Nanomaterials,
Год журнала:
2023,
Номер
14(1), С. 67 - 67
Опубликована: Дек. 26, 2023
Liver-targeting
nanoparticles
have
emerged
as
a
promising
platform
for
the
induction
of
immune
tolerance
by
taking
advantage
liver’s
unique
tolerogenic
properties
and
nanoparticles’
physicochemical
flexibility.
Such
an
approach
provides
versatile
solution
to
treatment
diversity
immunologic
diseases.
In
this
review,
we
begin
assessing
design
parameters
integral
cell-specific
targeting
nanoplatforms
engineered
target
four
critical
immunogenic
hepatic
cells,
including
liver
sinusoidal
epithelial
cells
(LSECs),
Kupffer
(KCs),
stellate
(HSCs),
hepatocytes.
We
also
include
overview
multiple
therapeutic
strategies
in
which
are
being
studied
treat
many
allergies
autoimmune
disorders.
Finally,
explore
challenges
using
field
while
highlighting
future
avenues
expand
utility
liver-targeting
processes.
Nature Communications,
Год журнала:
2024,
Номер
15(1)
Опубликована: Ноя. 7, 2024
The
protein
corona
formed
on
nanoparticles
(NPs)
has
potential
as
a
valuable
diagnostic
tool
for
improving
plasma
proteome
coverage.
Here,
we
show
that
spiking
small
molecules,
including
metabolites,
lipids,
vitamins,
and
nutrients
into
can
induce
diverse
patterns
otherwise
identical
NPs,
significantly
enhancing
the
depth
of
profiling.
coronas
polystyrene
NPs
when
exposed
to
treated
with
an
array
molecules
allows
detection
1793
proteins
marking
8.25-fold
increase
in
number
quantified
compared
alone
(218
proteins)
2.63-fold
relative
untreated
(681
proteins).
Furthermore,
discovered
adding
1000
µg/ml
phosphatidylcholine
could
singularly
enable
897
proteins.
At
this
specific
concentration,
selectively
depletes
four
most
abundant
proteins,
albumin,
thus
reducing
dynamic
range
enabling
lower
abundance.
Employing
optimized
data-independent
acquisition
approach,
inclusion
leads
1436
single
sample.
Our
molecular
dynamics
results
reveal
interacts
albumin
via
hydrophobic
interactions,
H-bonds,
water
bridges.
addition
also
enables
337
additional
proteoforms
using
top-down
proteomics
approach.
Given
critical
role
biomarker
discovery
disease
monitoring,
anticipate
widespread
adoption
methodology
identification
clinical
translation
biomarkers.
International Journal of Pharmaceutics,
Год журнала:
2024,
Номер
654, С. 123987 - 123987
Опубликована: Март 11, 2024
It
is
well
known
that
protein
corona
affects
the
"biological
identity"
of
nanoparticles
(NPs),
which
has
been
seen
as
both
a
challenge
and
an
opportunity.
Approaches
have
moved
from
avoiding
adsorption
to
trying
direct
it,
taking
advantage
formation
favorably
modify
pharmacokinetic
parameters
NPs.
Although
promising,
results
obtained
with
engineered
NPs
still
need
be
completely
understood.
While
much
effort
put
into
understanding
how
surface
nanomaterials
absorption,
less
about
proteins
can
affect
due
their
specific
physicochemical
properties.
This
review
addresses
this
knowledge
gap,
examining
key
factors
influencing
formation,
highlighting
current
challenges
in
studying
protein–protein
interactions,
discussing
future
perspectives
field.
Pharmaceutics,
Год журнала:
2024,
Номер
16(8), С. 1037 - 1037
Опубликована: Авг. 3, 2024
Cardiovascular
diseases
(CVDs)
are
classed
as
of
aging,
which
associated
with
an
increased
prevalence
atherosclerotic
lesion
formation
caused
by
such
and
is
considered
one
the
leading
causes
death
globally,
representing
a
severe
health
crisis
affecting
heart
blood
vessels.
Atherosclerosis
described
chronic
condition
that
can
lead
to
myocardial
infarction,
ischemic
cardiomyopathy,
stroke,
peripheral
arterial
disease
date,
most
pharmacological
therapies
mainly
aim
control
risk
factors
in
patients
cardiovascular
disease.
