Fungi, immunosenescence and cancer
Bin Xu,
Zan Luo,
Xing Niu
и другие.
Seminars in Cancer Biology,
Год журнала:
2025,
Номер
109, С. 67 - 82
Опубликована: Янв. 7, 2025
Язык: Английский
Quality control of mitochondrial nucleoids
Trends in Cell Biology,
Год журнала:
2025,
Номер
unknown
Опубликована: Март 1, 2025
Язык: Английский
Activation of pyroptosis and immunogenic cell death by targeted liposomal cisplatin for enhanced chemo-immunotherapy for osteosarcoma
Jingyou Bi,
Yuchen Han,
Xin-Li Han
и другие.
Nano Today,
Год журнала:
2025,
Номер
62, С. 102717 - 102717
Опубликована: Март 19, 2025
Язык: Английский
Cytosolic cytochrome c represses ferroptosis
Cell Metabolism,
Год журнала:
2025,
Номер
unknown
Опубликована: Апрель 1, 2025
Язык: Английский
Immunogenic Cell Death and Metabolic Reprogramming in Cancer: Mechanisms, Synergies, and Innovative Therapeutic Strategies
Biomedicines,
Год журнала:
2025,
Номер
13(4), С. 950 - 950
Опубликована: Апрель 12, 2025
Immunogenic
cell
death
(ICD)
is
a
promising
cancer
therapy
where
dying
tumor
cells
release
damage-associated
molecular
patterns
(DAMPs)
to
activate
immune
responses.
Recent
research
highlights
the
critical
role
of
metabolic
reprogramming
in
cells,
including
Warburg
effect,
oxidative
stress,
and
lipid
metabolism,
modulating
ICD
shaping
microenvironment.
These
changes
enhance
activation,
making
tumors
more
susceptible
surveillance.
This
review
explores
mechanisms
linking
mitochondrial
endoplasmic
reticulum
(ER)
ferroptosis.
It
also
discusses
innovative
therapeutic
strategies,
such
as
personalized
combination
therapies,
inhibitors,
targeted
delivery
systems,
improve
efficacy.
The
future
immunotherapy
lies
integrating
activation
overcome
evasion,
with
multi-omics
approaches
microbiome
modulation
offering
new
avenues
for
enhanced
treatment
outcomes.
Язык: Английский
Nanotechnology-Based Strategies for Safe and Effective Immunotherapy
Molecules,
Год журнала:
2024,
Номер
29(24), С. 5855 - 5855
Опубликована: Дек. 11, 2024
Cancer
immunotherapy
using
immune
checkpoint
blockades
has
emerged
as
a
promising
therapeutic
approach.
However,
faces
challenges
such
low
response
rates
in
solid
tumors,
necessitating
strategies
to
remodel
the
immune-suppressive
tumor
microenvironment
(TME)
into
an
immune-activated
state.
One
of
primary
approaches
achieve
this
transformation
is
through
induction
immunogenic
cell
death
(ICD).
Herein,
we
discussed
maximize
ICD
nanoparticles.
In
particular,
review
highlighted
various
studies
integrating
chemotherapy,
radiation
therapy
(RT),
photodynamic
(PDT),
and
photothermal
(PTT)
with
nanoparticle-based
immunotherapy.
The
research
covered
aims
provide
valuable
insights
for
future
on
nanoparticle-assisted
Язык: Английский
Molecular and Cellular Mechanisms of Immunosenescence: Modulation Through Interventions and Lifestyle Changes
Biology,
Год журнала:
2024,
Номер
14(1), С. 17 - 17
Опубликована: Дек. 27, 2024
Immunosenescence,
the
age-related
decline
in
immune
function,
is
a
complex
biological
process
with
profound
implications
for
health
and
longevity.
This
phenomenon,
characterized
by
alterations
both
innate
adaptive
immunity,
increases
susceptibility
to
infections,
reduces
vaccine
efficacy,
contributes
development
of
diseases.
At
cellular
level,
immunosenescence
manifests
as
decreased
production
naive
T
B
cells,
accumulation
memory
senescent
thymic
involution,
dysregulated
cytokine
production.
Recent
advances
molecular
biology
have
shed
light
on
underlying
mechanisms
immunosenescence,
including
telomere
attrition,
epigenetic
alterations,
mitochondrial
dysfunction,
changes
key
signaling
pathways
such
NF-κB
mTOR.
These
lead
functional
impairments
various
cell
types,
altering
their
proliferative
capacity,
differentiation,
effector
functions.
Emerging
research
suggests
that
lifestyle
factors
may
modulate
rate
extent
at
levels.
Physical
activity,
nutrition,
stress
management,
sleep
patterns
been
shown
influence
inflammatory
markers,
oxidative
older
adults.
review
provides
comprehensive
analysis
explores
how
interventions
impact
these
processes.
We
will
examine
current
understanding
genomic,
epigenomic,
proteomic
levels,
discuss
can
potentially
mitigate
or
partially
reverse
aspects
aging.
By
integrating
recent
findings
from
immunology,
gerontology,
biology,
we
aim
elucidate
intricate
interplay
between
aging
informing
future
strategies
maintaining
competence
populations.
Язык: Английский