Biomolecules,
Journal Year:
2023,
Volume and Issue:
13(5), P. 820 - 820
Published: May 11, 2023
Cell
death
includes
programmed
and
nonprogrammed
cell
death.
The
former
mainly
ferroptosis,
necroptosis,
pyroptosis,
autophagy,
apoptosis,
while
the
latter
refers
to
necrosis.
Accumulating
evidence
shows
that
pyroptosis
play
essential
regulatory
roles
in
development
of
intestinal
diseases.
In
recent
years,
incidence
inflammatory
bowel
disease
(IBD),
colorectal
cancer
(CRC),
injury
induced
by
ischemia-reperfusion
(I/R),
sepsis,
radiation
have
gradually
increased,
posing
a
significant
threat
human
health.
advancement
targeted
therapies
for
diseases
based
on
provides
new
strategies
treating
Herein,
we
review
with
respect
regulation
highlight
underlying
molecular
mechanisms
potential
therapeutic
applications.
The Journal of Experimental Medicine,
Journal Year:
2021,
Volume and Issue:
218(6)
Published: May 12, 2021
Ferroptosis
is
a
type
of
regulated
necrosis
that
triggered
by
combination
iron
toxicity,
lipid
peroxidation,
and
plasma
membrane
damage.
The
upstream
inducers
ferroptosis
can
be
divided
into
two
categories
(biological
versus
chemical)
activate
major
pathways
(the
extrinsic/transporter
the
intrinsic/enzymatic
pathways).
Excessive
or
deficient
ferroptotic
cell
death
implicated
in
growing
list
physiological
pathophysiological
processes,
coupled
to
dysregulated
immune
response.
This
review
focuses
on
new
discoveries
related
how
cells
their
spilled
contents
shape
innate
adaptive
immunity
health
disease.
Understanding
immunological
characteristics
activity
not
only
illuminates
an
intersection
between
but
may
also
lead
development
novel
treatment
approaches
for
immunopathological
diseases.
Signal Transduction and Targeted Therapy,
Journal Year:
2023,
Volume and Issue:
8(1)
Published: Sept. 21, 2023
Abstract
Ferroptosis
is
an
iron-dependent
form
of
regulated
cell
death
with
distinct
characteristics,
including
altered
iron
homeostasis,
reduced
defense
against
oxidative
stress,
and
abnormal
lipid
peroxidation.
Recent
studies
have
provided
compelling
evidence
supporting
the
notion
that
ferroptosis
plays
a
key
pathogenic
role
in
many
diseases
such
as
various
cancer
types,
neurodegenerative
disease,
involving
tissue
and/or
organ
injury,
inflammatory
infectious
diseases.
Although
precise
regulatory
networks
underlie
are
largely
unknown,
particularly
respect
to
initiation
progression
diseases,
recognized
bona
fide
target
for
further
development
treatment
prevention
strategies.
Over
past
decade,
considerable
progress
has
been
made
developing
pharmacological
agonists
antagonists
these
ferroptosis-related
conditions.
Here,
we
provide
detailed
overview
our
current
knowledge
regarding
ferroptosis,
its
pathological
roles,
regulation
during
disease
progression.
Focusing
on
use
chemical
tools
preclinical
studies,
also
summarize
recent
advances
targeting
across
growing
spectrum
ferroptosis-associated
Finally,
discuss
new
challenges
opportunities
potential
strategy
treating
Cell Death and Disease,
Journal Year:
2021,
Volume and Issue:
12(4)
Published: March 17, 2021
Ferroptosis
is
a
newly
recognised
type
of
regulated
cell
death
(RCD)
characterised
by
iron-dependent
accumulation
lipid
peroxidation.
It
significantly
distinct
from
other
RCDs
at
the
morphological,
biochemical,
and
genetic
levels.
Recent
reports
have
implicated
ferroptosis
in
multiple
diseases,
including
neurological
disorders,
kidney
injury,
liver
cancer.
Ferroptotic
has
also
been
associated
with
dysfunction
intestinal
epithelium,
which
contributes
to
several
diseases.
Research
on
may
provide
new
understanding
disease
pathogenesis
that
benefits
clinical
treatment.
In
this
review,
we
an
overview
its
underlying
mechanisms,
then
describe
emerging
role
ischaemia/reperfusion
(I/R)
inflammatory
bowel
(IBD),
colorectal
cancer
(CRC).
Redox Biology,
Journal Year:
2024,
Volume and Issue:
75, P. 103211 - 103211
Published: May 30, 2024
Ferroptosis
is
a
pervasive
non-apoptotic
form
of
cell
death
highly
relevant
in
various
degenerative
diseases
and
malignancies.
The
hallmark
ferroptosis
uncontrolled
overwhelming
peroxidation
polyunsaturated
fatty
acids
contained
membrane
phospholipids,
which
eventually
leads
to
rupture
the
plasma
membrane.
unique
that
it
essentially
spontaneous,
uncatalyzed
chemical
process
based
on
perturbed
iron
redox
homeostasis
contributing
process,
but
nonetheless
modulated
by
many
metabolic
nodes
impinge
cells'
susceptibility
ferroptosis.
