Journal of Medical Microbiology,
Год журнала:
2025,
Номер
74(3)
Опубликована: Март 12, 2025
Introduction.
Eye
diseases
are
widespread
all
over
the
world
and,
if
left
untreated,
can
lead
to
blindness.
Hypothesis.
The
use
of
0.05%
cyclosporine
A
(CsA)
solution
for
treatment
dry
eye
causes
a
decrease
in
discomfort
and
pain
improves
objective
measures
such
as
tear
film
breakdown
time,
Schirmer
test
results
Oxford
scale
scores
due
its
anti-inflammatory
immunomodulatory
properties
that
contribute
improved
stability
production.
Aim.
This
study
aimed
investigate
impact
CsA
on
progression
ocular
surface
diseases.
Methodology.
An
experiment
was
conducted
basis
FOCUS
ophthalmology
centre,
Kazakhstan.
group
100
individuals
diagnosed
with
mild
severe
illness
were
administered
drops
part
protocol.
Results.
positive
effect
is
explained
by
effects
CsA.
showed
disease
led
pain,
well
an
improvement
measures,
including
scores.
visual
analogue
significant
reduction
symptoms,
from
6.8
points
at
baseline
3.7
day
60.
In
total,
20%
patients
reported
moderate
side
effects,
during
instillation
redness
surface.
Conclusion.
It
concluded
these
reduced
patient
condition
enhanced
indicators
scale,
breakup
corneal
conjunctival
staining.
differs
previous
ones
it
focuses
efficacy
also
examines
spectrum
frequency
which
not
sufficiently
covered
studies.
Small Structures,
Год журнала:
2024,
Номер
unknown
Опубликована: Ноя. 11, 2024
Topical
instillation
of
cyclosporin
A
(an
anti‐inflammatory
drug)
is
clinically
recommended
as
the
first‐line
treatment
for
dry
eye
disease.
Nevertheless,
it
suffers
from
poor
ocular
drug
retention
and
cannot
comprehensively
address
corneal
dryness‐related
symptoms
such
oxidative
stress,
angiogenesis,
neurodegeneration.
Inspired
by
nanotechnology‐mediated
material/biological
interactions,
in
this
study,
a
highly
adhesive
metallic
nanoplatform
with
an
urchin‐like
structure
designed
topical
quercetin
administration
therapy.
The
gold
nanostructures
most
pronounced
branch
lengths
exhibit
strongest
cytoadhesion
bioadhesion
capabilities,
which
significantly
enhance
nano‐urchins
150‐fold
at
7
days
post‐instillation
compared
smooth‐surfaced
nanoparticles.
In
rabbit
model
dryness,
single‐dose
nanoformulation
(high
quercetin‐functionalized
(NU‐Q(H)))
demonstrated
remarkable
efficacy
stimulating
tear
production
(30‐fold
improvement),
inhibiting
inflammatory
IL‐6
expression
(49‐fold
attenuating
pathological
angiogenesis
(32‐fold
promoting
nerve
regeneration
(18‐fold
improvement)
to
high
nanoparticles
(NP‐Q(H)).
particular,
integrity
surface,
film,
meibomian
gland
restored
levels
similar
those
healthy
rabbits.
These
findings
suggest
promising
potential
nanobiomaterial
structural
engineering
developing
nanomedicines
long‐acting
eye‐drop
formulations
disease
applications.
International Journal of Nanomedicine,
Год журнала:
2023,
Номер
Volume 18, С. 2447 - 2463
Опубликована: Май 1, 2023
Introduction:
Benzalkonium
chloride
(BAC)
is
widely
employed
as
a
preservative
in
eye
drops,
which
will
cause
the
death
of
corneal
epithelial
cells
due
to
ROS
production,
DNA
strand
breakage,
and
mitochondrial
dysfunction,
resulting
dry
disease
(DED)-like
changes
ocular
surface
tissues.
