Recent Advancements in Gallic Acid-Based Drug Delivery: Applications, Clinical Trials, and Future Directions
Pharmaceutics,
Год журнала:
2024,
Номер
16(9), С. 1202 - 1202
Опубликована: Сен. 13, 2024
Gallic
acid
(GA)
is
a
well-known
herbal
bioactive
compound
found
in
many
herbs
and
foods
like
tea,
wine,
cashew
nuts,
hazelnuts,
walnuts,
plums,
grapes,
mangoes,
blackberries,
blueberries,
strawberries.
GA
has
been
reported
for
several
pharmacological
activities,
such
as
antioxidant,
inflammatory,
antineoplastic,
antimicrobial,
etc.
Apart
from
its
incredible
therapeutic
benefits,
it
associated
with
low
permeability
bioavailability
issues,
limiting
their
efficacy.
belongs
to
BCS
(Biopharmaceutics
classification
system)
class
III
(high
solubility
probability).
In
this
context,
novel
drug
delivery
approaches
played
vital
role
resolving
these
issues.
Nanocarrier
systems
help
improve
moiety’s
physical
chemical
stability
by
encapsulating
them
into
lipidic
or
polymeric
matrix
core
system.
regard,
researchers
have
developed
wide
range
of
nanocarrier
GA,
including
liposomes,
transfersomes,
niosomes,
dendrimers,
phytosomes,
micelles,
nanoemulsions,
metallic
nanoparticles,
solid
lipid
nanoparticles
(SLNs),
nanostructured
carriers,
polymer
conjugates,
the
present
review,
different
search
engines
Scopus,
PubMed,
ScienceDirect,
Google
Scholar
referred
acquiring
recent
information
on
theme
work.
Therefore,
review
paper
aims
emphasize
systems,
patents,
clinical
updates
GA.
Язык: Английский
Exploring the landscape of Lipid Nanoparticles (LNPs): A comprehensive review of LNPs types and biological sources of lipids
Alanood S Alfutaimani,
N Alharbi,
Amirah Alahmari
и другие.
International Journal of Pharmaceutics X,
Год журнала:
2024,
Номер
8, С. 100305 - 100305
Опубликована: Ноя. 18, 2024
Язык: Английский
Recent advances in lipid-based nanocarriers for advanced skin cancer therapy
International Journal of Pharmaceutics,
Год журнала:
2025,
Номер
unknown, С. 125203 - 125203
Опубликована: Янв. 1, 2025
Язык: Английский
Optimization of Chitosan-Coated Niosomes Encapsulating Doxycycline Hyclate for pH-Responsive Drug Release
Industrial & Engineering Chemistry Research,
Год журнала:
2025,
Номер
unknown
Опубликована: Фев. 6, 2025
Язык: Английский
Nanoparticle-Based Delivery Systems for Phytochemicals in Cancer Therapy: Molecular Mechanisms, Clinical Evidence, and Emerging Trends
Drug Development and Industrial Pharmacy,
Год журнала:
2025,
Номер
unknown, С. 1 - 31
Опубликована: Март 21, 2025
This
review
examines
recent
advancements
in
nanoparticle-based
delivery
systems
for
phytochemicals,
focusing
on
their
role
overcoming
multidrug
resistance,
improving
therapeutic
efficacy,
and
facilitating
clinical
translation.
highlights
advances
nanoparticle-enabled
phytochemical
to
enhance
bioavailability,
improve
outcomes,
enable
targeted
applications.
By
comparing
various
nanoparticle
systems,
formulation
methods,
efficacy
data,
it
identifies
gaps
current
research
guides
the
development
of
more
effective,
next-generation
phytochemical-loaded
nanocarriers.
A
systematic
literature
published
between
2000
2024
was
conducted
using
PubMed,
Scopus,
Web
Science.
Articles
cancer
therapy
were
included.
Compounds
such
as
curcumin,
resveratrol,
quercetin,
epigallocatechin
gallate
demonstrate
enhanced
anti-cancer
when
encapsulated
nanoparticles,
leading
improved
increased
tumor
cell
targeting,
reduced
toxicity.
Clinical
trials
indicate
regression
fewer
adverse
effects.
Emerging
approaches-such
nanogels,
hybrid
combination
therapies
with
immune
checkpoint
inhibitors-further
refine
treatment
efficacy.
Nanoparticle-based
significantly
potential
making
them
promising
candidates
safer,
effective
treatments.
However,
challenges
related
regulatory
guidelines,
scalability,
long-term
safety
must
be
addressed
fully
realize
potential.
Язык: Английский
Lipid-based Nanoparticles: Strategy for Targeted Cancer Therapy
BIO Integration,
Год журнала:
2025,
Номер
6(1)
Опубликована: Янв. 1, 2025
Lipid-based
Nanoparticles
(LBNPs)
have
emerged
as
a
transformative
approach
in
cancer
treatment,
offering
innovative
drug
delivery
solutions
that
enhance
therapeutic
efficacy
while
minimizing
adverse
effects.
By
exploring
the
characterization,
classification,
synthesis,
targeting
strategies,
and
advantages
of
LBNPs,
this
study
highlights
how
LBNPs
been
used
to
overcome
limitations
traditional
chemotherapy
improve
patient
outcomes.
