Wiley Interdisciplinary Reviews Nanomedicine and Nanobiotechnology,
Год журнала:
2024,
Номер
16(5)
Опубликована: Сен. 1, 2024
In
recent
years,
the
application
of
radionuclides-containing
nanomaterials
in
cancer
treatment
has
garnered
widespread
attention.
The
diversity
allows
researchers
to
selectively
combine
them
with
appropriate
radionuclides
for
biomedical
purposes,
addressing
challenges
faced
by
peptides,
small
molecules,
or
antibodies
used
radionuclide
labeling.
However,
advantages
come
challenges,
and
nanoradionuclides
still
encounter
significant
issues
during
clinical
translation.
This
review
summarized
progress
nanosized
diagnosis.
discussion
began
representative
methods
incorporating
into
nanomaterial
structures.
Subsequently,
new
combinations
radionuclides,
along
their
applications,
were
introduced
demonstrate
future
trends.
benefits
included
optimized
pharmacokinetic
properties,
enhanced
disease-targeting
efficacy,
synergistic
other
techniques.
Besides,
basic
rule
this
section
was
summarize
how
these
can
truly
impact
diagnosis
therapy
various
types.
last
part,
focus
devoted
currently
applicable
clinics
address
existing
problems
based
on
our
knowledge.
ACS Applied Materials & Interfaces,
Год журнала:
2023,
Номер
15(10), С. 13460 - 13471
Опубликована: Март 3, 2023
Conventional
cancer
therapy
methods
have
serious
drawbacks
that
are
related
to
the
nonspecific
action
of
anticancer
drugs
leads
high
toxicity
on
normal
cells
and
increases
risk
recurrence.
The
therapeutic
effect
can
be
significantly
enhanced
when
various
treatment
modalities
implemented.
Here,
we
demonstrate
radio-
photothermal
(PTT)
delivered
through
nanocarriers
(gold
nanorods,
Au
NRs)
in
combination
with
chemotherapy
a
melanoma
results
complete
tumor
inhibition
compared
single
therapy.
synthesized
effectively
labeled
188Re
radionuclide
radiolabeling
efficiency
(94-98%)
radiochemical
stability
(>95%)
appropriate
for
Further,
188Re-Au
NRs,
mediating
conversion
laser
radiation
into
heat,
were
intratumorally
injected
PTT
was
applied.
Upon
irradiation
near-infrared
laser,
dual
achieved.
Additionally,
188Re-labeled
NRs
paclitaxel
(PTX)
has
improved
(188Re-labeled
irradiation,
PTX)
monoregime.
Thus,
this
local
triple-combination
step
toward
clinical
translation
use
treatment.
Analytical Sciences,
Год журнала:
2024,
Номер
40(5), С. 803 - 826
Опубликована: Апрель 2, 2024
Abstract
Radiotheranostics
utilizes
a
set
of
radioligands
incorporating
diagnostic
or
therapeutic
radionuclides
to
achieve
both
diagnosis
and
therapy.
Imaging
probes
using
have
been
used
for
systemic
cancer
imaging.
Integration
into
the
imaging
serves
as
potent
agents
radionuclide
Among
them,
targeted
alpha
therapy
(TAT)
is
promising
next-generation
The
α-particles
emitted
by
in
TAT
result
high
linear
energy
transfer
over
short
range,
inducing
substantial
damage
nearby
cells
surrounding
binding
site.
Therefore,
key
successful
treatment
with
minimal
side
effects
depends
on
selective
delivery
their
targets.
Recently,
targeting
biomolecules
highly
expressed
various
cells,
such
sodium/iodide
symporter,
norepinephrine
transporter,
somatostatin
receptor,
α
v
β
3
integrin,
prostate-specific
membrane
antigen,
fibroblast-activation
protein,
human
epidermal
growth
factor
receptor
2
developed
made
remarkable
progress
toward
clinical
application.
In
this
review,
we
focus
two
radionuclides,
225
Ac
211
At,
which
are
expected
wide
range
applications
TAT.
We
also
introduce
recent
fundamental
studies
radiopharmaceuticals
labeled
these
radionuclides.
Graphical
abstract
Polymers,
Год журнала:
2022,
Номер
14(3), С. 479 - 479
Опубликована: Янв. 25, 2022
Polyelectrolyte
multilayered
capsules
(PEMUCs)
obtained
using
the
Layer-by-Layer
(LbL)
method
have
become
powerful
tools
for
different
biomedical
applications,
which
include
drug
delivery,
theranosis
or
biosensing.
However,
exploitation
of
PEMUCs
in
field
requires
a
deep
understanding
most
fundamental
bases
underlying
their
assembly
processes,
and
control
properties
to
fabricate
novel
materials
with
optimized
ability
specific
targeting
therapeutic
capacity.
This
review
presents
an
updated
perspective
on
multiple
avenues
opened
application
field,
aiming
highlight
some
important
advantages
offered
by
LbL
fabrication
platforms
use
detection
treatment
diseases.
Chemistry of Materials,
Год журнала:
2022,
Номер
34(14), С. 6593 - 6605
Опубликована: Июль 8, 2022
Biomedical
application
of
various
nanoparticles
(NPs)
for
bioimaging
and
therapeutic
purposes
attracts
huge
interest.
In
particular,
NPs
can
be
used
as
nanocarriers
radionuclides
radiotherapy
malignant
neoplasms.