In
this
study,
Melatonin
(MT)
liposomes
(TAT-MT-LIPs)
designed
by
loading
MT
into
TAT-modified
have
been
developed,
characterized,
used
for
inhibiting
BAC-induced
DED
(BAC-DED).
Methods:
The
TAT
was
chemically
grafted
onto
Mal-PEG
2000
-DSPE
Michael's
addition
between
sulfhydryl
group
maleimide
-DSPE.
TAT-MT-LIPs
were
prepared
using
film
dispersion
followed
extrusion
method
topically
treated
rats
once
day.
BAC-DED
induced
topical
administration
with
0.2%
BAC
twice
daily.
Defects,
edema,
inflammation
corneas,
well
IOP,
examined.
Histologic
analyses
corneas
performed
assess
change
oxidation
NLRP3/Caspase-1/GSDMD
signaling
transduction.
Results:
After
administration,
significantly
alleviated
DED-clinical
symptoms
experimental
animals
tissue
preventing
loss
epithelium
conjunctival
goblet
cells.
Our
data
suggested
continuous
exposure
mediated
pyroptosis,
not
reported
before.
caused
substantial
mt-DNA
oxidation,
promoted
transduction
consequent
pyroptosis.
could
efficiently
suppress
pyroptosis
subsequent
signal
transmission.
Conclusion:
involved
development
BAC-DED.
present
study
provided
new
insights
adverse
effects
BAC,
can
serve
target
protecting
when
applying
drops.
developed
inhibit
give
great
potential
be
treatment.
Keywords:
melatonin
liposome,
disease,
benzalkonium
chloride,
axis
Vascular
diseases
(VDs)
pose
the
leading
threat
worldwide
due
to
high
morbidity
and
mortality.
The
detection
of
VDs
is
commonly
dependent
on
individual
signs,
which
limits
accuracy
timeliness
therapies,
especially
for
asymptomatic
patients
in
clinical
management.
Therefore,
more
effective
early
diagnosis
lesion-targeted
treatments
remain
a
pressing
need.
Metal-organic
frameworks
(MOFs)
are
porous
crystalline
materials
formed
by
coordination
inorganic
metal
ions
organic
ligands.
Due
their
unique
specific
surface
area,
structural
flexibility,
functional
versatility,
MOFs
recognized
as
highly
promising
candidates
diagnostic
therapeutic
applications
field
VDs.
In
this
review,
potential
act
biosensors,
contrast
agents,
artificial
nanozymes,
multifunctional
agents
treatment
from
perspective,
highlighting
integration
between
methods
with
generalized.
At
same
time,
multidisciplinary
cooperation
chemistry,
physics,
biology,
medicine
promote
substantial
commercial
transformation
tackling
called
for.
Journal of Nanobiotechnology,
Год журнала:
2024,
Номер
22(1)
Опубликована: Май 9, 2024
Abstract
Background
Dry
Eye
Disease
(DED)
is
a
prevalent
multifactorial
ocular
disease
characterized
by
vicious
cycle
of
inflammation,
oxidative
stress,
and
mitochondrial
dysfunction
on
the
surface,
all
which
lead
to
DED
deterioration
impair
patients’
quality
life
social
functioning.
Currently,
anti-inflammatory
drugs
have
shown
promising
efficacy
in
treating
DED;
however,
such
are
associated
with
side
effects.
The
bioavailability
less
than
5%
owing
factors
as
rapid
tear
turnover
presence
corneal
barrier.
This
calls
for
investigations
overcome
these
challenges
drug
administration.
Results
A
novel
hierarchical
action
liposome
nanosystem
(PHP-DPS@INS)
was
developed
this
study.
In
terms
delivery,
PHP-DPS@INS
nanoparticles
(NPs)
overcame
surface
transport
barrier
adopting
strategy
“ocular
electrostatic
adhesion-lysosomal
site-directed
escape”.
therapy,
achieved
targeting
antioxidant
effects
through
SS-31
peptide,
exerted
an
effect
loading
insulin
reduce
inflammatory
metabolites.
