Silk fibroin for cosmetic dermatology
Songjie Li,
No information about this author
Han Chen,
No information about this author
Xin Dan
No information about this author
et al.
Chemical Engineering Journal,
Journal Year:
2025,
Volume and Issue:
unknown, P. 159986 - 159986
Published: Jan. 1, 2025
A sequential drug delivery system based on silk fibroin scaffold for effective cartilage repair
Menglin Xiao,
No information about this author
Liangyan Sun,
No information about this author
Kang Wu
No information about this author
et al.
Bioactive Materials,
Journal Year:
2025,
Volume and Issue:
49, P. 255 - 270
Published: March 12, 2025
Language: Английский
Adhesive silk fibroin/magnesium composite films and their application for removable wound dressing
Qiaolin Chen,
No information about this author
Kang Wu,
No information about this author
Jinrong Yao
No information about this author
et al.
Biomaterials Science,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Nov. 12, 2024
Silk
fibroin/magnesium
composite
films
with
excellent
adhesion,
transparency,
mechanical
flexibility,
considerable
anti-inflammatory
and
antioxidative
properties
are
developed
for
wound
dressing,
which
significantly
accelerate
healing
in
mice.
Language: Английский
Exosome-Integrated Hydrogels for Bone Tissue Engineering
Hee Sook Hwang,
No information about this author
Chung‐Sung Lee
No information about this author
Gels,
Journal Year:
2024,
Volume and Issue:
10(12), P. 762 - 762
Published: Nov. 23, 2024
Exosome-integrated
hydrogels
represent
a
promising
frontier
in
bone
tissue
engineering,
leveraging
the
unique
biological
properties
of
exosomes
to
enhance
regenerative
capabilities
hydrogels.
Exosomes,
as
naturally
occurring
extracellular
vesicles,
carry
diverse
array
bioactive
molecules
that
play
critical
roles
intercellular
communication
and
regeneration.
When
combined
with
hydrogels,
these
can
be
spatiotemporally
delivered
target
sites,
offering
controlled
sustained
release
therapeutic
agents.
This
review
aims
provide
comprehensive
overview
recent
advancements
development,
application
exosome-integrated
for
highlighting
their
potential
overcome
current
challenges
Furthermore,
explores
mechanistic
pathways
by
which
embedded
within
facilitate
repair,
encompassing
regulation
inflammatory
pathways,
enhancement
angiogenic
processes,
induction
osteogenic
differentiation.
Finally,
addresses
existing
challenges,
such
scalability,
reproducibility,
regulatory
considerations,
while
also
suggesting
future
directions
research
this
rapidly
evolving
field.
Thus,
we
hope
contributes
advancing
development
next-generation
biomaterials
synergistically
integrate
exosome
hydrogel
technologies,
thereby
enhancing
efficacy
Language: Английский