Journal of Biomolecular Structure and Dynamics,
Journal Year:
2023,
Volume and Issue:
42(22), P. 12077 - 12089
Published: Oct. 10, 2023
Crude
or
semi-purified
extracts
of
plants
can
play
a
significant
role
as
antitumor
agents.
They
were
used
stabilizing
and
reducing
agents
in
the
preparation
silver
nanoparticles
(AgNPs)
that
allows
these
particles
to
have
more
efficient
cytotoxic
activity.
In
current
study,
extract
RSC Advances,
Journal Year:
2024,
Volume and Issue:
14(46), P. 33681 - 33740
Published: Jan. 1, 2024
Tantalum-based
nanoparticles
(TaNPs)
have
emerged
as
promising
tools
in
cancer
management,
owing
to
their
unique
properties
that
facilitate
innovative
imaging
and
photothermal
therapy
applications.
Experimental and Molecular Pathology,
Journal Year:
2024,
Volume and Issue:
137, P. 104904 - 104904
Published: May 25, 2024
Pelvic
malignancies
consistently
pose
significant
global
health
challenges,
adversely
affecting
the
well-being
of
male
population.
It
is
anticipated
that
clinicians
will
continue
to
confront
these
cancers
in
their
practice.
Nanomedicine
offers
promising
strategies
revolutionize
treatment
pelvic
by
providing
precise
delivery
methods
aim
improve
efficacy
therapeutic
outcomes
while
minimizing
side
effects.
Nanoparticles
are
designed
encapsulate
agents
and
selectively
target
cancer
cells.
They
can
also
be
loaded
with
theragnostic
agents,
enabling
multifunctional
capabilities.
Micromachines,
Journal Year:
2023,
Volume and Issue:
14(4), P. 741 - 741
Published: March 27, 2023
Polyoxometalates
(POMs)
are
mineral
nanoclusters
with
many
advantages
in
various
diagnostic
fields,
particular
cancer
detection.
This
study
aimed
to
synthesize
and
evaluate
the
performance
of
gadolinium-manganese-molybdenum
polyoxometalate
(Gd-Mn-Mo;
POM)
nanoparticles
coated
chitosan-imidazolium
(POM@CSIm
NPs)
for
detecting
4T1
breast
cells
by
magnetic
resonance
imaging
vitro
vivo.
The
POM@Cs-Im
NPs
were
fabricated
characterized
FTIR,
ICP-OES,
CHNS,
UV-visible,
XRD,
VSM,
DLS,
Zeta
potential,
SEM.
Cytotoxicity,
cellular
uptake,
MR
vivo
L929
also
assessed.
efficacy
was
demonstrated
using
images
BALB/C
mice
bearing
a
tumor
evaluation
cytotoxicity
designed
showed
their
high
biocompatibility.
In
fluorescence
flow
cytometry,
had
higher
uptake
rate
than
(p
<
0.05).
Furthermore,
significantly
increased
signal
strength
images,
its
relaxivity
(r1)
calculated
as
4.71
mM-1
s-1.
confirmed
attachment
selective
accumulation
region.
Overall,
results
that
POM@CSIm
have
considerable
potential
an
nano-agent
early
Biomedical Materials,
Journal Year:
2024,
Volume and Issue:
19(3), P. 035021 - 035021
Published: March 28, 2024
Abstract
Laser
hyperthermia
therapy
(HT)
has
emerged
as
a
well-established
method
for
treating
cancer,
yet
it
poses
unique
challenges
in
comprehending
heat
transfer
dynamics
within
both
healthy
and
cancerous
tissues
due
to
their
intricate
nature.
This
study
investigates
laser
HT
promising
avenue
addressing
skin
cancer.
Employing
two
distinct
near-infrared
(NIR)
beams
at
980
nm,
we
analyze
temperature
variations
tumors,
employing
Pennes’
bioheat
equation
our
fundamental
investigative
framework.
Furthermore,
delves
into
the
influence
of
Ytterbium
nanoparticles
(YbNPs)
on
predicting
distributions
tissues.
Our
findings
reveal
that
application
YbNPs
using
Gaussian
beam
shape
results
notable
maximum
increase
5
°C
tumor
compared
nanoparticle-free
heating.
Similarly,
utilizing
flat
top
alongside
induces
rise
3
°C.
While
this
research
provides
valuable
insights
with
configuration
cancer
treatment,
more
thorough
understanding
could
be
attained
through
additional
details
experimental
parameters
such
setup,
exposure
duration,
specific
implications
therapy.
Nanoscience & Nanotechnology-Asia,
Journal Year:
2023,
Volume and Issue:
14(3)
Published: Aug. 23, 2023
:
Colorectal
Cancer
(CRC)
is
a
highly
prevalent
and
the
most
frequent
reason
for
death.
The
choice
of
nanotheranostic
technology
management
colorectal
cancer
one
emerging
strategies
to
overcome
(CRC).
Magnetic
nanoparticles
are
employed
in
this
case
because
they
have
biomedical
applications,
such
as
diagnostic
imaging,
thermal
treatment,
medication
transport.
There
has
been
evidence
usage
various
chemicals
on
surface
nano-particles,
ligands,
highlight
contact
with
tumour
cells
at
target
region
order
induce
effective
cytotoxic
drug
release.
This
review
will
current
breakthroughs
targeting
magnetic
against
cancer,
well
selection
ligands
their
cellular
targets
ionizing
radiation
employing
vitro
vivo
energies
management.
Green Processing and Synthesis,
Journal Year:
2024,
Volume and Issue:
13(1)
Published: Jan. 1, 2024
Abstract
The
present
study
investigates
the
effect
of
nickel
oxide
nanoparticles
(NiO-NPs)
on
C6
glioma
cells
and
develops
a
method
for
preparing
NiO.
Plant-based
materials
(leaf
extract)
can
produce
NPs
efficiently
economically.
Therefore,
we
developed
NiO-NPs
from
Terminalia
chebula
leaf
extract
to
reduce
glioblastoma
cell
proliferation.
structural,
optical,
antimicrobial
properties
were
investigated.
3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyl-2
H
-tetrazolium
bromide
(MTT)
assays,
Acridine
orange/ethidium
dual
staining,
Hoechst
33342,
Rh123
staining
used
evaluate
nuclear
changes
mitochondrial
membrane
potential
(MMP)
in
cells.
X-ray
diffraction
analyses
revealed
cubic
structures
synthesized
NiO-NPs,
field
emission
scanning
electron
microscope
analysis
polygonal
an
energy-dispersive
spectrometer
confirmed
high
purity
NiO-NPs.
V.
cholera,
S.
pneumonia,
aureus,
B.
subtilis,
P.
aeruginosa,
K.
C.
albicans
sensitive
When
applied
at
lower
concentrations
rat
cells,
they
dose-dependently
inhibited
viability
induced
apoptosis.
Our
findings
show
that
exhibit
altered
MMP
integrity.
In
this
study,
using
T.
extract,
which
has
antiproliferative
properties,
increased
cytotoxicity
Further
exploration
animal
models
should
be