Ultimately,
synergistic
“anti-inflammation-antioxidation-mitochondrial
function
restoration”
breaks
DED.
demonstrated
remarkable
cellular
uptake,
lysosomal
escape,
vitro.
Targeted
metabolomics
analysis
revealed
that
effectively
normalized
elevated
level
proinflammatory
metabolite
fumarate
vitro
hypertonic
model
DED,
thereby
reducing
levels
key
(IL-1β,
IL-6,
TNF-α).
Additionally,
strongly
inhibited
reactive
oxygen
species
(ROS)
production
facilitated
structural
repair.
vivo,
treatment
significantly
enhanced
adhesion
duration
permeability
mice,
improving
bioavailability.
It
also
restored
secretion,
suppressed
damage,
reduced
inflammation
mice.
Moreover,
it
favorable
safety
profiles
both
vivo.
Conclusion
summary,
study
successfully
comprehensive
management
transmission
disrupted
dry
eye
pathogenesis.
pioneered
regulation
metabolites
conditions,
presenting
safe,
efficient,
innovative
therapeutic
other
diseases.
Nanomaterials,
Год журнала:
2024,
Номер
14(8), С. 669 - 669
Опубликована: Апрель 12, 2024
Dry
eye
disease
(DED)
incidence
is
continuously
growing,
positioning
it
to
become
an
emergent
health
issue
over
the
next
few
years.
Several
topical
treatments
are
commonly
used
treat
DED;
however,
reports
indicate
that
only
a
minor
proportion
of
drug
bioavailability
achieved
by
majority
drops
available
on
market.
In
this
context,
enhancing
ability
overcome
ocular
barriers
and
prolonging
its
residence
time
surface
represent
new
challenge
in
field
carrier
systems.
Therefore,
research
has
focused
development
multi-functional
nanosystems,
such
as
nanoemulsions,
liposomes,
dendrimers,
hydrogels,
other
nanosized
carriers.
These
systems
designed
improve
efficacy
and,
at
same
time,
require
fewer
daily
administrations,
with
potentially
reduced
side
effects.
This
review
summarizes
different
nanotechnologies
developed,
their
role
DED,
nanotechnology-based
eyedrops
currently
approved
for
DED
treatment.
Regenerative Biomaterials,
Год журнала:
2022,
Номер
9
Опубликована: Янв. 1, 2022
Abstract
Dry
eye
disease
(DED)
is
the
most
common
in
ophthalmic
consultation
except
for
refractive
errors.
Therefore,
an
exploration
of
valid
and
alternative
therapeutic
interventions
essential
to
feed
urgent
medical
need.
It
has
been
demonstrated
that
oxidative
stress
causes
multiple
adverse
effects
pathogenesis
DED,
thence
alleviating
effective
strategy
DED
treatment.
Herein,
we
developed
a
cerium
oxide
nanozyme
combined
with
branched
poly(ethylene
imine)-graft-poly(ethylene
glycol)
(bPEI-g-PEG).
Owing
its
stable
hydrophilic
chains
on
surface
reducing
cytotoxicity
loads
amines
groups
be
ions
through
coordination
bonds,
modified
nanozymes
(referred
as
CNP@bPEI-g-PEG)
are
water
soluble
highly
biocompatible.
Meanwhile,
due
excellent
antioxidant
activity,
CNP@bPEI-g-PEG
can
mimic
activity
superoxide
dismutase
catalase
scavenge
intracellular
reactive
oxygen
species
(ROS).
Experimental
studies
firmly
were
auto-regenerative
more
active
scavenging
excessive
ROS
by
cerium-element
valence
state
recycling,
recovering
morphology
corneal,
conjunctival
epithelium
number
goblet
cells.
The
advanced
combination
may
offer
superior
deal
treatment
DED.