Lipid-based nanoparticles: innovations in ocular drug delivery
Mirza Salman Baig,
No information about this author
Shweta Kulkarni Karade,
No information about this author
Anas Ahmad
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et al.
Frontiers in Molecular Biosciences,
Journal Year:
2024,
Volume and Issue:
11
Published: Sept. 17, 2024
Ocular
drug
delivery
presents
significant
challenges
due
to
intricate
anatomy
and
the
various
barriers
(corneal,
tear,
conjunctival,
blood-aqueous,
blood-retinal,
degradative
enzymes)
within
eye.
Lipid-based
nanoparticles
(LNPs)
have
emerged
as
promising
carriers
for
ocular
their
ability
enhance
solubility,
improve
bioavailability,
provide
sustained
release.
LNPs,
particularly
solid
lipid
(SLNs),
nanostructured
(NLCs),
cationic
(CNLCs),
solutions
enhancing
delivery.
This
review
provides
a
comprehensive
summary
of
nanoparticle-based
systems,
emphasizing
biocompatibility
efficiency
in
applications.
We
evaluated
research
articles
sourced
from
databases
such
Google
Scholar,
TandFonline,
SpringerLink,
ScienceDirect,
focusing
on
studies
published
between
2013
2023.
The
discusses
materials
methodologies
employed
preparation
SLNs,
NLCs,
CNLCs,
application
proficient
particular,
demonstrate
superior
effectiveness
attributed
electrostatic
bioadhesion
tissues,
However,
continued
efforts
are
essential
further
optimize
CNLC
formulations
validate
clinical
utility,
ensuring
advancements
technology
improved
patient
outcomes.
Language: Английский
Nanotechnology-Assisted mesenchymal stem cells treatment for improved cartilage regeneration: A review of current practices
Hongming Lin,
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Chao Zhou,
No information about this author
Qingping Li
No information about this author
et al.
Biochemical Pharmacology,
Journal Year:
2025,
Volume and Issue:
unknown, P. 116895 - 116895
Published: March 1, 2025
Language: Английский
Mesenchymal stem cell exosomes therapy for the treatment of traumatic brain injury: mechanism, progress, challenges and prospects
Ming-wei Liu,
No information about this author
Hua Li,
No information about this author
Gang Xiong
No information about this author
et al.
Journal of Translational Medicine,
Journal Year:
2025,
Volume and Issue:
23(1)
Published: April 11, 2025
Language: Английский
In situ Gel: A Promising Ocular Drug Delivery System
Javed Khan,
No information about this author
Aatif Khan,
No information about this author
Aman Khan
No information about this author
et al.
International Journal of Advancement in Life Sciences Research,
Journal Year:
2024,
Volume and Issue:
07(03), P. 65 - 77
Published: Jan. 1, 2024
The
eye
is
a
vital
organ,
faces
challenges
in
drug
delivery
with
traditional
ophthalmic
formulations
due
to
the
rapid
loss
of
medications
before
reaching
cornea.
This
review
explores
novel
systems
for
ocular
administration,
emphasizing
innovative
dosage
forms,
i.e.,
situ
gels.
system
aims
prolong
contact
time
eyes,
overcoming
bioavailability
issues
associated
conventional
methods.
article
further
delves
into
gelation
approaches,
highlighting
pH-triggered,
temperature-dependent,
and
ion-activated
systems.
It
use
excipients
like
polymers
solubilizing
agents
preparation
in-situ
frequently
used
their
applications
are
detailed.
Studies
on
incorporation
nanoparticles
this
gelling
delivery.
Methodologies
evaluating
gels,
including
pH
determination,
rheological
studies,
content
analysis,
vitro
gelation,
accelerated
stability
FTIR
presented.
advantages
&
gels
discussed,
along
its
limitations.
concludes
by
benefits
systems,
particularly
which
offer
controlled
sustained
release,
future
perspective
gel.
These
advancements
hold
promise
more
effective
therapeutic
outcomes
field
Language: Английский
Nanotechnology for Nasopharyngeal Cancer Therapy and Improving Drug Stability and Biodistribution
Advanced Materials Technologies,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Nov. 11, 2024
Abstract
Nasopharyngeal
cancer
(NPC)
is
a
challenging
malignancy
with
poor
prognosis
due
to
late
diagnosis
and
resistance
conventional
treatments.
Nanotechnology
offers
promising
solutions
address
these
limitations
by
enabling
targeted
drug
delivery,
enhancing
therapeutic
efficacy,
facilitating
multimodal
treatment
strategies.
By
leveraging
the
unique
properties
of
nanomaterials
nanocarrier
systems,
innovative
approaches
for
early
detection,
treatment,
therapy
can
be
developed,
paving
way
more
effective
personalized
management
NPC.
This
review
provides
comprehensive
overview
recent
developments
applications
nanotechnology
in
NPC
therapy,
focusing
on
improving
stability,
biodistribution,
delivery
tumors.
Language: Английский