As
nanotechnology
revolutionizes
therapy,
emergence
promising
strategy
for
targeted
has
led
optimism
regarding
future
treatment.
This
review
extensively
assesses
structure,
categories,
production
methods,
benefits,
recent
advancements
treating
cancer.
It
also
current
challenges
possible
directions.
is
aimed
at
providing
comprehensive
understanding
LBNPs’
potential
therapy.
Liposomes,
nanostructured
lipid
carriers,
solid
nanoparticles,
lipid-polymer
hybrid
nanoparticles
are
all
types
each
with
unique
features
interest
These
particles
can
be
synthesized
through
various
procedures,
such
bulk
nanoprecipitation,
solvent-based
emulsification,
or
microfluidics.
Passive
systems,
active
responsive
platforms
direct
tumors.
Consequently,
provide
an
improved
release
pattern
minimizes
side
effects
enhancing
efficacy.
With
combination
offer
hopeful
Continued
research
expected
outcomes
overall
quality
life
care.
Язык: Английский
Lipid nanoparticles for treatment of glioblastoma multiforme: current status of research and clinical translation
Journal of Drug Delivery Science and Technology,
Год журнала:
2025,
Номер
unknown, С. 106891 - 106891
Опубликована: Апрель 1, 2025
Язык: Английский
Chitosan-encapsulated lipid-based nanovesicles for therapeutic applications and tissue engineering: A Review
Carbohydrate Polymer Technologies and Applications,
Год журнала:
2025,
Номер
unknown, С. 100805 - 100805
Опубликована: Апрель 1, 2025
Язык: Английский
Sustainable Nanomedicine: Enhancement of Asplatin’s Cytotoxicity In Vitro and In Vivo Using Green-Synthesized Zinc Oxide Nanoparticles Formed via Microwave-Assisted and Gambogic Acid-Mediated Processes
Molecules,
Год журнала:
2024,
Номер
29(22), С. 5327 - 5327
Опубликована: Ноя. 12, 2024
Chemoresistance
encountered
using
conventional
chemotherapy
demands
novel
treatment
approaches.
Asplatin
(Asp),
a
platinum
(IV)
prodrug
designed
to
release
cisplatin
and
aspirin
in
reductive
environment,
has
demonstrated
high
cytotoxicity
at
reduced
drug
resistance.
Herein,
we
investigated
the
ability
of
green-synthesized
nanocarriers
enhance
Asp’s
efficacy.
Zinc
oxide
nanoparticles
(ZnO-NPs)
were
synthesized
green
microwave-assisted
method
with
reducing
capping
agent
gambogic
acid
(GA).
These
then
loaded
Asp,
yielding
Asp@ZnO-NPs.
Transmission
electron
microscopy
was
utilized
study
morphological
features
ZnO-NPs.
Cell
viability
studies
conducted
on
MDA-MB-231
breast
cancer
cells
Asp@ZnO-NPs
significantly
decrease
half-maximal
inhibitory
concentration
(IC50)
(5
±
1
µg/mL).
This
further
flow
cytometric
analysis
that
revealed
capacity
increase
late
apoptotic
fractions.
Furthermore,
vivo
carried
out
solid
Ehrlich
carcinoma-bearing
mice
showed
significant
tumor
volume
reduction
(156.3
7.6
mm3),
compared
Asp
alone
(202.3
8.4
mm3)
untreated
controls
(342.6
10.3
mm3).
The
histopathological
increased
necrosis
Asp@ZnO-NPs-treated
group.
Asp@ZnO-NPs,
an
eco-friendly
approach,
enhanced
anticancer
activity,
offering
sustainable
solution
for
potent
formulations.
Язык: Английский
An Updated Review on the Nanocarriers Based Co‐Delivery System of Chemo Drug Doxorubicin and Phytocompounds
Polymers for Advanced Technologies,
Год журнала:
2024,
Номер
36(1)
Опубликована: Дек. 26, 2024
ABSTRACT
Numerous
issues
and
concerns
are
associated
with
current
cancer
therapeutics,
such
as
multidrug
resistance
tumors,
drug
toxicity,
severe
side
effects,
financial
burden.
Phytocompounds
from
plants
have
garnered
significant
interest
alternatives
adjunct
therapies
to
mitigate
these
effects
owing
their
safety,
efficacy,
cost‐effectiveness.
As
demonstrated
by
a
number
of
preclinical
clinical
investigations,
phytocompounds
combinations
doxorubicin
mediate
anticancer
modulating
multiple
signaling
pathways
linked
immune
system
mobilization,
apoptosis
promotion,
inhibition
excessive
cellular
proliferation.
However,
continue
encounter
challenges
related
inadequate
bioavailability,
pharmacokinetics,
metabolism.
To
address
challenges,
the
utilization
different
types
nanoparticles
has
become
in
nanomedicine
for
targeted
delivery,
enhancing
retention
time,
reducing
toxicity.
This
field
study
showcases
remarkable
amalgamation
nanotechnology
chemo‐drugs
(doxorubicin).
Thus,
this
review
focuses
on
recent
developments
nanocarriers
based
delivery
systems,
particularly
those
intended
simultaneous
chemotherapy
medicines,
synthesizing
existing
knowledge
filling
research
gaps.
also
discussed
combined
therapy
chemotherapeutic
drugs
other
nanotechnology‐based
carriers
treatment.
Язык: Английский