The Journal of Comparative Neurology,
Год журнала:
2017,
Номер
525(15), С. 3177 - 3189
Опубликована: Июнь 3, 2017
Neurons
expressing
nitric
oxide
(NO)
synthase
(nNOS)
and
thus
capable
of
synthesizing
NO
play
major
roles
in
many
aspects
brain
function.
While
the
heterogeneity
nNOS-expressing
neurons
has
been
studied
various
regions,
their
phenotype
hypothalamus
remains
largely
unknown.
Here
we
examined
distribution
cells
nNOS
postnatal
adult
female
mouse
using
immunohistochemistry.
In
both
adults
neonates,
was
restricted
to
regions
involved
control
bodily
functions,
such
as
energy
balance
reproduction.
Labeled
were
found
paraventricular,
ventromedial,
dorsomedial
nuclei
well
lateral
area
hypothalamus.
Intriguingly,
seen
only
after
second
week
life
arcuate
nucleus
(ARH).
The
most
dense
heavily
labeled
population
organum
vasculosum
laminae
terminalis
(OV)
median
preoptic
(MEPO),
where
somata
neuroendocrine
releasing
GnRH
controlling
reproduction
are
located.
A
great
proportion
nNOS-immunoreactive
OV/MEPO
ARH
express
estrogen
receptor
(ER)
α.
Notably,
almost
all
ERα-immunoreactive
also
expressed
nNOS.
Moreover,
use
EYFPVglut2
,
EYFPVgat
GFPGad67
transgenic
lines
revealed
that,
like
neurons,
hypothalamic
have
a
glutamatergic
phenotype,
except
for
ARH,
which
GABAergic.
Altogether,
these
observations
consistent
with
proposed
role
physiological
processes.
Endocrine Reviews,
Год журнала:
2018,
Номер
39(3), С. 333 - 368
Опубликована: Янв. 17, 2018
The
fertility
and
survival
of
an
individual
rely
on
the
ability
periphery
to
promptly,
effectively,
reproducibly
communicate
with
brain
neural
networks
that
control
reproduction,
food
intake,
energy
homeostasis.
Tanycytes,
a
specialized
glial
cell
type
lining
wall
third
ventricle
in
median
eminence
hypothalamus,
appear
act
as
linchpin
these
processes
by
dynamically
controlling
secretion
neuropeptides
into
portal
vasculature
hypothalamic
neurons
regulating
blood-brain
blood–cerebrospinal
fluid
exchanges,
both
depend
cells
adapt
their
morphology
physiological
state
individual.
In
addition
barrier
properties,
tanycytes
possess
sense
blood
glucose
levels,
play
fundamental
active
role
shuttling
circulating
metabolic
signals
intake.
Moreover,
accumulating
data
suggest
that,
keeping
putative
descent
from
radial
cells,
are
endowed
stem
properties
may
respond
dietary
or
reproductive
cues
modulating
neurogenesis.
Tanycytes
could
thus
constitute
missing
link
loop
connecting
behavior,
hormonal
changes,
signal
transduction,
central
neuronal
activation
and,
finally,
behavior
again.
this
article,
we
will
examine
recent
advances
understanding
tanycytic
plasticity
function
hypothalamus
underlying
molecular
mechanisms.
We
also
discuss
involvement
therapeutic
potential
disorders.
The
rising
concerns
of
the
recurrence
and
bone
deficiency
in
surgical
treatment
malignant
tumors
have
raised
an
urgent
need
advance
multifunctional
therapeutic
platforms
for
efficient
tumor
therapy
regeneration.
Herein,
construction
a
biomaterial
system
is
reported
by
integration
2D
Nb2
C
MXene
wrapped
with
S-nitrosothiol
(RSNO)-grafted
mesoporous
silica
3D-printing
bioactive
glass
(BG)
scaffolds
(MBS).
near
infrared
(NIR)-triggered
photonic
hyperthermia
NIR-II
biowindow
precisely
controlled
nitric
oxide
(NO)
release
are
coordinated
multitarget
ablation
to
enhance
localized
osteosarcoma
treatment.
situ
formed
phosphorus
calcium
components
degraded
from
BG
scaffold
promote
bone-regeneration
bioactivity,
augmented
sufficient
blood
supply
triggered
on-demand
NO
release.
tunable
generation
plays
crucial
role
sequential
adjuvant
ablation,
combinatory
promotion
coupled
vascularization,
This
study
demonstrates
full
osseous
regeneration
as
enabled
implantation
MBS.
design
specific
features
controllable
release,
highly
photothermal
conversion,
stimulatory
provides
intriguing
platform
diversified
tumors.
Advanced Functional Materials,
Год журнала:
2022,
Номер
32(34)
Опубликована: Июнь 24, 2022
Abstract
MXenes
(viz.,
transition
metal
carbides,
carbonitrides,
and
nitrides)
have
emerged
as
a
new
subclass
of
2D
materials.
Due
to
their
outstanding
physicochemical
biological
properties,
gained
much
attention
in
the
biomedical
field
recent
years,
including
drug
delivery
systems,
regenerative
medicine,
biosensing.
Additionally,
incorporation
into
hydrogels
has
garnered
significant
interest
engineering
an
electroactive
mechanical
nanoreinforcer
capable
converting
nonconductive
scaffolds
excellent
conductors
electricity
with
impressive
effect
on
properties
for
organs
tissues
such
cardiac,
skeletal
muscle,
nerve.
However,
many
questions
problems
remain
unresolved
that
need
be
answered
usher
these
materials
toward
true
destiny.
