Journal of Materials Chemistry B,
Journal Year:
2024,
Volume and Issue:
13(3), P. 821 - 843
Published: Nov. 27, 2024
Nebulized
inhalation
is
a
non-invasive
drug
delivery
method
with
fast
onset,
low
dosage,
and
fewer
side
effects.
This
review
covers
its
principles,
devices,
clinical
applications,
future
trends
in
respiratory
systemic
diseases.
ACS Nano,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 21, 2025
Nucleic
acid
therapeutics
represent
a
highly
promising
treatment
approach
in
modern
medicine,
treating
diseases
at
the
genetic
level.
However,
these
face
numerous
challenges
practical
applications,
particularly
regarding
their
stability,
effectiveness,
cellular
uptake
efficiency,
and
limitations
delivering
them
specifically
to
target
tissues.
To
overcome
obstacles,
researchers
have
developed
various
innovative
delivery
systems,
including
viral
vectors,
lipid
nanoparticles,
polymer
inorganic
protein
carriers,
exosomes,
antibody
oligonucleotide
conjugates,
DNA
nanostructure-based
systems.
These
systems
enhance
therapeutic
efficacy
of
nucleic
drugs
by
improving
targeting
specificity,
half-life
vivo.
In
this
review,
we
systematically
discuss
different
types
drugs,
analyze
major
barriers
encountered
delivery,
summarize
current
research
progress
emerging
We
also
highlight
latest
advancements
application
for
diseases,
infectious
cancer,
brain
wound
healing.
This
review
aims
provide
comprehensive
overview
drug
systems'
status
future
directions
integrating
nanotechnology,
biomaterials
science,
gene
editing
technologies,
emphasizing
transformative
potential
precision
medicine.
Biomacromolecules,
Journal Year:
2024,
Volume and Issue:
25(9), P. 5417 - 5436
Published: Aug. 28, 2024
There
has
been
growing
interest
in
polymeric
systems
that
break
down
or
undergo
property
changes
response
to
stimuli.
Such
polymers
can
play
important
roles
biological
systems,
where
they
be
used
control
the
release
of
therapeutics,
modulate
imaging
signals,
actuate
movement,
direct
growth
cells.
In
this
Perspective,
after
discussing
most
stimuli
relevant
applications,
we
will
present
a
selection
recent
exciting
developments.
The
importance
stimuli-responsive
polysaccharides
discussed,
followed
by
variety
for
delivery
small
molecule
drugs
and
nucleic
acids.
Switchable
emerging
area
therapeutic
measurement
theranostics
described.
Then,
diverse
functions
achieved
using
hydrogels
cross-linked
covalently,
as
well
various
dynamic
approaches
presented.
Finally,
discuss
some
challenges
future
perspectives
field.
Materials Futures,
Journal Year:
2024,
Volume and Issue:
3(3), P. 032501 - 032501
Published: July 4, 2024
Abstract
With
the
advent
of
internet
things
and
artificial
intelligence,
flexible
portable
pressure
sensors
have
shown
great
application
potential
in
human-computer
interaction,
personalized
medicine
other
fields.
By
comparison
with
traditional
inorganic
materials,
polymeric
materials
conformable
to
human
body
are
more
suitable
for
fabrication
wearable
sensors.
Given
consumption
a
huge
amount
electronics
near
future,
it
is
necessary
turn
their
attention
biodegradable
polymers
toward
development
requirement
green
sustainable
electronics.
In
this
paper,
structure
properties
silk
fibroin
(SF)
introduced,
source
research
progress
piezoelectric
SF
systematically
discussed.
addition,
paper
summarizes
advance
studies
on
SF-based
capacitive,
resistive,
triboelectric,
reported
recent
years,
focuses
methods
applications.
Finally,
also
puts
forward
future
trend
high-efficiency
corresponding
It
offers
new
insights
into
design
bioelectronics
vitro
vivo
sensing
International Journal of Oncology,
Journal Year:
2024,
Volume and Issue:
64(4)
Published: Feb. 21, 2024
Lung
cancer
represents
a
marked
global
public
health
concern.
Despite
existing
treatment
modalities,
the
average
5‑year
survival
rate
for
patients
with
lung
is
only
~20%.
As
there
are
numerous
adverse
effects
of
systemic
administration
routes,
an
urgent
need
to
develop
novel
therapeutic
strategy
tailored
specifically
cancer.
Non‑invasive
aerosol
inhalation,
as
route
drug
administration,
holds
unique
advantages
in
context
respiratory
diseases.
Nanoscale
materials
have
extensive
applications
field
biomedical
research
recent
years.
The
present
study
provides
comprehensive
review
classification,
summarized
according
clinical
modalities
and
challenges
associated
inhalable
micron/nanoparticle
delivery
systems
(DDSs)
Achieving
localized
preclinical
models
through
inhalation
deemed
feasible.
However,
further
required
substantiate
efficacy
long‑term
safety
DDSs
management
Cell Proliferation,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 11, 2025
ABSTRACT
Membraneless
organelles
(MLOs)
are
a
type
of
subcellular
compartment
structure
discovered
in
eukaryotes
recent
years.
They
mainly
formed
through
the
liquid–liquid
phase
separation
(LLPS)
and
aggregation
macromolecular
substances
such
as
proteins
or
nucleic
acids
cells.
When
cells
stimulated,
they
initiate
series
stress
responses
including
gene
transcription,
RNA
metabolism,
translation,
protein
modification
signal
transduction
to
maintain
homeostasis.
The
dysregulation
these
cellular
processes
is
key
event
occurrence
development
cancer.
This
article
provides
an
overview
function
membraneless
organelles,
well
mechanisms
separation,
summarise
latest
research
progress
on
tumours.
It
focuses
role
molecular
mechanism
LLPS
tumours,
with
aim
providing
new
theoretical
references
for
developing
drug
action
targets
innovative
treatment
strategies.
Enhanced
bone
healing
within
1
week
after
post-titanium
(Ti)
dental
implant
surgery
especially
contributes
to
the
subsequent
long-term
osseointegration,
and
commonly
used
drug-loaded
TiO2
nanotubes
(TNTs)
can
promote
osteogenesis
yet
still
face
challenge
of
burst
drug
release
that
makes
it
difficult
maintain
effective
concentrations
good
osseointegration.
Here,
we
prepared
a
double
loading/release
system
silk
fibroin/mesoporous
silica
nanoparticles
(SF/MSN)
nanocomposite
coating
modified
TNTs
(TAMA)
with
AZD2858
(Wnt/β-catenin
pathway
agonist
for
promoting
osteogenesis)
as
therapeutic
drug,
realizing
stable
better
osteogenesis.
The
increased
β-sheet
content
SF
reduced
degradation
rate
SF/MSN
coating,
thus
avoiding
release.
adsorption
MSN
maintained
concentration
more
than
was
critical
early
healing.
Under
protection
TAMA
showed
well-organized
spatial
AZD2858,
well
enabling
osteogenic
differentiation
mineralization
at
cellular
level
up
21
days.
Animal
experiments
further
demonstrated
slow
in
effectively
activated
Wnt/β-catenin
pathway,
rapid
stage
implantation
finally
achieving
best
osseointegration
efficacy.
Thus,
this
study
proposed
an
efficient
strategy
developing
high-performance
implants
via
construction
biodegradable
coating.