However,
most
approaches
NP
radiolabeling
are
complicated,
their
transfer
into
clinical
practice
is
difficult
due
to
multistep
process,
limited
reproducibility,
lack
an
automated
procedure.
Here,
we
develop
a
universal
method
suitable
(either
organic
or
inorganic)
internal
B16-F10
melanoma
tumors.
The
obtained
(polylactide,
silica,
gold,
iron
oxide)
were
labeled
with
diagnostic
(99mTc)
(188Re)
high
efficiency
(∼94–98%)
radiochemical
stability
(>95%).
After
intratumoral
administration,
these
188Re-labeled
mostly
remained
in
the
tumor,
inhibiting
tumor
growth
rate
compared
untreated
absence
any
significant
leakage
radiolabeled
healthy
tissues
(the
liver,
heart,
kidneys,
lungs,
spleen)
was
confirmed
by
single-photon
emission
computed
tomography
(SPECT)
direct
radiometry
analysis.
Histological
analysis
revealed
no
abnormal
changes
organs
after
therapy
(e.g.,
acute
pathologic
findings
detected
liver
kidneys).
As
result,
treatment
mice
led
prolonged
survival
control
group.
Thus,
our
study
provides
general
guidance
use
different
types
radionuclide
therapy.
Pharmaceuticals,
Год журнала:
2023,
Номер
16(12), С. 1679 - 1679
Опубликована: Дек. 2, 2023
The
high
energy
of
α
emitters,
and
the
strong
linear
transfer
that
goes
along
with
it,
lead
to
very
efficient
cell
killing
through
DNA
damage.
Moreover,
degree
oxygenation
cycle
state
have
no
impact
on
these
effects.
Therefore,
radioisotopes
can
offer
a
treatment
choice
individuals
who
are
not
responding
β-
or
gamma-radiation
therapy
chemotherapy
drugs.
Only
few
α-particle
emitters
suitable
for
targeted
alpha
(TAT)
clinical
applications.
majority
available
research
involves
225Ac
its
daughter
nuclide
213Bi.
Additionally,
disintegration
cascade
generates
γ
decays
be
used
in
single-photon
emission
computed
tomography
(SPECT)
imaging,
expanding
potential
theranostic
applications
nuclear
medicine.
Despite
growing
interest
applying
225Ac,
restricted
global
accessibility
this
radioisotope
makes
it
difficult
conduct
extensive
trials
many
radiopharmaceutical
candidates.
To
boost
availability
applications,
review
attempts
highlight
fundamental
physical
properties
α-particle-emitting
isotope,
as
well
existing
possible
production
methods.
ACS Applied Materials & Interfaces,
Год журнала:
2021,
Номер
13(22), С. 25599 - 25610
Опубликована: Май 24, 2021
Actinium-225
(225Ac)
radiolabeled
submicrometric
core-shell
particles
(SPs)
made
of
calcium
carbonate
(CaCO3)
coated
with
biocompatible
polymers
[tannic
acid-human
serum
albumin
(TA/HSA)]
have
been
developed
to
improve
the
efficiency
local
α-radionuclide
therapy
in
melanoma
models
(B16-F10
tumor-bearing
mice).
The
225Ac-SPs
possess
radiochemical
stability
and
demonstrate
effective
retention
225Ac
its
daughter
isotopes.
SPs
additionally
labeled
zirconium-89
(89Zr)
perform
biodistribution
studies
using
positron
emission
tomography-computerized
tomography
(PET/CT)
imaging
for
14
days
after
intratumoral
injection.
According
PET/CT
analysis,
a
significant
accumulation
89Zr-SPs
tumor
area
is
revealed
whole
investigation
period,
which
correlates
direct
radiometry
analysis
administration
225Ac-SPs.
histological
has
no
abnormal
changes
healthy
tissue
organs
treatment
(e.g.,
acute
pathologic
findings
are
detected
liver
kidneys).
At
same
time,
inhibition
growth
observed
as
compared
control
samples
[nonradiolabeled
phosphate-buffered
saline
(PBS)].
mice
resulted
prolonged
survival
samples.
Thus,
our
study
validates
application
225Ac-doped
submicron
CaCO3
therapy.
ACS Applied Materials & Interfaces,
Год журнала:
2021,
Номер
13(31), С. 36737 - 36746
Опубликована: Июль 27, 2021
Real-time
temperature
monitoring
within
biological
objects
is
a
key
fundamental
issue
for
understanding
the
heating
process
and
performing
remote-controlled
release
of
bioactive
compounds
upon
laser
irradiation.
The
lack
accurate
thermal
control
significantly
limits
translation
optical
techniques
into
nanomedicine.
Here,
we
design
develop
hybrid
(complex)
carriers
based
on
multilayered
capsules
combined
with
nanodiamonds
(NV
centers)
as
nanothermometers
gold
nanoparticles
(Au
NPs)
nanoheaters
to
estimate
an
effective
laser-induced
rise
required
capsule
rupture
further
cargo
molecules
outside
inside
cancerous
(B16-F10)
cells.
We
integrate
both
elements
centers
Au
in
structure
using
two
strategies:
(i)
loading
capsule's
cavity
(CORE)
incorporating
them
wall
(WALL).
Theoretically
experimentally,
show
highest
lowest
heat
from
samples
(CORE
or
WALL)
under
irradiation
depending
NP
arrangement
capsule.
Applying
NV
centers,
measure
local
cells,
which
determined
be
128
±
1.12
°C.
Finally,
developed
containers
can
used
perform
photoinduced
simultaneous
real-time