Exploration of Medicine,
Год журнала:
2023,
Номер
unknown, С. 127 - 156
Опубликована: Апрель 17, 2023
Oxygen
free
radicals
[reactive
oxygen
species
(ROS)]
and
nitrogen
(RNS)]
are
generated
by
mitochondria
during
adenosine
triphosphate
synthesis,
catalytic
activities
of
cytochrome
P450,
nicotinamide
adenine
dinucleotide
phosphate
oxidases
(NOXs),
cyclooxygenases,
nitric
oxide
synthases
drug
catabolism,
phagocytosis,
acute
inflammation.
Under
normal
circumstances,
low
levels
ROS
RNS
provide
redox
signalings
that
control
many
essential
physiological
processes.
As
age
progresses
increase
excessively
due
to
dysfunctional
mitochondria,
dysregulated
NOX,
other
free-radical
generating
sources,
leading
oxidative
stress,
which
causes
oxidation
denaturation
key
cellular
components
including
DNA,
proteins,
lipids,
become
abnormal,
constituting
damage-associated
molecular
pattern
(DAMP),
recognized
as
‘non-self’
immune
cells,
inflammation
is
mediated
nuclear
factor
kappa
B-inflammasome,
p38-c-Jun
N-terminal
kinase
Janus
kinase-signal
transducer
activator
transcription
pathways.
DAMPs
continuously
released
from
damaged
senescent
causing
an
otherwise
normally
transient
turning
into
systemic
chronic
inflammation,
the
root
cause
aging
age-associated
diseases
(AADs).
Cells
restore
balance
activating
erythroid
2-related
2
(Nrf2)
pathway
induces
synthesis
release
antioxidation
molecules
enzymes
haem
oxygenase-1,
also
inhibits
three
inflammatory
Furthermore,
upregulation
autophagy
(AP)
can
get
rid
abnormal
molecules,
prevent
generation
DAMPs,
attenuate
Both
AP
Nrf2
decrease
with
age.
The
upregulations
Nrf2,
AP,
downregulation
controlled
sensors
energy
stress
levels,
i.e.,
monophosphate-activated
protein
kinase,
silent
information
regulator
1,
Sestrins,
well
extracellular
matrix,
while
mammalian
targets
for
rapamycin
complex
a
nutrient
sensor,
act
in
opposite
direction.
If
these
sensor
systems
becomes
dysregulated,
process
accelerates,
risk
AADs
increases.
Frontiers in Endocrinology,
Год журнала:
2022,
Номер
13
Опубликована: Сен. 26, 2022
Irisin,
out-membrane
part
of
fibronectin
type
III
domain–containing
5
protein
(FNDC5),
was
activated
by
Peroxisome
proliferator-activated
receptor
γ
(PPARγ)
coactivator-1α
(PGC-1α)
during
physical
exercise
in
skeletal
muscle
tissues.
Most
studies
have
reported
that
the
concentration
irisin
is
highly
associated
with
health
status.
For
instance,
level
significantly
lower
patients
obesity,
osteoporosis/fractures,
atrophy,
Alzheimer’s
disease,
and
cardiovascular
diseases
(CVDs)
but
higher
cancer.
Irisin
can
bind
to
its
integrin
αV/β5
induce
browning
white
fat,
maintain
glucose
stability,
keep
bone
homeostasis,
alleviate
cardiac
injury.
However,
it
unclear
whether
works
directly
binding
receptors
regulate
regeneration,
promote
neurogenesis,
liver
inhibit
cancer
development.
Supplementation
recombinant
or
exercise-activated
might
be
a
successful
strategy
fight
osteoporosis,
injury,
CVDs
one
go.
Here,
we
summarize
publications
FNDC5/irisin
from
PubMed/Medline,
Scopus,
Web
Science
until
March
2022,
review
role
physiology
pathology.
Antioxidants,
Год журнала:
2024,
Номер
13(8), С. 906 - 906
Опубликована: Июль 26, 2024
Metabolic
dysfunction-associated
steatotic
liver
disease
(MASLD),
formerly
known
as
nonalcoholic
fatty
(NAFLD),
encompasses
a
range
of
conditions
from
steatosis
to
steatohepatitis
(NASH).
Its
prevalence,
especially
among
patients
with
metabolic
syndrome,
highlights
its
growing
global
impact.
The
pathogenesis
MASLD
involves
dysregulation,
inflammation,
oxidative
stress,
genetic
factors
and,
notably,
mitochondrial
dysfunction.
Recent
studies
underscore
the
critical
role
dysfunction
in
MASLD's
progression.
Therapeutically,
enhancing
function
has
gained
interest,
along
lifestyle
changes
and
pharmacological
interventions
targeting
processes.
