The
special
pathological
microenvironment
of
infected
wounds
(pathology
weakly
acidic,
hypoxic,
and
overexpressed
H2O2)
provides
fertile
soil
for
the
development
disease.
Tailoring
treatment
based
on
specific
characteristics
infectious
(IME)
has
emerged
as
a
novel
direction
in
antimicrobial
therapies.
Here,
polyoxovanadate
(POV)-based
covalent
organic
polymer
(POV-Fc-COP)
with
inherent
photothermal
activity
was
facilely
prepared
via
copolymerization
1,1′-bi(3-dimethylamino-1-oxo-2-enyl-ferrocene)
(BDOEF)
tris-NH2-modified
POV
(tris-V6O9),
which
nanovanadium
oxide
(V2O3
V2O5)
core
shell
were
generated
directly
during
Michael
addition–elimination
reaction.
unique
structure
composition
impart
pH-responsive
peroxidase-like
(POD-like)
catalase-like
(CAT-like)
activities,
concurrently,
to
POV-Fc-COP.
Specifically,
acid-activated
mimicking-POD
could
consume
H2O2
microenvironment,
producing
toxic
•OH
combat
bacteria
biofilms.
vanadium
consumes
excessive
acid,
resulting
an
increase
pH.
Meanwhile,
CAT-like
transform
excess
expression
into
O2
relieve
hypoxia
induced
by
damage
blood
vessels
facilitate
wound
healing.
Additionally,
synergistic
amplified
therapeutic
effect
triggered
application
laser
irradiation
facilitates
rapid
eradication
biofilm,
minimizing
detrimental
impacts
bacterial
proliferation
IME,
thereby
accelerating
restoration
IME
return
normal
state.
Therefore,
POV-Fc-COP
dual-enzyme
functionality
not
only
utilize
but
also
regulate
significantly
expediting
healing
bacteria-infected
wounds.
This
study
demonstrates
simple
method
preparation
intelligent
platform
programmed
antibacterial
antibiofilm
formation,
thus
promoting
while
utilizing
improving
IME.
Food Chemistry X,
Journal Year:
2024,
Volume and Issue:
23, P. 101588 - 101588
Published: June 26, 2024
The
identification
and
quantification
of
xanthine
are
crucial
for
assessing
the
freshness
quality
food
products,
particularly
in
seafood
industry.
Herein,
a
new
approach
was
developed,
involving
in-situ
controllable
growth
Pt
International Journal of Molecular Sciences,
Journal Year:
2024,
Volume and Issue:
25(23), P. 13052 - 13052
Published: Dec. 4, 2024
Heavy
metal
ion
pollution
poses
a
serious
threat
to
the
natural
environment
and
human
health.
Photoreduction
through
Bi-based
photocatalysts
is
regarded
as
an
advanced
green
technology
for
solving
environmental
problems.
However,
their
photocatalytic
activity
limited
by
rapid
recombination
of
photogenerated
e