Heliyon,
Journal Year:
2024,
Volume and Issue:
10(16), P. e35825 - e35825
Published: Aug. 1, 2024
The
age-old
discipline
of
plant
therapy
has
gained
renewed
importance
through
the
utilization
plants
for
synthesis
metal
nanoparticles.
However,
toxicity
testing
and
characterization
recently
synthesized
nanomaterials
are
essential
to
evaluating
their
appropriate
application.
European Journal of Medicinal Chemistry Reports,
Journal Year:
2024,
Volume and Issue:
11, P. 100169 - 100169
Published: May 16, 2024
NSAIDs,
glucocorticoids,
aminosalicylates,
and
immunosuppressants
are
nowadays
the
most
commonly
used
anti-inflammatory
medicines,although
they
have
cosiderable
side
effects.
Nanoparticles
(NPs),
notably
metallic
NPs,
gained
appeal
in
development
of
safer
drugs.
Because
conventional
NP
synthesis
methods
limited
by
environmentally
unfriendly
chemicals
high
energy
consumption,
alternative
green
metal
oxide
including
plant-mediated
synthesis,
has
piqued
interest
researchers
due
to
phytochemicals
that
can
reduce
precursors
stabilize
generated
NPs.
This
method
is
an
eco-friendly,
non-toxic,
cost-effective.
review
aimed
highlight
studies
concerningthe
activity
different
nanoparticles
with
properties
covering
papers
since
2017.
According
findings,
majority
NPs
tested
were
AgNPs.
Noticeably,
few
investigations
conducted
assess
stability
safety
these
Remarkably,
someNPs
exert
more
than
plant
extract
itself
standard.
Some
tests
vitro
testing.
Obviously,
there
a
lack
information
regarding
issues
determination
their
active
doses.Thus,
further
invitro
invivo
pharmacological
toxicological
studiesare
required
for
identify
medicinal
uses
avoid
unintended
adverse
consequences.It
also
urgent
test
various
dosage
forms
after
determining
optimal
dose
Particulate Science And Technology,
Journal Year:
2023,
Volume and Issue:
42(5), P. 874 - 894
Published: Nov. 16, 2023
Nanotechnology
is
an
emerging
field
with
diverse
applications,
wherein
materials
ranging
in
size
from
1
to
100
nm,
referred
as
nanoparticles
(NPs),
are
utilized.
Traditional
methods
for
producing
metallic
NPs
primarily
involve
chemical
processes,
which
can
result
unintended
outcomes.
To
overcome
these
challenges,
a
greener
alternative,
known
green
synthesis,
has
been
developed.
Green
synthesis
of
emerged
innovative
and
environmentally
friendly
approach
nanotechnology.
Utilizing
plant
extracts,
microorganisms,
biopolymers
reducing
stabilizing
agents,
researchers
have
successfully
prepared
various
nanoparticles,
such
silver,
copper,
gold,
platinum,
palladium
nanoparticles.
These
offer
advantages
like
cost-effectiveness,
reduced
environmental
impact,
facile
scalability.
This
method
ensures
eco-friendliness
by
implementing
techniques
the
use
safe,
nontoxic
solvents
(such
supercritical
fluids
water)
additives
polysaccharides.
Different
reaction
conditions
energy-saving
growth
also
employed
enhance
sustainability.
Nanoparticles
synthesized
through
exhibit
unique
properties,
rendering
them
highly
suitable
including
catalysis,
medicine,
energy
technologies.
review
paper
explores
recent
advances
biosynthesis
at
nanoscale
highlights
different
factors
that
affect
their
possible
applications
Nanomaterials,
Journal Year:
2024,
Volume and Issue:
14(22), P. 1805 - 1805
Published: Nov. 11, 2024
Gold
nanoparticles
(NPs)
are
among
the
most
commonly
employed
metal
NPs
in
biological
applications,
with
distinctive
physicochemical
features.
Their
extraordinary
optical
properties,
stemming
from
strong
localized
surface
plasmon
resonance
(LSPR),
contribute
to
development
of
novel
approaches
areas
bioimaging,
biosensing,
and
cancer
research,
especially
for
photothermal
photodynamic
therapy.
The
ease
functionalization
various
ligands
provides
a
approach
precise
delivery
these
molecules
targeted
areas.
NPs'
ability
transfer
heat
electricity
positions
them
as
valuable
materials
advancing
thermal
management
electronic
systems.
Moreover,
their
inherent
characteristics,
such
inertness,
give
rise
synthesis
antibacterial
antioxidant
agents
they
provide
biocompatible
low-toxicity
approach.
Chemical
physical
methods
utilized
produce
gold
NPs.
pursuit
more
ecologically
sustainable
economically
viable
large-scale
technologies,
environmentally
benign
processes
referred
green/biological
synthesis,
has
garnered
increasing
interest
global
researchers.
Green
favorable
than
other
techniques
minimize
necessity
hazardous
chemicals
reduction
process
due
simplicity,
cost-effectiveness,
energy
efficiency,
biocompatibility.
This
article
discusses
importance
NPs,
optical,
conductivity,
antibacterial,
antioxidant,
anticancer
methods,
contemporary
uses,
biosafety,
emphasizing
need
understand
toxicology
principles
green
commercialization
strategies.