Biomedicines,
Journal Year:
2025,
Volume and Issue:
13(5), P. 1129 - 1129
Published: May 7, 2025
Background/Objectives:
Major
depressive
disorder
(MDD)
is
a
major
global
health
concern
that
intimately
linked
to
neuroinflammation,
oxidative
stress,
mitochondrial
dysfunction,
and
complicated
metabolic
abnormalities.
Traditional
antidepressants
frequently
fall
short,
highlighting
the
urgent
need
for
new,
safer,
more
acceptable
therapeutic
techniques.
Phytochemicals,
i.e.,
natural
derived
from
plants,
are
emerging
as
powerful
plant-based
therapies
capable
of
targeting
many
pathogenic
pathways
at
same
time.
Summary:
This
narrative
review
synthesizes
evidence
preclinical
clinical
studies
on
efficacy
phytochemicals
such
curcumin,
polyphenols,
flavonoids,
alkaloids
in
lowering
depressed
symptoms.
Consistent
data
show
these
substances
have
neuroprotective,
anti-inflammatory,
antioxidant
properties,
altering
neuroimmune
interactions,
reducing
damage,
improving
resilience.
Particularly,
polyphenols
flavonoids
great
potential
because
their
capacity
penetrate
blood–brain
barrier,
inhibit
cytokine
activity,
encourage
neuroplasticity
mediated
by
brain-derived
neurotrophic
factor
(BDNF).
Despite
promising
results,
heterogeneity
study
designs,
phytochemical
formulations,
patient
demographics
highlights
importance
thorough,
standardized
studies.
Conclusions:
identifies
compelling
adjuvant
or
independent
depression
treatment,
providing
multimodal
mechanisms
enhanced
tolerability.
Additional
research
into
improved
dosage,
pharmacokinetics,
long-term
safety,
integrative
therapy
approaches
essential.
Using
phytotherapeutics
could
considerably
improve
holistic
customized
care,
encouraging
new
routes
neuroscience
psychiatry.
Metabolites,
Journal Year:
2025,
Volume and Issue:
15(2), P. 124 - 124
Published: Feb. 13, 2025
Neurodegenerative
diseases
comprise
a
group
of
chronic,
usually
age-related,
disorders
characterized
by
progressive
neuronal
loss,
deformation
structure,
or
loss
function,
leading
to
substantially
reduced
quality
life.
They
remain
significant
focus
scientific
and
clinical
interest
due
their
increasing
medical
social
importance.
Most
neurodegenerative
present
intracellular
protein
aggregation
extracellular
deposition
(plaques),
such
as
α-synuclein
in
Parkinson's
disease
amyloid
beta
(Aβ)/tau
aggregates
Alzheimer's.
Conventional
treatments
for
conditions
incur
high
costs
are
related
the
development
several
adverse
effects.
In
addition,
many
patients
irresponsive
them.
For
these
reasons,
there
is
growing
tendency
find
new
therapeutic
approaches
help
patients.
This
review
intends
investigate
some
phytocompounds'
effects
on
diseases.
These
generally
increased
oxidative
stress
inflammation,
so
phytocompounds
can
prevent
treat
To
achieve
our
aim
provide
critical
assessment
current
literature
about
phytochemicals
targeting
neurodegeneration,
we
reviewed
reputable
databases,
including
PubMed,
EMBASE,
COCHRANE,
seeking
trials
that
utilized
against
conditions.
A
few
investigated
humans,
after
screening,
13
were
ultimately
included
following
PRISMA
guidelines.
compounds
include
polyphenols
(flavonoids
luteolin
quercetin,
phenolic
acids
rosmarinic
acid,
ferulic
caffeic
other
like
resveratrol),
alkaloids
(such
berberine,
huperzine
A,
caffeine),
terpenoids
ginkgolides
limonene).
The
gathered
evidence
underscores
caffeine,
ginkgolides,
primarily
anti-inflammatory,
antioxidant,
neuroprotective,
counteracting
neuroinflammation,
oxidation,
synaptic
dysfunctions,
which
crucial
aspects
intervention
various
conditions,
Alzheimer's
dementias,
depression,
neuropsychiatric
disorders.
summary,
they
show
use
improvements
cognition,
memory,
disinhibition,
irritability/lability,
aberrant
behavior,
hallucinations,
mood
International Journal of Molecular Sciences,
Journal Year:
2025,
Volume and Issue:
26(2), P. 484 - 484
Published: Jan. 8, 2025
Alzheimer's
disease
(AD)
remains
a
leading
cause
of
cognitive
decline
and
mortality
worldwide,
characterized
by
neurodegeneration,
synaptic
deficiencies,
neuroinflammation.
Despite
advancements
in
early
detection,
diagnosis,
treatment,
AD
presents
substantial
challenges
due
to
its
complex
pathology,
heterogeneity,
the
limited
efficacy
current
therapies.
