Current Advances in the Therapeutic Potential of Scutellarin: Novel Applications, Mechanisms, and Future Challenges.
Phytomedicine Plus,
Journal Year:
2025,
Volume and Issue:
unknown, P. 100754 - 100754
Published: Jan. 1, 2025
Language: Английский
Targeting autophagy in diabetic cardiomyopathy: From molecular mechanisms to pharmacotherapy
Biomedicine & Pharmacotherapy,
Journal Year:
2024,
Volume and Issue:
175, P. 116790 - 116790
Published: May 22, 2024
Diabetic
cardiomyopathy
(DCM)
is
a
cardiac
microvascular
complication
caused
by
metabolic
disorders.
It
characterized
myocardial
remodeling
and
dysfunction.
The
pathogenesis
of
DCM
associated
with
abnormal
cellular
metabolism
organelle
accumulation.
Autophagy
thought
to
play
key
role
in
the
diabetic
heart,
growing
body
research
suggests
that
modulating
autophagy
may
be
potential
therapeutic
strategy
for
DCM.
Here,
we
have
summarized
major
signaling
pathways
involved
regulation
DCM,
including
Adenosine
5'-monophosphate-activated
protein
kinase
(AMPK),
mechanistic
target
rapamycin
(mTOR),
Forkhead
box
subfamily
O
proteins
(FOXOs),
Sirtuins
(SIRTs),
PTEN-inducible
1
(PINK1)/Parkin.
Given
significant
further
identified
natural
products
chemical
drugs
as
regulators
treatment
This
review
help
better
understand
mechanism
promote
their
clinical
application.
Language: Английский
Targeting programmed cell death in diabetic kidney disease: from molecular mechanisms to pharmacotherapy
Fengzhao Liu,
No information about this author
Zhenyu Yang,
No information about this author
Jixin Li
No information about this author
et al.
Molecular Medicine,
Journal Year:
2024,
Volume and Issue:
30(1)
Published: Dec. 20, 2024
Abstract
Diabetic
kidney
disease
(DKD),
one
of
the
most
prevalent
microvascular
complications
diabetes,
arises
from
dysregulated
glucose
and
lipid
metabolism
induced
by
hyperglycemia,
resulting
in
deterioration
renal
cells
such
as
podocytes
tubular
epithelial
cells.
Programmed
cell
death
(PCD),
comprising
apoptosis,
autophagy,
ferroptosis,
pyroptosis,
necroptosis,
represents
a
spectrum
demise
processes
intricately
governed
genetic
mechanisms
vivo.
Under
physiological
conditions,
PCD
facilitates
turnover
cellular
populations
serves
protective
mechanism
to
eliminate
impaired
or
cells,
thereby
preserving
tissue
homeostasis
amidst
hyperglycemic
stress.
However,
existing
research
predominantly
elucidates
individual
modes
death,
neglecting
intricate
interplay
mutual
modulation
observed
among
various
forms
PCD.
In
this
comprehensive
review,
we
delineate
diverse
regulatory
governing
elucidate
crosstalk
dynamics
distinct
pathways.
Furthermore,
review
recent
advancements
understanding
pathogenesis
explore
their
implications
DKD.
Additionally,
potential
natural
products
derived
primarily
botanical
sources
therapeutic
agents,
highlighting
multifaceted
effects
on
modulating
crosstalk,
proposing
novel
strategies
for
DKD
treatment.
Language: Английский
Mechanistic Insights and Therapeutic Potential of Astilbin and Apigenin in Diabetic cardiomyopathy
Sachin Dhiman,
No information about this author
Sanchit Dhankhar,
No information about this author
Anjali Garg
No information about this author
et al.
Heliyon,
Journal Year:
2024,
Volume and Issue:
10(21), P. e39996 - e39996
Published: Nov. 1, 2024
Language: Английский
Focus on podocytes: diabetic kidney disease and renal fibrosis — a global bibliometric analysis (2000–2024)
Deok-Gyun An,
No information about this author
Jun Tan,
No information about this author
Yiping Lu
No information about this author
et al.
Frontiers in Pharmacology,
Journal Year:
2024,
Volume and Issue:
15
Published: Nov. 15, 2024
Background
Diabetic
kidney
disease
(DKD)
is
a
common
pathway
to
End-stage
renal
(ESRD).
Podocytes
are
crucial
due
their
dual
barrier
functions
in
diseases.
Their
role
fibrosis
and
DKD
regulatory
mechanisms
increasingly
studied.
However,
bibliometric
research
this
field
has
not
been
explored.
Methods
1,250
publications
from
Jan.
1,
2000,
Feb.
16,
2024,
were
retrieved
the
WoSCC
database
analyzed
by
Web
of
Science
results
analysis
tool,
VOSviewer,
CiteSpace.
Results
Our
scrutiny
reveals
that
authors
Liu
Youhua,
Fogo
Agnes
B,
Zhao
Yingyong
have
made
substantial
contributions
domain.
Notably,
“Kidney
International”
highest
volume
area.
Furthermore,
our
identifies
ten
co-citation
clusters:
DKD,
IncRNA,
reactive
oxygen
species,
glomerulosclerosis,
Poria
cocos,
glomerular
diseases,
fibroblasts,
connective
tissue
growth
factor,
coagulation,
Wnt.
Recent
accentuates
keywords
such
as
autophagy,
TRPC6,
ERS,
epigenetics,
NLRP3
inflammasome
frequently
occurring
terms
field.
The
prevailing
hotspot
include
biomarker,
exosomes.
Conclusion
Through
utilization
tools
knowledge
graph
analysis,
we
undertaken
comprehensive
review
intricate
nexus
between
podocytes
fibrosis.
This
study
imparts
valuable
insights
scholars
regarding
dynamic
evolution
association
delineates
prospective
avenues
pivotal
realm.
Language: Английский