Research progress on quercetin in improving the survival rate of random skin flap
Siping Xu,
No information about this author
Wenhua Zhang,
No information about this author
Xuanfen Zhang
No information about this author
et al.
Archives of Dermatological Research,
Journal Year:
2025,
Volume and Issue:
317(1)
Published: Jan. 16, 2025
Language: Английский
Metal–organic framework microneedles for precision transdermal drug delivery: design strategy and therapeutic potential
Yutong Jing,
No information about this author
Xueting Liu,
No information about this author
Yajing Zhu
No information about this author
et al.
Nanoscale,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
This
review
explores
the
synergistic
potential
of
MOF-based
MNs
and
details
strategies
for
integrating
MOFs
various
guest
molecules
within
into
to
enhance
transdermal
therapeutic
applications.
Language: Английский
Multifunctional Hydrogel Integrated Hemangioma Stem Cell‐Derived Nanovesicle‐Loaded Metal‐Polyphenol Network Promotes Diabetic Flap Survival
Advanced Healthcare Materials,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 19, 2025
Abstract
Diabetes‐associated
skin
defects
represent
a
significant
global
health
challenge.
While
flap
grafts
have
been
preferred
treatment
for
soft‐tissue
injuries
in
diabetic
patients,
their
survival
is
often
compromised
by
impaired
vascularization,
infection,
and
the
adverse
pathological
microenvironment.
To
address
these
limitations,
hybrid
photo‐crosslinkable
hydrogel
(HPC)
integrated
hemangioma
stem
cell‐derived
nanovesicle
(HemV)‐loaded
dual‐metal‐polyphenol
network
(dMPN)
(HemV@dMPN/HPC)
developed.
HemVs,
derived
from
highly
vascularized
infantile
tissues,
play
key
role
promoting
cell
proliferation
angiogenesis.
The
dMPN
facilitates
gradual
release
of
copper
(Cu
2+
)
magnesium
ions
(Mg
),
stimulating
angiogenesis
mitigating
inflammation.
HPC
further
sustains
ion
while
preserving
therapeutic
efficacy
HemVs.
Moreover,
both
Cu
act
to
confer
antibacterial
properties,
accelerating
wound
healing.
This
multifunctional
HemV@dMPN/HPC
platform
offers
promising
strategy
treating
large
can
potentially
improve
graft
survival.
Language: Английский
Investigating the Functionality of a Cobalt Metal‒Organic Framework for Dye Adsorption, Antimicrobial and Cytotoxicity Activity
Chandandeep Kaur Behl,
No information about this author
Archana Thakur
No information about this author
Journal of Inorganic and Organometallic Polymers and Materials,
Journal Year:
2025,
Volume and Issue:
unknown
Published: May 3, 2025
Language: Английский
Microneedle-aided nanotherapeutics delivery and nanosensor intervention in advanced tissue regeneration
Churong Xu,
No information about this author
Fei Wu,
No information about this author
Zhouyi Duan
No information about this author
et al.
Journal of Nanobiotechnology,
Journal Year:
2025,
Volume and Issue:
23(1)
Published: May 3, 2025
Language: Английский
Glutathione-Responsive Nanoplatforms Based on Coordination between Fe3+ and Apigenin for Synergistic Chemo/Chemodynamic Therapy
Zhi-Hang He,
No information about this author
Hanxiao Tang,
No information about this author
Yanna Pan
No information about this author
et al.
ACS Applied Nano Materials,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Dec. 10, 2024
The
oxygen
consumption
during
chemodynamic
therapy
(CDT)
can
lead
to
severe
cellular
hypoxia,
resulting
in
an
increase
the
hypoxia
inducible
factor-1α
(HIF-1α)
level,
which
hinders
effectiveness
of
CDT
and
induces
tumor
metastasis.
Here,
we
propose
a
strategy
synergistic
between
HIF-1α
inhibitor
avoid
limitations
reduce
risk
Herein,
based
on
coordination
Fe3+
apigenin
(API,
inhibitor),
constructed
hyaluronic
acid
(HA)-modified
API-Fe
nanoparticles
(AF@HA
NPs)
for
synergetic
chemotherapy
glutathione
(GSH)-activated
self-enhancing
CDT.
AF@HA
NPs
have
high
drug
loading
capacity,
stability,
biocompatibility.
Furthermore,
overexpressed
GSH
cancer
cells
Fe2+,
weakened
API
Fe,
promoted
release
chemotherapy.
Fe2+
could
react
with
endogenous
H2O2
generate
hydroxyl
groups
In
addition,
released
inhibit
expression
sensitivity
reactive
species
(ROS),
thereby
achieving
effect
results
vitro
vivo
experiments
indicated
that
effectively
growth
suppress
lung
metastasis
cells.
Language: Английский