Consequently,
there
is
pressing
need
for
novel
therapeutic
agents
target
multifaceted
aspects
enhance
treatments,
minimize
adverse
effects.
AdipoRon,
an
adiponectin
receptor
agonist,
has
garnered
interest
potential
neuroprotective
effects,
including
reducing
neuroinflammation,
improving
mitochondrial
function,
mitigating
tau
hyperphosphorylation.
This
review
aimed
evaluate
effects
AdipoRon-based
replacement
therapy
against
AD,
using
comprehensive
approach
grounded
PICO
framework-Population,
Intervention,
Comparison,
Outcomes.
A
total
six
studies
were
reviewed,
vitro
vivo
investigations
examining
AdipoRon's
impact
on
various
models.
These
involved
different
cell
lines
transgenic
mouse
models,
assessing
outcomes
such
as
phosphorylation,
relevant
molecular
pathways.
By
synthesizing
data
from
these
studies,
our
thoroughly
explains
mechanisms
action,
agent
AD.
analysis
aims
highlight
state
knowledge,
identify
gaps
research,
suggest
directions
future
clinical
applications.
Nutrients,
Journal Year:
2024,
Volume and Issue:
16(16), P. 2721 - 2721
Published: Aug. 15, 2024
Aging-related
disorders
pose
significant
challenges
due
to
their
complex
interplay
of
physiological
and
metabolic
factors,
including
inflammation,
oxidative
stress,
mitochondrial
dysfunction.
Curcumin,
a
natural
compound
with
potent
antioxidant
anti-inflammatory
properties,
has
emerged
as
promising
candidate
for
mitigating
these
age-related
processes.
However,
gaps
in
understanding
the
precise
mechanisms
curcumin’s
effects
optimal
dosages
different
conditions
necessitate
further
investigation.
This
systematic
review
synthesizes
current
evidence
on
potential
addressing
disorders,
emphasizing
its
impact
cognitive
function,
neurodegeneration,
muscle
health
older
adults.
By
evaluating
safety,
efficacy,
action
curcumin
supplementation,
this
aims
provide
insights
into
therapeutic
promoting
healthy
aging.
A
search
across
three
databases
using
specific
keywords
yielded
2256
documents,
leading
selection
15
clinical
trials
synthesis.
Here,
we
highlight
multifaceted
agent
combating
disorders.
The
findings
suggest
that
could
offer
effective
approach
enhancing
quality
life
aging
individuals.
Further
research
well-designed
are
essential
validate
optimize
use
personalized
medicine
approaches
conditions.
Pharmaceuticals,
Journal Year:
2025,
Volume and Issue:
18(1), P. 133 - 133
Published: Jan. 20, 2025
Neuroinflammation
is
a
key
factor
in
the
progression
of
neurodegenerative
diseases,
driven
by
dysregulation
molecular
pathways
and
activation
brain’s
immune
system,
resulting
release
pro-inflammatory
oxidative
molecules.
This
chronic
inflammation
exacerbated
peripheral
leukocyte
infiltration
into
central
nervous
system.
Medicinal
plants,
with
their
historical
use
traditional
medicine,
have
emerged
as
promising
candidates
to
mitigate
neuroinflammation
offer
sustainable
alternative
for
addressing
conditions
green
healthcare
framework.
review
evaluates
effects
medicinal
plants
on
neuroinflammation,
emphasizing
mechanisms
action,
effective
dosages,
clinical
implications,
based
systematic
search
databases
such
PubMed,
SCOPUS,
Web
Science.
The
findings
highlight
that
like
Cleistocalyx
nervosum
var.
paniala,
Curcuma
longa,
Cannabis
sativa,
Dioscorea
nipponica
reduce
cytokines
(TNF-α,
IL-6,
IL-1β),
inhibit
enzymes
(COX-2
iNOS),
activate
antioxidant
pathways,
particularly
Nrf2.
NF-κB
primary
pathway
inhibited
across
studies.
While
anti-inflammatory
potential
these
significant,
variability
dosages
phytochemical
compositions
limits
translation.
Here,
we
are
modulators
underscoring
therapeutic
potential.
Future
research
should
focus
animal
models,
standardized
protocols,
safety
assessments,
integrating
advanced
methodologies,
genetic
studies
nanotechnology,
enhance
applicability
disease
management.
Biomedicines,
Journal Year:
2024,
Volume and Issue:
12(9), P. 2096 - 2096
Published: Sept. 13, 2024
The
triad
of
vascular
impairment,
muscle
atrophy,
and
cognitive
decline
represents
critical
age-related
conditions
that
significantly
impact
health.
