Advanced Healthcare Materials,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 19, 2025
Abstract
The
cGAS‐STING
signaling
pathway
is
a
pivotal
immune
response
mechanism
that
bridges
tumor
and
cell
interactions.
This
study
describes
multifunctional
LPDAM
nanoplatform
integrating
Lapachone,
polydopamine
(PDA),
Mn
2+
,
which
synergistically
kills
cells
activates
the
pathway,
thereby
inducing
DC
maturation
T
activation
to
achieve
potent
antitumor
immunity.
In
microenvironment,
Lapachone
generates
H
2
O
via
NAD(P)H:quinone
oxidoreductase
1
(NQO1
enzyme),
while
catalyze
conversion
into
•OH
through
chemodynamic
effects
(CDT).
photothermal
(PTT)
of
PDA
further
amplify
this
cascade
reaction,
producing
reactive
oxygen
species
(ROS)
damage
mitochondria
release
mitochondrial
DNA
(mtDNA).
released
mtDNA
enhances
sensitivity
cGAS
mtDNA,
leading
robust
Concurrently,
photothermal‐induced
immunogenic
death
(ICD)
promotes
d
endritic
(
DCs)
maturation,
strengthening
responses.
Moreover,
⁺
also
serves
as
contrast
agent
for
T1‐weighted
magnetic
resonance
imaging
(MRI),
offering
precise
visualization.
demonstrates
facilitates
Lapachone/CDT/PTT
synergistic
therapy
under
MRI
guidance,
showcasing
its
potential
an
innovative
strategy
combined
immunotherapy
in
clinical
oncology.
Theranostics,
Journal Year:
2023,
Volume and Issue:
13(15), P. 5386 - 5417
Published: Jan. 1, 2023
Stimuli-activatable
strategies
prevail
in
the
design
of
nanomedicine
for
cancer
theranostics.Upon
exposure
to
endogenous/exogenous
stimuli,
stimuli-activatable
could
be
self-assembled,
disassembled,
or
functionally
activated
improve
its
biosafety
and
diagnostic/therapeutic
potency.A
myriad
tumor-specific
features,
including
a
low
pH,
high
redox
level,
overexpressed
enzymes,
along
with
exogenous
physical
stimulation
sources
(light,
ultrasound,
magnet,
radiation)
have
been
considered
nano-medicinal
products.Recently,
novel
stimuli
explored
elegant
designs
emerged
nanomedicine.In
addition,
multi-functional
theranostic
has
employed
imaging-guided
image-assisted
antitumor
therapy.In
this
review,
we
rationalize
development
clinical
pressing
needs.Stimuli-activatable
self-assembly,
disassembly
functional
activation
approaches
developing
realize
better
efficacy
are
elaborated
state-of-the-art
advances
their
structural
detailed.A
reflection,
status,
future
perspectives
provided.
Theranostics,
Journal Year:
2024,
Volume and Issue:
14(10), P. 4127 - 4146
Published: Jan. 1, 2024
Biomarker-driven
molecular
imaging
has
emerged
as
an
integral
part
of
cancer
precision
radiotherapy.
The
use
probes,
including
nanoprobes,
have
been
explored
in
radiotherapy
to
precisely
and
noninvasively
monitor
spatiotemporal
distribution
biomarkers,
potentially
revealing
tumor-killing
mechanisms
therapy-induced
adverse
effects
during
radiation
treatment.
ACS Nano,
Journal Year:
2024,
Volume and Issue:
18(17), P. 10979 - 11024
Published: April 18, 2024
Nanomaterials
have
attractive
physicochemical
properties.
A
variety
of
nanomaterials
such
as
inorganic,
lipid,
polymers,
and
protein
nanoparticles
been
widely
developed
for
nanomedicine
via
chemical
conjugation
or
physical
encapsulation
bioactive
molecules.
Superior
to
traditional
drugs,
nanomedicines
offer
high
biocompatibility,
good
water
solubility,
long
blood
circulation
times,
tumor-targeting
Capitalizing
on
this,
several
nanoformulations
already
clinically
approved
many
others
are
currently
being
studied
in
clinical
trials.
Despite
their
undoubtful
success,
the
molecular
mechanism
action
vast
majority
remains
poorly
understood.
To
tackle
this
limitation,
herein,
review
critically
discusses
strategy
applying
multiomics
analysis
study
nanomedicines,
named
nanomedomics,
including
advantages,
applications,
future
directions.
comprehensive
understanding
could
provide
valuable
insight
therefore
foster
development
translation
nanomedicines.
Chemical Reviews,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 14, 2025
Ferroptosis,
an
iron-dependent
form
of
regulatory
cell
death,
has
garnered
significant
interest
as
a
therapeutic
target
in
cancer
treatment
due
to
its
distinct
characteristics,
including
lipid
peroxide
generation
and
redox
imbalance.
However,
clinical
application
oncology
is
currently
limited
by
issues
such
suboptimal
efficacy
potential
off-target
effects.
The
advent
nanotechnology
provided
new
way
for
overcoming
these
challenges
through
the
development
activatable
magnetic
nanoparticles
(MNPs).
These
innovative
MNPs
are
designed
improve
specificity
ferroptosis
induction.
This
Review
delves
into
chemical
biological
principles
guiding
design
ferroptosis-based
therapies
imaging-guided
therapies.
It
discusses
mechanisms
attributes
ferroptosis,
composition
MNPs,
their
mechanism
action
inducers,
integration
with
advanced
imaging
techniques
monitoring.
