Potential Applications of Rare Earth Metal Nanoparticles in Biomedicine
Pharmaceuticals,
Journal Year:
2025,
Volume and Issue:
18(2), P. 154 - 154
Published: Jan. 24, 2025
In
recent
years,
the
world
scientific
community
has
shown
increasing
interest
in
rare
earth
metals
general
and
their
nanoparticles
particular.
Medicine
pharmaceuticals
are
no
exception
this
matter.
review,
we
have
considered
main
opportunities
potential
applications
of
metal
(gadolinium,
europium,
ytterbium,
holmium,
lutetium,
dysprosium,
erbium,
terbium,
thulium,
scandium,
yttrium,
lanthanum,
neodymium,
promethium,
samarium,
praseodymium,
cerium)
biomedicine,
with
data
ranging
from
single
reports
effects
found
vitro
to
numerous
independent
vivo
studies,
as
well
a
number
challenges
for
wider
application.
The
areas
application
metals,
including
future,
diagnosis
treatment
malignant
neoplasms,
therapy
infections,
use
antioxidant
regenerative
properties
nanoparticles.
These
determined
both
by
themselves
need
search
new
approaches
solve
urgent
biomedical
public
health
problems.
Oxide
forms
lanthanides
most
often
used
biomedicine
due
greatest
biocompatibility
nanoscale
size,
providing
penetration
through
biological
membranes.
However,
existing
contradictory
or
insufficient
on
acute
chronic
toxicity
still
make
widespread
difficult.
There
various
modification
methods
(addition
excipients,
creation
nanocomposites,
changing
morphology
particles)
that
can
reduce
these
effects.
At
same
time,
despite
some
representatives
clinical
practice,
further
studies
establish
full
range
pharmacological
toxic
effects,
modify
remain
relevant.
Language: Английский
Annona reticulata fruit-based photosynthesis of zinc oxide nanoparticles and assess antioxidant, antibacterial and photocatalytic degradation of textile dyes
Journal of Crystal Growth,
Journal Year:
2025,
Volume and Issue:
unknown, P. 128087 - 128087
Published: Feb. 1, 2025
Language: Английский
Study of hemocompatibility and antioxidant activity of calcium-copper titanate powders
К. В. Иванов,
No information about this author
Yuliya A. Filimonova,
No information about this author
А. В. Носков
No information about this author
et al.
Chemical Papers,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 22, 2025
Language: Английский
Electrochemical Insights: Advanced Voltammetric Sensors for Neurotransmitter Detection
M G Gopika,
No information about this author
Beena Saraswathyamma
No information about this author
Published: Jan. 1, 2025
Language: Английский
Antibacterial Ceramics for Dental Applications
Lubica Hallmann,
No information about this author
Mark-Daniel Gerngross
No information about this author
Applied Sciences,
Journal Year:
2025,
Volume and Issue:
15(8), P. 4553 - 4553
Published: April 21, 2025
Background:
The
aim
of
this
review
was
to
evaluate
the
antibacterial
properties
functionalized
bioceramics
for
dental
applications.
Methods:
electronic
databases
PubMed,
Medline,
ProQuest,
and
Google
Scholar
were
used
search
peer-reviewed
scientific
publications
published
between
2020
2025
that
provide
insights
answer
research
questions
related
role
antibacterial-functionalized
in
combating
pathogens
dentistry
without
triggering
immune
reactions
inflammation,
as
well
on
their
efficacy
against
various
whether
understanding
mechanism
can
promote
development
glass-ceramic
bioceramic
with
long-term
activity.
keywords
were:
bioglass,
bioceramic,
biocompatible,
antibacterial,
osseointegration,
implant,
bioactive
materials.
Results:
Bacterial
infections
play
a
key
longevity
medical
devices.
A
crucial
problem
is
drug-resistant
bacteria.
Antibacterial
ceramics
have
received
great
attention
recently
because
activity,
good
mechanical
properties,
biocompatibility,
bioactivity.
This
provides
detailed
examination
complex
interactions
bacteria,
cells,
from
clinical
perspective.
focus
researchers
developing
new-generation
multifunctionality,
particular
are
independent
conventional
antibiotics.
highlight
exploration
dual
functions
such
promoting
bone
regeneration
which
potential
revolutionize
implant
technology.
Another
modifying
surface
hydrophilic
hydrophobic
order
increase
activity
bioceramics.
Conclusions:
help
understand
current
state-of-the-art
activities
bioceramics,
could
application.
Language: Английский