Vascular
impairment
disrupts
blood
flow,
precipitating
the
mass
reduction
seen
in
sarcopenia
neuronal
function
characteristic
neurodegeneration.
Our
limited
understanding
intricate
relationships
within
this
hinders
accurate
diagnosis
effective
treatment
strategies.
This
review
analyzes
interrelated
mechanisms
contribute
to
these
conditions,
with
a
specific
focus
on
oxidative
stress,
chronic
inflammation,
impaired
nutrient
delivery.
aim
is
understand
common
pathways
involved
suggest
comprehensive
therapeutic
approaches.
dysfunctions
hinder
circulation
transportation
nutrients,
resulting
characterized
by
atrophy
weakness.
dysfunction
have
negative
physical
quality
life.
Neurodegenerative
diseases
exhibit
comparable
pathophysiological
affect
motor
functions.
Preventive
approaches
encompass
lifestyle
adjustments,
addressing
integrated
therapies
improving
muscular
well-being.
Better
links
can
refine
strategies
yield
better
patient
outcomes.
study
emphasizes
complex
interplay
between
dysfunction,
degeneration,
decline,
highlighting
necessity
for
multidisciplinary
Advances
domain
promise
improved
diagnostic
accuracy,
more
options,
enhanced
preventive
measures,
all
contributing
higher
life
elderly
population.
Biomedicines,
Journal Year:
2025,
Volume and Issue:
13(1), P. 167 - 167
Published: Jan. 12, 2025
Background/Objectives:
The
dual
forces
of
structured
inquiry
and
serendipitous
discovery
have
long
shaped
neuropsychiatric
research,
with
groundbreaking
treatments
such
as
lithium
ketamine
resulting
from
unexpected
discoveries.
However,
relying
on
chance
is
becoming
increasingly
insufficient
to
address
the
rising
prevalence
mental
health
disorders
like
depression
schizophrenia,
which
necessitate
precise,
innovative
approaches.
Emerging
technologies
artificial
intelligence,
induced
pluripotent
stem
cells,
multi-omics
potential
transform
this
field
by
allowing
for
predictive,
patient-specific
interventions.
Despite
these
advancements,
traditional
methodologies
animal
models
single-variable
analyses
continue
be
used,
frequently
failing
capture
complexities
human
conditions.
Summary:
This
review
critically
evaluates
transition
serendipity
precision-based
in
research.
It
focuses
key
innovations
dynamic
systems
modeling
network-based
approaches
that
use
genetic,
molecular,
environmental
data
identify
new
therapeutic
targets.
Furthermore,
it
emphasizes
importance
interdisciplinary
collaboration
human-specific
overcoming
limitations
Conclusions:
We
highlight
precision
psychiatry’s
transformative
revolutionizing
care.
paradigm
shift,
combines
cutting-edge
systematic
frameworks,
promises
increased
diagnostic
accuracy,
reproducibility,
efficiency,
paving
way
tailored
better
patient
outcomes
Biomedicines,
Journal Year:
2025,
Volume and Issue:
13(5), P. 1045 - 1045
Published: April 25, 2025
Neurodegenerative
diseases
represent
a
daunting
global
challenge,
affecting
millions
worldwide
and
imposing
significant
clinical
socioeconomic
burdens
[...].
International Journal of Molecular Sciences,
Journal Year:
2024,
Volume and Issue:
25(23), P. 12767 - 12767
Published: Nov. 27, 2024
The
tryptophan-kynurenine
(KYN)
pathway
has
long
been
recognized
for
its
essential
role
in
generating
metabolites
that
influence
various
physiological
processes.
Traditionally,
these
have
categorized
into
distinct,
often
opposing
groups,
such
as
pro-oxidant
versus
antioxidant,
excitotoxic/neurotoxic
neuroprotective.
This
dichotomous
framework
shaped
much
of
the
research
on
conditions
like
neurodegenerative
and
neuropsychiatric
disorders,
well
cancer,
where
metabolic
imbalances
are
a
key
feature.
effects
significantly
influenced
by
factors,
including
concentration
particular
cellular
milieu
which
they
generated.
A
molecule
acts
neuroprotective
at
low
concentrations
may
exhibit
neurotoxic
elevated
levels.
oxidative
equilibrium
surrounding
environment
can
alter
function
KYN
from
an
antioxidant
to
pro-oxidant.
narrative
review
offers
comprehensive
examination
analysis
contemporary
understanding
metabolites,
emphasizing
their
multifaceted
biological
functions
relevance
numerous
pathological
underscores
pressing
necessity
paradigm
shift
comprehension
metabolism.
Understanding
context-dependent
roles
is
vital
novel
therapies
Alzheimer's
disease,
multiple
sclerosis,
cancer.
Comprehensive
modulation,
balancing
inflammatory
signals
enzyme
regulation,
promising
avenues
targeted,
effective
treatments.