,
Journal Year:
2025,
Volume and Issue:
163, P. 111040 - 111040
Published: Jan. 1, 2025
Language: Английский
Recent Advances in Asymmetric Wettability Dressings for Wound Exudate Management
Fang Wang,
No information about this author
Wenqing He,
No information about this author
Bing Dai
No information about this author
et al.
Research,
Journal Year:
2025,
Volume and Issue:
8
Published: Jan. 1, 2025
The
management
of
wound
exudate
is
vital
importance
for
healing.
Exudate
accumulation
around
prolongs
inflammation
and
hinders
Although
traditional
dressings
can
absorb
exudate,
they
are
unable
to
drain
in
time,
often
resulting
a
poor
feature
with
In
recent
years,
the
appearance
asymmetric
wettability
has
shown
great
potential
management.
Here,
we
summarize
latest
progress
3
kinds
management,
including
Janus
structure,
sandwich
gradient
structure.
most
common
structural
dressing
among
highlighted
from
2
aspects:
single-layer
modified
structure
double-layer
challenges
faced
by
discussed,
developing
trends
smart
this
field
prospected.
Language: Английский
Enhancing Waterproof Food Packaging with Janus Structure: Lotus Leaf Biomimicry and Polyphenol Particle Technology for Vegetable Preservation
Zhenhua Wu,
No information about this author
Lin Wang,
No information about this author
Xianrui Chen
No information about this author
et al.
ACS Applied Materials & Interfaces,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 23, 2025
With
the
increasing
demand
for
improved
food
preservation,
conventional
waterproof
packaging
has
proven
inadequate
because
of
its
limited
functionality.
Although
incorporating
features
such
as
antibacterial
and
antioxidant
properties
into
enhances
protection,
it
can
compromise
hydrophobicity
involved
material,
thereby
risk
contamination
from
external
sources.
To
address
this
challenge,
a
robust
reliable
barrier
capable
simultaneously
integrating
multiple
protective
functions
is
required.
This
research
synthesizes
polyphenol
particles
via
metal
ion
coordination
hydrogen
bondings
to
enhance
antimicrobial
properties.
In
addition,
inspired
by
asymmetric
wettability
Janus-structured
lotus
leaves,
study
develops
biomimetic
multifunctional
Janus
electrospun
fibers
electrostatic
spinning.
These
exhibit
exceptional
properties,
including
superhydrophobic,
antifouling,
ultraviolet-blocking,
pH
sensitivity,
antioxidation,
antimicrobial,
freshness
retention
Experiments
mesoscopic
capillary
flow
simulations
elucidate
waterproofing
ability
underlying
mechanisms
fibers,
demonstrating
their
function
hydrophobic
shields
preventing
water
penetration.
Overall,
provides
reference
high-performance
vegetable
preservation.
Language: Английский
Advances in Controllable Water Transport of Textile Porous Materials: Mechanism, Structure Design, Fabrication and Application
Advanced Fiber Materials,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 2, 2025
Language: Английский
Stimuli-responsive biomedical polymeric films for tissue regeneration
Zili Xu,
No information about this author
Junjie Deng,
No information about this author
Dan Gao
No information about this author
et al.
Microstructures,
Journal Year:
2025,
Volume and Issue:
5(3)
Published: April 23, 2025
Tissue
damage
poses
a
significant
burden
on
patients’
daily
lives
and
has
long
driven
the
search
for
effective
clinical
treatments.
Recent
decades
have
witnessed
development
of
smart
biomedical
materials
satisfying
specific
requirements
such
as
irregular
shapes
dynamic
microenvironments
at
defective
sites.
Stimuli-responsive
polymeric
films
are
well-positioned
to
play
considerable
role
in
exploitation
next-generation
biomaterials
both
soft
hard
tissue
regeneration.
These
can
be
fabricated
through
diverse
approaches
engineered
with
versatile
structures
properties.
Furthermore,
responsive
stimuli
temperature,
water,
light,
these
exhibit
well-designed
functions
shape
adaption,
controlled
drug
release,
cell
adhesion
vivo
,
effectively
improving
In
this
work,
we
review
recent
advancements
stimuli-responsive
films,
beginning
introduction
their
fabrication
methods.
Subsequently,
mechanisms
discussed
scrutinized
terms
structure
property
variations.
An
overview
applications
regeneration,
including
skin,
cardiovascular,
nerve,
bone
is
provided.
Finally,
further
discuss
benefits
limitations
practical
applications,
proposing
our
expectations
perspectives
future
films.
Language: Английский