Advances
transformative
imaging
diagnostics
agents
could
shape
clinical
applications
approaches,
including
nanomedicine,
biomaterials,
immunotherapy,
cell
therapy,
gene
emerging
likely
significantly
impact
CVD
management
coming
decade.
This
review
summarizes
current
anti-atherosclerotic
therapies’
major
milestones,
strengths,
limitations.
It
provides
overview
recent
discoveries
technologies
immune
therapeutics
revolutionize
practice
steering
it
toward
precision
medicine.
CVD-related
trials
promising
pre-clinical
strategies
would
discussed.
Here,
we
these
advances,
highlighting
key
opportunities
rapidly
field
Journal of Biomaterials Science Polymer Edition,
Год журнала:
2025,
Номер
unknown, С. 1 - 27
Опубликована: Янв. 9, 2025
Molecular
Dynamics
(MD)
simulations
are
now
widely
utilized
in
pharmaceutical
nanotechnology
to
gain
deeper
understanding
of
nanoscale
processes
imperative
drug
design.
This
review
has
also
detailed
how
MD
simulation
can
be
employed
the
study
drug-nanocarrier
interactions,
controlling
release
chemical
compounds
from
delivery
systems
and
increasing
solubility
bioavailability
nanocarriers.
Furthermore,
contributes
examining
systems,
measuring
toxic
effects,
determining
biocompatibility
nanomedical
systems.
With
incorporation
artificial
intelligence
use
hybrid
gone
a
step
ahead
model
other
niches
biology
that
make
tremendous
opening
develop
highly
selective
nanomedications.
Nevertheless,
with
well-known
issues
such
as
computational
constraints
discrepancy
between
silico
experiment
results,
remains
work
progress,
considerable
promise
for
replacing
or
supplementing
existing
approaches
development
precision
medicine
nanomedicine,
continued
progression
healthcare
hopeful.
Molecular Pharmaceutics,
Год журнала:
2024,
Номер
21(2), С. 718 - 728
Опубликована: Янв. 12, 2024
RNA
therapeutics
has
advanced
into
the
third
milestone
in
pharmaceutical
drug
development,
following
chemical
and
protein
therapeutics.
itself
can
serve
as
therapeutics,
carriers,
regulators,
or
substrates
development.
Due
to
RNA's
motile,
dynamic,
deformable
properties,
nanoparticles
have
demonstrated
spontaneous
targeting
accumulation
cancer
vasculature
fast
excretion
through
kidney
glomerulus
urine
prevent
possible
interactions
with
healthy
organs.
Furthermore,
negatively
charged
phosphate
backbone
of
results
general
repulsion
from
lipid
cell
membranes
for
further
avoidance
vital
Thus,
spontaneously
enrich
tumor
efficiently
enter
cells
via
specific
targeting,
while
those
not
entering
tissue
will
clear
body
quickly.
These
favorable
parameters
led
expectation
that
low
little
toxicity.
been
well
characterized
their
anticancer
efficacy;
however,
detail
on
nanoparticle
pathology
safety
is
known.
Here,
we
report
Chem & Bio Engineering,
Год журнала:
2024,
Номер
1(9), С. 757 - 772
Опубликована: Окт. 3, 2024
Nanoparticles
entering
biological
systems
or
fluids
inevitably
adsorb
biomolecules,
such
as
protein,
on
their
surfaces,
forming
a
protein
corona.
Ensuing,
the
corona
endows
nanoparticles
with
new
identity
and
impacts
interaction
between
systems.
Hence,
development
of
reliable
techniques
for
isolation
analysis
is
key
understanding
behaviors
nanoparticles.
First,
this
review
systematically
outlines
approach
isolating
corona,
including
centrifugation,
magnetic
separation,
size
exclusion
chromatography,
flow-field-flow
fractionation,
other
emerging
methods.
Next,
we
qualitative
quantitative
characterization
methods
Finally,
underscore
necessary
steps
to
advance
efficiency
fidelity
nanoparticle
surfaces.
We
anticipate
that
these
insights
into
methodologies
will
profoundly
influence
technologies
aimed
at
elucidating
bionano
interactions
role
in
various
biomedical
applications.