Thus,
this
review
paper
aims
provide
overview
design
applications
MXene‐integrated
composites
applications,
cardiac
tissue
engineering,
wound
healing,
infection
therapy,
cancer
biosensors.
Moreover,
current
challenges
limitations
utilizing
vivo
are
highlighted
discussed,
followed
by
its
prospects
guideline
possible
various
futuristic
applications.
This
article
will
inspire
researchers,
who
search
opportunities,
using
nanomaterial
Endocrinology,
Год журнала:
2019,
Номер
160(11), С. 2719 - 2736
Опубликована: Сен. 12, 2019
Abstract
The
increasing
occurrence
of
obesity
has
become
a
significant
public
health
concern.
Individuals
with
have
higher
prevalence
heart
disease,
stroke,
osteoarthritis,
diabetes,
and
reproductive
disorders.
Reproductive
problems
include
menstrual
irregularities,
pregnancy
complications,
infertility
due
to
anovulation,
in
women,
lower
testosterone
diminished
sperm
count,
men.
In
particular,
women
reduced
levels
both
gonadotropin
hormones,
and,
obese
men,
is
accompanied
by
LH.
Taken
together,
these
findings
indicate
central
dysregulation
the
hypothalamic–pituitary–gonadal
axis,
specifically
at
level
GnRH
neuron
function,
which
final
brain
output
for
regulation
reproduction.
Obesity
state
hyperinsulinemia,
hyperlipidemia,
hyperleptinemia,
chronic
inflammation.
Herein,
we
review
recent
advances
our
understanding
how
metabolic
immune
changes
affect
hypothalamic
function
neurons.
latter
part,
focus
on
neuroinflammation
as
major
consequence
discuss
that
reveal
neurons
are
uniquely
positioned
respond
inflammatory
changes.
Redox Biology,
Год журнала:
2020,
Номер
34, С. 101567 - 101567
Опубликована: Май 15, 2020
Nitric
oxide
(NO)
is
a
multifunctional
signalling
molecule
and
neurotransmitter
that
plays
an
important
role
in
physiological
pathophysiological
processes.
In
conditions,
NO
regulates
cell
survival,
differentiation
proliferation
of
neurons.
It
also
synaptic
activity,
plasticity
vesicle
trafficking.
affects
cellular
through
protein
S-nitrosylation,
the
NO-mediated
posttranslational
modification
cysteine
thiols
(SNO).
SNO
can
affect
protein-protein
interaction
localization.
Numerous
studies
have
shown
excessive
lead
to
nitrosative
stress
nervous
system,
contributing
neuropathology.
this
review,
we
summarize
progression
neurodevelopmental,
psychiatric
neurodegenerative
disorders,
with
special
attention
autism
spectrum
disorder
(ASD).
We
provide
mechanistic
insights
into
contribution
diverse
brain
disorders.
Finally,
suggest
pharmacological
agents
inhibit
or
augment
production
as
well
new
approaches
modulate
formation
SNO-proteins
serve
promising
approach
for
treatment
Translational Neurodegeneration,
Год журнала:
2018,
Номер
7(1)
Опубликована: Фев. 5, 2018
Hydrogen
Sulfide
(H2S)
and
Nitric
Oxide
(NO)
have
become
recognized
as
important
gaseous
signaling
molecules
with
enormous
pharmacological
effects,
therapeutic
value,
central
physiological
roles.
NO
is
one
of
the
most
regulators
pathophysiological
condition
in
nervous
system
(CNS).
It
critical
various
functioning
brain;
however,
beyond
certain
concentration/level,
it
toxic.
H2S
was
regarded
toxic
gas
smell
like
rotten
egg.
But,
now
emerging
neuroprotectant
neuromodulator.
Recently,
use
donors
inhibitors
these
helped
us
to
identify
their
accurate
precise
biological
effects.
The
abundant
neurotransmitter
CNS
(glutamate)
initiator
reaction
that
forms
NO,
highly
expressed
brain.
These
are
shedding
light
on
pathogenesis
neurological
disorders.
This
review
mainly
focused
importance
for
normal
CNS.
British Journal of Pharmacology,
Год журнала:
2018,
Номер
176(2), С. 197 - 211
Опубликована: Ноя. 7, 2018
NO
operates
throughout
the
brain
as
an
intercellular
messenger,
initiating
its
varied
physiological
effects
by
activating
specialized
GC‐coupled
receptors,
resulting
in
formation
of
cGMP.
In
line
with
widespread
expression
this
pathway,
participates
numerous
different
functions.
This
review
gives
account
discovery
a
signalling
molecule
brain,
experiments
that
originated
search
for
mysterious
cGMP‐stimulating
factor
released
from
central
neurones
when
their
NMDA
receptors
were
stimulated,
and
summarizes
subsequent
key
steps
helped
establish
status
transmitter.
Currently,
various
modes
operation
are
viewed
to
underlie
diverse
behaviour,
ranging
very
local
between
synaptic
partners
(in
orthograde
or
retrograde
directions)
volume‐type
transmission
whereby
synthesized
multiple
synchronous
sources
summate
spatially
temporally
influence
intermingled
neuronal
non‐neuronal
cells,
irrespective
anatomical
connectivity.
Linked
Articles
article
is
part
themed
section
on
Nitric
Oxide
20
Years
1998
Nobel
Prize.
To
view
other
articles
visit
http://onlinelibrary.wiley.com/doi/10.1111/bph.v176.2/issuetoc