The Dual Roles of STAT3 in Ferroptosis: Mechanism, Regulation and Therapeutic Potential
Jinghui Xie,
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Dan Luo,
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Pengfei Xing
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et al.
Journal of Inflammation Research,
Journal Year:
2025,
Volume and Issue:
Volume 18, P. 4251 - 4266
Published: March 1, 2025
Ferroptosis,
an
iron-dependent
programmed
mechanism
of
cell
death
that
is
driven
by
lipid
peroxidation,
important
pathogenic
factor
in
oncological
and
non-oncological
disorders.
Dysregulation
iron
metabolism
profoundly
influences
disease
progression
through
ferroptosis
modulation.
Signal
transducer
activator
transcription
3
(STAT3),
a
transcriptional
regulator,
regulates
binding
to
promoters
key
molecules
such
as
solute
carrier
family
7
member
11
(SLC7A11),
glutathione
peroxidase
4
(GPX4),
ferritin
heavy
chain
1
(FTH1).
In
this
review,
we
described
the
role
STAT3
supporting
tumors
survival
suppressing
malignancies,
bidirectionally
regulating
non-tumors
regulate
development
disease.
We
also
reported
emerging
therapeutic
strategies
target
STAT3-mediated
ferroptosis,
including
natural
phytochemicals,
inhibitors,
nanotechnology-enabled
drug
delivery
systems.
These
advancements
deepen
mechanistic
understanding
regulation,
provide
new
theoretical
bases
treat
ferroptosis-related
diseases.
Language: Английский
Nano-Oncologic Vaccine for Boosting Cancer Immunotherapy: The Horizons in Cancer Treatment
Nanomaterials,
Journal Year:
2025,
Volume and Issue:
15(2), P. 122 - 122
Published: Jan. 16, 2025
Nano-oncologic
vaccines
represent
a
groundbreaking
approach
in
the
field
of
cancer
immunotherapy,
leveraging
unique
advantages
nanotechnology
to
enhance
effectiveness
and
specificity
treatments.
These
utilize
nanoscale
carriers
deliver
tumor-associated
antigens
immunostimulatory
adjuvants,
facilitating
targeted
immune
activation
promoting
robust
antitumor
responses.
By
improving
antigen
presentation
localizing
within
tumor
microenvironment,
nano-oncologic
can
significantly
increase
efficacy
particularly
when
combined
with
other
treatment
modalities.
This
review
highlights
mechanisms
through
which
operate,
their
potential
overcome
existing
limitations
treatment,
ongoing
advancements
design.
Additionally,
it
discusses
delivery
approach,
such
as
EPR
effects,
pH
response,
ultrasonic
magnetic
response.
The
combination
therapy
effects
photothermal
therapy,
radiotherapy,
or
checkpoint
inhibitors
are
also
discussed.
Overall,
hold
great
promise
for
changing
landscape
advancing
personalized
medicine,
paving
way
more
effective
therapeutic
strategies
tailored
individual
patient
needs.
Language: Английский
Utilizing Nanomaterials in Microfluidic Devices for Disease Detection and Treatment
Nanomaterials,
Journal Year:
2025,
Volume and Issue:
15(6), P. 434 - 434
Published: March 12, 2025
Microfluidic
technology
has
gained
widespread
application
in
the
field
of
biomedical
research
due
to
its
exceptional
sensitivity
and
high
specificity.
Particularly
when
combined
with
nanomaterials,
synergy
between
two
significantly
advanced
fields
such
as
precision
medicine,
drug
delivery,
disease
detection,
treatment.
This
article
aims
provide
an
overview
latest
achievements
microfluidic
nanomaterials
detection
It
delves
into
applications
detecting
blood
parameters,
cardiovascular
markers,
neurological
tumor
markers.
Special
emphasis
is
placed
on
their
roles
treatment,
including
models
vessels,
blood–brain
barrier,
lung
chips,
tumors.
The
development
emerging
medical
technologies,
particularly
skin
interactive
devices
imaging,
also
introduced.
Additionally,
challenges
future
prospects
current
clinical
are
discussed.
In
summary,
play
indispensable
role
With
continuous
advancement
technology,
will
become
even
more
profound
extensive.
Language: Английский
Emerging biomaterials and bio-nano interfaces in pulmonary hypertension therapy: transformative strategies for personalized treatment
Frontiers in Bioengineering and Biotechnology,
Journal Year:
2025,
Volume and Issue:
13
Published: May 9, 2025
Pulmonary
hypertension
(PH)
is
still
an
aggressive
and
progressive
illness
with
vascular
remodeling
right
heart
failure
despite
the
therapeutic
advances
made
in
recent
past.
Biomaterials
offer
attractive
route
to
break
current
paradigms
by
inducing
repair,
facilitating
drug
targeting,
allowing
dynamic
regeneration
of
tissue.
This
review
taking
integrated
approach
investigates
revolutionary
role
played
novel
biomaterials
bio–nano
interfaces
PH
treatment.
We
classify
evaluate
several
classes
biomaterial
platforms
including
natural
polymers,
scaffolds
based
on
synthetic
extracellular
vesicles
(EVs),
stimulus-responsive
systems
emphasis
both
underlying
mechanisms
clinical
relevance.
further
address
progress
artificial
intelligence
(AI)-based
integrating
multi-omics
tools
provide
patient-tailored
therapy.
finally
touch
ongoing
limitations
enumerate
future
directions
required
take
forward
biomaterial-based
therapies
towards
reality.
Language: Английский
Stimuli-responsive nanoparticles for lung disorder treatment: From serendipity to precision phosphorylation modulation and drug repurposing
Next Nanotechnology,
Journal Year:
2025,
Volume and Issue:
7, P. 100182 - 100182
Published: Jan. 1, 2025
Language: Английский
Development and characterization of pH-sensitive zerumbone-encapsulated liposomes for lung fibrosis via inhalation Route
European Journal of Pharmaceutics and Biopharmaceutics,
Journal Year:
2024,
Volume and Issue:
unknown, P. 114599 - 114599
Published: Nov. 1, 2024
Language: Английский
Identification of genetic associations between acute myocardial infarction and non-small cell lung cancer
Hao Zheng,
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Jie Wang,
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Yijia Zheng
No information about this author
et al.
Frontiers in Molecular Biosciences,
Journal Year:
2024,
Volume and Issue:
11
Published: Dec. 6, 2024
A
growing
body
of
evidence
suggests
a
potential
connection
between
myocardial
infarction
(MI)
and
lung
cancer
(LC).
However,
the
underlying
pathogenesis
molecular
mechanisms
remain
unclear.
This
research
aims
to
identify
common
genes
pathways
MI
LC
through
bioinformatics
analysis.
Language: Английский