Additionally,
we
examine
convergence
other
strategies,
chemodynamic
therapy,
photothermal
photodynamic
sonodynamic
immunotherapy,
within
context
nanomedicine
strategies
utilizing
MNPs.
highlights
multifunctional
surpass
limitations
conventional
treatments,
envisioning
future
drug-resistance-free,
precision
diagnostics
treating
recalcitrant
cancers.
Advanced Materials,
Journal Year:
2023,
Volume and Issue:
36(3)
Published: Nov. 16, 2023
Lung
cancer
is
the
second
most
prevalent
and
leading
cause
of
cancer-related
death
worldwide.
Surgery,
chemotherapy,
molecular
targeted
therapy,
immunotherapy,
radiotherapy
are
currently
available
as
treatment
methods.
However,
drug
resistance
a
significant
factor
in
failure
lung
treatments.
Novel
therapeutics
have
been
exploited
to
address
complicated
mechanisms
advancement
nanomedicine
extremely
promising
terms
overcoming
resistance.
Nanomedicine
equipped
with
multifunctional
tunable
physiochemical
properties
alignment
tumor
genetic
profiles
can
achieve
precise,
safe,
effective
while
minimizing
or
eradicating
cancer.
Here,
this
work
reviews
discovered
for
radiotherapy,
outlines
novel
strategies
development
against
This
focuses
on
engineering
design,
customized
delivery,
current
challenges,
clinical
translation
application
resistant
ACS Nano,
Journal Year:
2023,
Volume and Issue:
17(20), P. 20445 - 20461
Published: Oct. 6, 2023
Radiotherapy
is
inevitably
accompanied
by
some
degree
of
radiation
resistance,
which
leads
to
local
recurrence
and
even
therapeutic
failure.
To
overcome
this
limitation,
herein,
we
report
the
room-temperature
synthesis
an
iodine-
ferrocene-loaded
covalent
organic
framework
(COF)
nanozyme,
termed
TADI-COF-Fc,
for
enhancement
radiotherapeutic
efficacy
in
treatment
radioresistant
esophageal
cancer.
The
iodine
atoms
on
COF
not
only
exerted
a
direct
effect
radiotherapy,
increasing
its
X-ray
absorption,
but
also
promoted
radiolysis
water,
increased
production
reactive
oxygen
species
(ROS).
In
addition,
ferrocene
surface
decoration
disrupted
redox
homeostasis
levels
hydroxyl
lipid
peroxide
radicals
depleting
intracellular
antioxidants.
Both
vitro
vivo
experiments
substantiated
excellent
response
TADI-COF-Fc.
This
study
demonstrates
potential
COF-based
multinanozymes
as
radiosensitizers
suggests
possible
integration
strategy
combination
oncotherapy.
Angewandte Chemie International Edition,
Journal Year:
2024,
Volume and Issue:
63(22)
Published: March 29, 2024
The
immune
checkpoint
blockade
strategy
has
improved
the
survival
rate
of
late-stage
lung
cancer
patients.
However,
low
response
limits
immunotherapy
efficiency.
Here,
we
report
a
ROS-responsive
Fe
Advanced Science,
Journal Year:
2024,
Volume and Issue:
11(29)
Published: June 3, 2024
Abstract
Exploring
efficient
and
low‐toxicity
radiosensitizers
to
break
through
the
bottleneck
of
radiation
tolerance,
immunosuppression
poor
prognosis
remains
one
critical
developmental
challenges
in
radiotherapy.
Nanoheterojunctions,
due
their
unique
physicochemical
properties,
have
demonstrated
excellent
radiosensitization
effects
energy
deposition
lifting
tumor
radiotherapy
inhibition.
Herein,
they
doped
selenium
(Se)
into
prussian
blue
(PB)
construct
a
nano‐heterojunction
(Se@PB),
which
could
promote
increase
Fe
2+
/Fe
3+
ratio
conversion
Se
high
valence
state
with
introduction.
The
‐Se‐Fe
electron
transfer
chain
accelerates
rate
on
surface
nanoparticles,
turn
endows
it
X‐ray
transport
capability,
enhances
physical
sensitivity.
Furthermore,
Se@PB
induces
glutathione
(GSH)
depletion
accumulation
pro‐Fenton
reaction,
thereby
disturbs
redox
balance
cells
biochemical
sensitivity
As
an
radiosensitizer,
effectively
induced
mitochondrial
dysfunction
DNA
damage,
promotes
cell
apoptosis
synergistic
cervical
cancer
This
study
elucidates
mechanism
Se‐doped
nanoheterojunction
from
perspective
biochemistry
provides
low‐toxic
strategy
Bioactive Materials,
Journal Year:
2024,
Volume and Issue:
34, P. 326 - 337
Published: Jan. 5, 2024
Atherosclerosis
is
a
significant
contributor
to
global
cardiovascular
disease.
Reducing
the
formation
of
atherosclerotic
plaque
effectively
can
lead
decrease
in
diseases.
Therefore,
controlling
macrophage
function
crucial.
This
study
presents
creation
bifunctional
nanoparticle
that
specific
macrophages
achieve
intracellular
and
extracellular
synergistic
therapy
for
restoring
functions.
The
conjugated
with
anti-CD47
antibody
modulate
CD47-SIRPα
phagocytic
signaling
axis
on
outer
surface
encapsulates
NLRP3
inhibitor
(CY-09)
regulate
inflammation
response
macrophages.
results
showed
nanoparticles
accumulate
plaque,
alter
phagocytosis,
inhibit
inflammasome
activation,
burden
Apoe−/−
mice
whilst
ensuring
safety.
Examination
single-cell
RNA
sequencing
indicates
this
multifunctional
decreases
expression
genes
linked
manages
inflammatory
pathways
lesion.
proposes
therapeutic
approach
utilizes
nanoparticle,
anti-CD47,
microenvironment
plaques.