Biomaterials Science,
Journal Year:
2023,
Volume and Issue:
11(17), P. 5769 - 5780
Published: Jan. 1, 2023
Stimuli-responsive
nanozymes
with
stimuli-switchable
catalytic
activities
or
stimuli-responsive
release
behaviors
have
unique
applications
in
the
fields
of
tumor
therapy,
antibacterial
biosensing
and
anti-inflammatory
therapy.
Nanoscale,
Journal Year:
2023,
Volume and Issue:
15(28), P. 11813 - 11833
Published: Jan. 1, 2023
The
multi-modal
therapy
has
superior
anti-tumor
efficacy
to
the
uni-modal
using
nanoparticles
inducing
reactive
oxygen
species
(ROS).
multi-component
nature
of
cold
atmospheric
plasma
(CAP)
enables
excitation
with
a
single
treatment.
Advanced Functional Materials,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Aug. 9, 2024
Abstract
It
is
important
but
challenging
to
innovate
inorganic
sonosensitizers
with
controlled
biodegradability
and
enhanced
sonodynamic
chemodynamic
activities
harness
remodel
the
immunosuppressive
tumor
microenvironment
(TME)
for
awakening
robust
immune
responses
against
metastatic
cancers.
Herein
rational
design
defect
engineering
strategy
of
a
pH‐responsive
biodegradable
sonozyme
system
in
sulfide
nanocages
augmented
cancer
immunotherapy
reported.
A
series
highly
defective
Co
9
S
8‐x
elevated
sulfur‐vacancy
(V
)
levels
are
fabricated
systematically
explore
V
‐dependent
properties
by
regulating
weight
ratio
sulfur
cobalt
source.
The
bandgap
substantially
reduced
from
2.06
1.54
eV,
atomic
2+
3+
increased
1.53
1.97.
Therefore,
sonodynamic,
chemodynamic,
antitumor
dramatically
system.
slow
degradation
slightly
acid
TME
size
targeting
infiltration,
while
exerting
slight
influence
on
performance.
As
result,
satisfactory
therapeutic
effects
eradication
primary,
distant,
tumors
can
be
achieved.
This
work
highlights
potential
strategies
combating
Acta Pharmaceutica Sinica B,
Journal Year:
2022,
Volume and Issue:
13(7), P. 2926 - 2954
Published: Dec. 31, 2022
Sonodynamic
therapy
(SDT)
is
an
emerging
noninvasive
treatment
modality
that
utilizes
low-frequency
and
low-intensity
ultrasound
(US)
to
trigger
sensitizers
kill
tumor
cells
with
reactive
oxygen
species
(ROS).
Although
SDT
has
attracted
much
attention
for
its
properties
including
high
specificity
deep
tissue
penetration,
anticancer
efficacy
still
far
from
satisfactory.
As
a
result,
new
strategies
such
as
gas-assisted
have
been
proposed
further
promote
the
effectiveness
of
SDT.
In
this
review,
mechanisms
are
first
summarized.
Then,
applications
cancer
introduced
categorized
by
gas
types.
Next,
therapeutic
systems
can
realize
real-time
imaging
presented.
Finally,
challenges
perspectives
future
clinical
discussed.
Biomaterials Science,
Journal Year:
2023,
Volume and Issue:
11(17), P. 5769 - 5780
Published: Jan. 1, 2023
Stimuli-responsive
nanozymes
with
stimuli-switchable
catalytic
activities
or
stimuli-responsive
release
behaviors
have
unique
applications
in
the
fields
of
tumor
therapy,
antibacterial
biosensing
and
anti-inflammatory
therapy.