Iron homeostasis and ferroptosis in muscle diseases and disorders: mechanisms and therapeutic prospects
Bone Research,
Год журнала:
2025,
Номер
13(1)
Опубликована: Фев. 25, 2025
Abstract
The
muscular
system
plays
a
critical
role
in
the
human
body
by
governing
skeletal
movement,
cardiovascular
function,
and
activities
of
digestive
organs.
Additionally,
muscle
tissues
serve
an
endocrine
function
secreting
myogenic
cytokines,
thereby
regulating
metabolism
throughout
entire
body.
Maintaining
requires
iron
homeostasis.
Recent
studies
suggest
that
disruptions
ferroptosis,
form
iron-dependent
cell
death,
are
essential
contributors
to
progression
wide
range
diseases
disorders,
including
sarcopenia,
cardiomyopathy,
amyotrophic
lateral
sclerosis.
Thus,
comprehensive
overview
mechanisms
ferroptosis
these
conditions
is
crucial
for
identifying
potential
therapeutic
targets
developing
new
strategies
disease
treatment
and/or
prevention.
This
review
aims
summarize
recent
advances
understanding
molecular
underlying
context
injury,
as
well
associated
disorders.
Moreover,
we
discuss
within
pathway
possible
managing
Finally,
shed
light
on
current
limitations
future
prospects
interventions
targeting
ferroptosis.
Язык: Английский
E. coli Nissle 1917 improves gut microbiota composition and serum metabolites to counteract atherosclerosis via the homocitrulline/Caspase 1/NLRP3/GSDMD axis
International Journal of Medical Microbiology,
Год журнала:
2024,
Номер
318, С. 151642 - 151642
Опубликована: Дек. 26, 2024
The
probiotic
E.
coli
Nissle
1917
(EcN)
alleviates
the
progression
of
various
diseases,
including
colitis
and
tumors.
However,
EcN
has
not
been
studied
in
atherosclerosis.
study
investigated
effects
on
atherosclerosis
model
mice
potential
mechanisms.
Язык: Английский