FDA's
approval
resmetirom
for
metabolic-associated
(MASH)
fibrosis
marks
significant
step.
While
represents
progress,
further
research
is
essential
understand
MASLD-related
fully.
Innovative
strategies
like
gene
editing
small-molecule
modulators,
alongside
interventions,
can
potentially
improve
treatment.
Drug
repurposing
new
targets
will
advance
therapy,
addressing
increasing
burden.
Therefore,
this
review
aims
provide
better
understanding
identify
more
effective
preventive
treatment
strategies.
Acta Physiologica,
Год журнала:
2024,
Номер
240(7)
Опубликована: Май 16, 2024
To
reveal
the
contribution
of
Irisin
in
beneficial
effects
resistance
exercise
on
myocardial
fibrosis
(MF)
and
cardiac
function
mice
with
infarction
(MI).
Life,
Год журнала:
2024,
Номер
14(2), С. 272 - 272
Опубликована: Фев. 18, 2024
The
bidirectional
relationship
between
type
2
diabetes
and
(non-alcoholic
fatty
liver
disease)
NAFLD
is
indicated
by
the
higher
prevalence
worse
disease
course
of
one
condition
in
presence
other,
but
also
apparent
beneficial
effects
observed
one,
when
other
improved.
This
partly
explained
their
belonging
to
a
multisystemic
that
includes
components
metabolic
syndrome
shared
pathogenetic
mechanisms.
Throughout
progression
more
advanced
stages,
complex
systemic
local
derangements
are
involved.
During
fibrogenesis,
significant
reprogramming
occurs
hepatic
stellate
cells,
hepatocytes,
immune
engaging
carbohydrate
lipid
pathways
support
high-energy-requiring
processes.
natural
history
evolves
variable
dynamic
manner,
probably
due
interaction
number
modifiable
(diet,
physical
exercise,
microbiota
composition,
etc.)
non-modifiable
(genetics,
age,
ethnicity,
risk
factors
may
intervene
concomitantly,
or
subsequently/intermittently
time.
influence
(and
rate)
fibrosis
progression/regression.
recognition
control
determine
rapid
(or
its
regression)
critical,
as
stages
associated
with
liver-related
all-cause
mortality.
Frontiers in Endocrinology,
Год журнала:
2025,
Номер
15
Опубликована: Янв. 9, 2025
Non-alcoholic
fatty
liver
disease
(NAFLD)
is
a
multisystem
metabolic
disorder,
marked
by
abnormal
lipid
accumulation
and
intricate
inter-organ
interactions,
which
contribute
to
systemic
imbalances.
NAFLD
may
progress
through
several
stages,
including
simple
steatosis
(NAFL),
non-alcoholic
steatohepatitis
(NASH),
cirrhosis,
potentially
cancer.
This
closely
associated
with
disorders
driven
overnutrition,
key
pathological
processes
dysregulation,
impaired
autophagy,
mitochondrial
dysfunction,
endoplasmic
reticulum
(ER)
stress,
local
inflammation.
While
hepatic
metabolism
in
well-documented,
further
research
into
communication
mechanisms
crucial
for
deeper
understanding
of
progression.
review
delves
intrahepatic
networks
tissue-specific
signaling
mediators
involved
pathogenesis,
emphasizing
their
impact
on
distal
organs.
Frontiers in Endocrinology,
Год журнала:
2022,
Номер
13
Опубликована: Июнь 17, 2022
Muscle
and
adipose
tissue
produce
irisin
during
exercise.
Irisin
is
thermogenic
adipomyokine,
improves
glucose
lipid
metabolism,
ameliorates
the
effects
of
obesity-driven
inflammation,
metabolic
syndrome,
diabetes.
In
addition,
exercise-induced
activates
anti-inflammatory
pathways
may
play
an
essential
role
in
improving
outcomes
inflammatory
conditions,
such
as
coronavirus
disease
(COVID-19).
COVID-19
infection
can
activate
different
intracellular
receptors
modulate
various
course
disease.
The
cytokine
release
storm
(CRS)
produced
significant
because
it
promotes
context
for
systemic
which
increases
risk
mortality
patients
with
severe
acute
respiratory
syndrome
2
(SARS-CoV2).
viral
resulting
organ
damage
stimulate
mitogen-activated
protein
kinase(MAPK)
toll-like
receptor
4
(TLR4)/toll
interleukin
(TIR)-domain-containing
adaptor
(MyD88)
while
negatively
modulating
AMP-activated
kinase
(AMPK)
pathway,
leading
to
increased
production.
Exercise-induced
counteract
this
modulation
by
decreasing
Consequently,
levels,
found
healthy
patients,
favor
a
better
prognosis
SARS-CoV2.
This
review
aims
explore
molecular
mechanisms
underlying
properties
mitigating
CRS
preventing
due