Gastrointestinal Tract,
Год журнала:
2023,
Номер
1
Опубликована: Дек. 26, 2023
This
review
would
delve
into
the
latest
developments
in
molecular
landscape
of
pancreatic
cancer
and
how
this
knowledge
can
be
applied
to
treatments.
It
could
particularly
highlight
emerging
therapies
like
immunotherapy,
genetic
profiling
analyses,
targeted
treatment
approaches.
Furthermore,
it
assess
recent
research
on
early
detection
prevention
strategies
for
cancer,
providing
insights
future
outlook.
significant
interest
value
researchers,
healthcare
professionals,
anyone
seeking
understand
current
state
innovations.
Pharmaceutics,
Год журнала:
2024,
Номер
16(3), С. 400 - 400
Опубликована: Март 14, 2024
Lipid-bilayer-based
liposomes
are
gaining
attention
in
scientific
research
for
their
versatile
role
drug
delivery.
With
amphiphilic
design,
efficiently
encapsulate
and
deliver
drugs
to
targeted
sites,
offering
controlled
release.
These
artificial
structures
hold
great
promise
advancing
cancer
therapy
methodologies.
Bibliometric
analyzes
systematic
literary
data
statistically.
This
study
used
bibliometric
indicators
examine,
map,
evaluate
the
applications
of
therapy.
A
Scopus
search
was
conducted
identify
all
English-language
peer-reviewed
publications
on
within
past
twenty
years.
were
calculated
using
VOSviewer
Biblioshiny.
We
produced
thematic,
conceptual,
visualization
charts.
total
14,873
published
documents
obtained.
The
procedure
keyword
mapping
has
effectively
identified
main
areas
concentration
prevailing
trends
this
specific
field
study.
significant
clusters
discovered
through
theme
hotspot
analyses
encompassed
many
topics
such
as
use
multiple
strategies
chemotherapy
different
forms
cancer,
pharmacokinetics
nanomedicine,
well
investigation
delivery,
cytotoxicity,
gene
Liposomes
employed
delivery
systems
so
selectively
target
cells
improve
bioavailability
anticancer
drugs.
work
showcased
capacity
tailor
these
accurate
by
including
potent
medications.
Our
findings
not
only
bring
latest
progress
utilizing
treatment
but
also
underscore
vital
need
ongoing
research,
collaborative
efforts,
effective
translation
breakthroughs
into
tangible
clinical
applications,
emphasizing
dynamic
evolving
nature
therapeutics.
Journal of Nanobiotechnology,
Год журнала:
2024,
Номер
22(1)
Опубликована: Апрель 3, 2024
Abstract
Kaempferol
(KA),
an
natural
antioxidant
of
traditional
Chinese
medicine
(TCM),
is
extensively
used
as
the
primary
treatment
for
inflammatory
digestive
diseases
with
impaired
redox
homeostasis.
Severe
acute
pancreatitis
(SAP)
was
exacerbated
by
mitochondrial
dysfunction
and
abundant
ROS,
which
highlights
role
antioxidants
in
targeting
function.
However,
low
bioavailability
high
dosage
KA
leading
to
unavoidable
side
effects
limits
clinical
transformation.
The
mechanisms
poor
largely
unexplored,
hindering
development
efficient
strategies
maximizing
medicinal
KA.
Here,
we
engineered
a
novel
thioketals
(TK)-modified
based
on
DSPE-PEG2000
liposomal
codelivery
system
improving
avoiding
(denotes
DSPE-TK-PEG2000-KA,
DTM@KA
NPs).
We
demonstrated
that
liposome
exerts
profound
impacts
damaging
intracellular
homeostasis
reducing
GSH
depletion
activating
Nrf2,
synergizes
reinforce
inhibition
inadequate
fission,
excessive
fusion
mitophagy
resulting
inflammation
apoptosis;
then,
restored
strengthens
ATP
supply
PAC
renovation
Interestingly,
TK
bond
proved
main
functional
structure
improve
above
efficacy
compared
absence
bond.
Most
importantly,
NPs
obviously
suppresses
death
negligible
vitro
vivo.
Mechanismly,
facilitated
STAT6-regulated
precursor
proteins
transport
via
interacting
TOM20
further
promote
Drp1-dependent
fission
Pink1/Parkin-regulated
enhanced
lysosomal
degradation
removing
damaged
mitochondria
then
reduce
apoptosis.
Generally,
synergistically
improved
homeostasis,
energy
metabolism
response
regulating
TOM20-STAT6-Drp1
signaling
promoting
SAP.
Consequently,
such
TCM’s
active
ingredients-based
nanomedicine
strategy
be
expected
innovative
approach
SAP
therapy.
Graphical
Materials Today Bio,
Год журнала:
2024,
Номер
28, С. 101199 - 101199
Опубликована: Авг. 10, 2024
Pancreatic
ductal
adenocarcinoma
(PDAC)
is
a
lethal
disease
where
standard-of-care
chemotherapeutic
drugs
have
limited
efficacy
due
to
the
development
of
drug
resistance
and
poor
delivery
caused
by
highly
desmoplastic
tumor
microenvironment.
