Journal of Materials Chemistry B,
Journal Year:
2023,
Volume and Issue:
11(38), P. 9246 - 9259
Published: Jan. 1, 2023
π–π
stacking
strategies
can
enhance
the
stability
performance
of
delivery
platforms
but
are
often
led
to
incomplete
drug
release
performance,
even
with
help
crosslinking
strategies.
A
collaborated
strategy
is
proposed
improve
release.
ACS Applied Nano Materials,
Journal Year:
2023,
Volume and Issue:
6(15), P. 13766 - 13791
Published: July 24, 2023
Over
the
past
few
decades,
disposal
of
various
industrial
pollutants
such
as
organic
dyes,
heavy
metal
ions,
pesticides,
and
phenolic
compounds
has
led
to
deterioration
quality
freshwater;
even
with
70%
water
coverage
over
earth,
there
is
meager
access
freshwater
sources.
Against
drawbacks
conventional
purification
methods
sludge
production
generation
toxic
byproducts,
adsorption
process
regarded
an
efficient
economical
strategy
for
treatment
wastewater.
Among
available
adsorbents,
cyclodextrin-based
nanosponges
have
evolved
prominent
adsorbents
treating
wastewater
are
considered
a
cost-effective
option
minimal
energy
time
requirements.
Owing
their
porous
nature,
cone-like
structure,
cross-linked
three-dimensional
network,
special
architecture
hydrophilic
hydrophobic
moieties
wherein
core
can
form
inclusion
complexes
via
host–guest
interactions
while
edges
interact
through
hydrogen-bonding
electrostatic
interactions,
they
effective
removal
variety
metals,
phenols,
pesticides.
Additionally,
number
active
sites
in
these
could
be
enhanced
by
hybridizing
other
or
functionalization
magnetic
nanoparticles.
This
review
deliberates
underlines
limitations
using
adsorption.
The
strategies
synthesize
β-cyclodextrin-based
deploying
cross-linkers
further
modifications
been
discussed
detail.
Finally,
application
assorted
from
highlighting
mechanism
certain
cases
cogitated.
Frontiers in Bioengineering and Biotechnology,
Journal Year:
2024,
Volume and Issue:
12
Published: March 6, 2024
Nanotechnology
is
revolutionising
different
areas
from
manufacturing
to
therapeutics
in
the
health
field.
Carbon
nanotubes
(CNTs),
a
promising
drug
candidate
nanomedicine,
have
attracted
attention
due
their
excellent
and
unique
mechanical,
electronic,
physicochemical
properties.
This
emerging
nanomaterial
has
wide
range
of
scientific
interest
last
decade.
many
potential
applications
cancer
therapy,
such
as
imaging,
delivery,
combination
therapy.
can
be
used
carriers
for
delivery
systems
by
carrying
anticancer
drugs
enabling
targeted
release
improve
therapeutic
efficacy
reduce
adverse
effects
on
healthy
tissues.
In
addition,
carbon
combined
with
other
approaches,
photothermal
photodynamic
therapies,
work
synergistically
destroy
cells.
great
nanomaterials
field
offering
new
opportunities
properties
future
treatments.
this
paper,
main
focus
application
diagnostics,
toxicity
evaluation
at
biological
level
ensure
safety
real-life
clinical
nanotubes.
Heliyon,
Journal Year:
2024,
Volume and Issue:
10(16), P. e36057 - e36057
Published: Aug. 1, 2024
Tumor
necrosis
factor-related
apoptosis-inducing
ligand
(TRAIL),
also
known
as
APO2L,
has
emerged
a
highly
potential
anticancer
agent
because
of
its
capacity
to
effectively
trigger
apoptosis
in
tumor
cells
by
specifically
binding
either
death
receptors
(DR4
or
DR5)
while
having
no
adverse
effects
on
normal
cells.
Nevertheless,
practical
use
been
hindered
inefficient
pharmacokinetics
characteristics,
the
challenges
involved
administration
and
delivery
targeted
cells,
resistance
exhibited
most
cancer
towards
TRAIL.
Gene
therapy,
promising
approach
would
be
able
potentially
circumvent
TRAIL-based
therapy
mainly
through
localized
TRAIL
expression
generating
bystander
impact.
Among
different
strategies,
using
nanoparticles
ChemistrySelect,
Journal Year:
2025,
Volume and Issue:
10(14)
Published: April 1, 2025
Abstract
Protein‐based
hydrogels
have
been
widely
used
in
the
biomedical
field
since
their
good
biocompatibility
and
adjustable
physical
properties,
which
are
also
similar
to
natural
extracellular
matrix.
However,
fragile
mechanical
properties
single
function
of
protein
limited
application.
Usually,
chemical
modification
proteins
combination
with
other
biological
materials
strategies
improve
performance
hydrogels.
This
review
first
focused
on
method
then
introduced
kinds
protein‐based
detail.
In
addition,
we
summarized
applications
drug
delivery,
wound
dressing,
tissue
engineering,
3D
printing,
biosensors.
Finally,
highlighted
challenges
future
prospects
hydrogels,
may
provide
a
reference
for
design
novel
multifunctional