Among
affecting
sensitivity,
several
have
emerged
as
promising
candidates
for
pharmacological
intervention,
rendering
ferroptosis-related
proteins
attractive
targets
treatment
numerous
currently
incurable
diseases.
Herein,
current
members
Germany-wide
research
consortium
focusing
research,
well
key
external
experts
who
made
seminal
contributions
this
rapidly
growing
exciting
field
gathered
provide
comprehensive,
state-of-the-art
review
Specific
topics
include:
basic
mechanisms,
vivo
relevance,
specialized
methodologies,
tools,
potential
contribution
disease
etiopathology
progression.
We
hope
article
will
not
only
established
scientists
newcomers
with
an
overview
multiple
facets
ferroptosis,
also
encourage
additional
efforts
characterize
further
molecular
pathways
modulating
ultimate
goal
develop
novel
pharmacotherapies
tackle
associated
-
or
caused
Molecular Biomedicine,
Journal Year:
2023,
Volume and Issue:
4(1)
Published: Oct. 16, 2023
Abstract
Ferroptosis,
a
regulated
form
of
cellular
death
characterized
by
the
iron-mediated
accumulation
lipid
peroxides,
provides
novel
avenue
for
delving
into
intersection
metabolism,
oxidative
stress,
and
disease
pathology.
We
have
witnessed
mounting
fascination
with
ferroptosis,
attributed
to
its
pivotal
roles
across
diverse
physiological
pathological
conditions
including
developmental
processes,
metabolic
dynamics,
oncogenic
pathways,
neurodegenerative
cascades,
traumatic
tissue
injuries.
By
unraveling
intricate
underpinnings
molecular
machinery,
contributors,
signaling
conduits,
regulatory
networks
governing
researchers
aim
bridge
gap
between
intricacies
this
unique
mode
multifaceted
implications
health
disease.
In
light
rapidly
advancing
landscape
ferroptosis
research,
we
present
comprehensive
review
aiming
at
extensive
in
origins
progress
human
diseases.
This
concludes
careful
analysis
potential
treatment
approaches
carefully
designed
either
inhibit
or
promote
ferroptosis.
Additionally,
succinctly
summarized
therapeutic
targets
compounds
that
hold
promise
targeting
within
various
facet
underscores
burgeoning
possibilities
manipulating
as
strategy.
summary,
enriched
insights
both
investigators
practitioners,
while
fostering
an
elevated
comprehension
latent
translational
utilities.
revealing
basic
processes
investigating
possibilities,
crucial
resource
scientists
medical
aiding
deep
understanding
effects
situations.
Cellular and Molecular Neurobiology,
Journal Year:
2023,
Volume and Issue:
43(7), P. 3329 - 3341
Published: July 17, 2023
Abstract
Ferroptosis
is
a
new
form
of
programmed
cell
death,
which
characterized
by
the
iron-dependent
accumulation
lipid
peroxidation
and
increase
ROS,
resulting
in
oxidative
stress
death.
Iron,
lipid,
multiple
signaling
pathways
precisely
control
occurrence
implementation
ferroptosis.
The
mainly
include
Nrf2/HO-1
pathway,
p62/Keap1/Nrf2
pathway.
Activating
pathway
inhibits
promotes
Furthermore,
some
factors
also
participate
ferroptosis
under
hypoxia,
such
as
HIF-1,
NCOA4,
DMT1.
Meanwhile,
related
with
hypoxia-related
diseases,
MIRI,
cancers,
AKI.
Accordingly,
appears
to
be
therapeutic
target
for
diseases.
Biomedicine & Pharmacotherapy,
Journal Year:
2024,
Volume and Issue:
175, P. 116722 - 116722
Published: May 9, 2024
Ulcerative
colitis
(UC)
is
a
complex
immune-mediated
chronic
inflammatory
bowel
disease.
It
mainly
characterized
by
diffuse
inflammation
of
the
colonic
and
rectal
mucosa
with
barrier
function
impairment.
Identifying
new
biomarkers
for
development
more
effective
UC
therapies
remains
pressing
task
current
research.
Ferroptosis
newly
identified
form
regulated
cell
death
iron-dependent
lipid
peroxidation.
As
research
deepens,
ferroptosis
has
been
demonstrated
to
be
involved
in
pathological
processes
numerous
diseases.
A
growing
body
evidence
suggests
that
pathogenesis
associated
ferroptosis,
regulation
provides
opportunities
treatment.
However,
specific
mechanisms
which
participates
remain
fully
thoroughly
investigated.
Therefore,
this
review,
we
focus
on
advances
mechanism
recent
years
describe
potential
role
UC.
In
addition,
explore
underlying
crosslinked
pathway
between
other
such
as
macrophages,
neutrophils,
autophagy,
endoplasmic
reticulum
stress,
gut
microbiota
Finally,
also
summarize
compounds
may
act
inhibitors
future.