Combining
multiple
in
tumor-targeting
carrier
would
be
favorable
approach
overcome
these
limitations.
Hence,
tumor-targeted
peptide
(TTP)
conjugated
amphiphilic
tri-block
copolymer
was
developed
make
targeted
polymer
nanoparticles
(TTP-PNPs)
serving
as
vehicle
for
carrying
gemcitabine
(Gem),
paclitaxel
(PTX),
their
combination
(Gem
+
PTX).
The
TTP-PNPs
form
empty
(P),
single
drug-loaded
[P(Gem)
P(PTX)],
dual
[P(Gem
PTX)]
nanoformulations
exhibited
stable
homogenous
spherical
shapes
with
110-160
nm
size.
These
demonstrated
excellent
stability
under
Journal of drug targeting,
Год журнала:
2025,
Номер
unknown, С. 1 - 32
Опубликована: Янв. 25, 2025
The
cytosolic
delivery
of
therapeutic
proteins
represents
a
promising
strategy
for
addressing
diseases
caused
by
protein
dysfunction.
Despite
significant
advances,
efficient
remains
challenging
due
to
barriers
such
as
cell
membrane
impermeability,
endosomal
sequestration,
and
instability.
This
review
summarizes
recent
progress
in
systems,
including
physical,
chemical,
biological
approaches,
with
particular
focus
on
strategies
that
enhance
escape
targeting
specificity.
We
further
discuss
the
clinical
translatability
these
approaches
propose
future
directions
improving
efficiency
safety,
ultimately
unlocking
potential
intracellular
proteins.
Pharmaceutics,
Год журнала:
2024,
Номер
16(12), С. 1525 - 1525
Опубликована: Ноя. 27, 2024
Liposomes
represent
a
promising
class
of
drug
delivery
systems
that
enhance
the
therapeutic
efficacy
and
safety
various
pharmaceutical
agents.
Also,
they
offer
numerous
advantages
compared
to
traditional
methods,
including
targeted
specific
sites,
controlled
release,
fewer
side
effects.
This
review
meticulously
examines
methodologies
employed
in
preparation
characterization
liposomal
formulations.
With
rising
incidence
adverse
reactions,
there
is
pressing
need
for
innovative
strategies
prioritize
selectivity,
specificity,
safety.
Nanomedicine
promises
revolutionize
diagnostics
treatments,
addressing
current
limitations
improving
disease
management,
cancer,
which
remains
major
global
health
challenge.
paper
aims
conduct
comprehensive
study
on
interest
biomedical
research
regarding
nanotechnology
its
implications
further
applications.
Research Square (Research Square),
Год журнала:
2024,
Номер
unknown
Опубликована: Фев. 13, 2024
Abstract
Kaempferol
(KA),
an
natural
antioxidant
of
traditional
Chinese
medicine
(TCM),
is
extensively
used
as
the
primary
treatment
for
inflammatory
digestive
diseases
with
impaired
redox
homeostasis.
Severe
acute
pancreatitis
(SAP)
was
exacerbated
by
mitochondrial
dysfunction
and
abundant
ROS,
which
highlights
role
antioxidants
in
targeting
function.
However,
low
bioavailability
high
dosage
KA
leading
to
unavoidable
side
effects
limits
clinical
transformation.
The
mechanisms
poor
largely
unexplored,
hindering
development
efficient
strategies
maximizing
medicinal
KA.
Here,
we
engineered
a
novel
thioketals
(TK)-modified
based
on
DSPE-PEG2000
liposomal
codelivery
system
improving
avoiding
(denotes
DSPE-TK-PEG2000-KA,
DTM@KA
NPs).
We
demonstrated
that
liposome
exerts
profound
impacts
damaging
intracellular
homeostasis
reducing
GSH
depletion
activating
Nrf2,
synergizes
reinforce
inhibition
inadequate
fission,
excessive
fusion
mitophagy
resulting
inflammation
apoptosis;
then,
restored
strengthens
ATP
supply
PAC
renovation
Interestingly,
TK
bond
proved
main
functional
structure
improve
above
efficacy
compared
absence
bond.
Most
importantly,
NPs
obviously
suppresses
death
negligible
vitro
vivo.
Mechanismly,
facilitated
STAT6-regulated
precursor
proteins
transport
via
interacting
TOM20
further
promote
Drp1-dependent
fission
Pink1/Parkin-regulated
enhanced
lysosomal
degradation
removing
damaged
mitochondria
then
reduce
apoptosis.
Generally,
synergistically
improved
homeostasis,
energy
metabolism
response
regulating
TOM20-STAT6-Drp1
signaling
promoting
SAP.
Consequently,
such
TCM’s
active
ingredients-based
nanomedicine
strategy
be
expected
innovative
approach
SAP
therapy.