Advanced Sensor and Energy Materials,
Год журнала:
2023,
Номер
2(4), С. 100081 - 100081
Опубликована: Окт. 29, 2023
In
recent
years,
there
has
been
a
growing
demand
for
rapid
detection
methods,
leading
to
the
proliferation
of
biosensors,
particularly
electrochemical
which
have
garnered
substantial
attention
from
researchers.
The
fusion
biosensors
with
advanced
sensing
technology
given
rise
diverse
array
characterized
by
their
capabilities
and
heightened
sensitivity.
Consequently,
an
imperative
exists
comprehensively
recapitulate
advances
in
especially
within
realm
clinical
medicine.
This
review
aims
elucidate
applications
delineate
future
development
prospects,
facilitating
more
profound
comprehension
further
progression
this
field.
Specifically,
we
will
examine
utilization
medicine,
encompassing
roles
point-of-care
testing,
disease
diagnosis,
therapeutic
monitoring.
Moreover,
spotlight
emerging
trends
prospective
innovations,
such
as
evolution
nanostructured
sensors
portable
devices.
By
providing
comprehensive
overview
potential
significantly
contribute
advancement
field
serve
catalyst
research
into
innovative
tools.
Biosensors and Bioelectronics X,
Год журнала:
2024,
Номер
19, С. 100503 - 100503
Опубликована: Май 31, 2024
The
next
generation
of
wearable
biosensors
comes
with
the
latest
advancements
in
biosensor
technology.
Soft
and
stretchable
electrode
materials
like
hydrogels
similar
functionalities
human
tissue
including
stretchability,
self-healability,
responsiveness
to
different
stimuli
have
emerged
as
most
versatile
electronics.
incorporation
conductive
nanofillers
is
found
enhance
sensitivity
electrochemical
significantly.
Microfluidic
technology
has
reduced
volume
samples
reagents
required
for
analysis,
allowing
continuous
biomedical
monitoring
from
a
drop
biofluid.
In
this
paper,
advanced
progress
platforms
that
can
noninvasively
continuously
monitor
biochemical
markers
body
fluids
diagnosis
health
management
reviewed.
Innovation
microelectronics,
modification,
fabrication
technologies,
detection
methods
are
main
focus
discussion.
particular,
hydrogel-based
sensors
microfluidic
systems
trends
discussed
detail.
Integration
miniaturized
wireless
great
promise
real-time
healthcare
point-of-care
(POC)
diagnostics
also
summarized.
Finally,
we
outline
optimized
material
design
well
key
challenges
need
be
addressed
improve
sensing
performance
(accuracy,
sensitivity,
selectivity,
stability),
portability
(miniaturized
size
light
weight),
flexibility
biosensors.
RSC Sustainability,
Год журнала:
2024,
Номер
2(4), С. 832 - 851
Опубликована: Янв. 1, 2024
Nanoplastic
residues
in
our
aquatic
ecosystems
poses
a
serious
global
concern
which
needs
effective
monitoring
to
implement
actions
and
control
measures.
Electrochemical
chemo(bio)sensors
emerge
as
promising
tool
for
their
detection
protect
water
environmental
resources.
Biosensors,
Год журнала:
2023,
Номер
13(9), С. 867 - 867
Опубликована: Сен. 1, 2023
Antibiotics
have
emerged
as
ground-breaking
medications
for
the
treatment
of
infectious
diseases,
but
due
to
excessive
use
antibiotics,
some
drugs
developed
resistance
microorganisms.
Because
their
structural
complexity,
most
antibiotics
are
excreted
unchanged,
polluting
water,
soil,
and
natural
resources.
Additionally,
food
items
being
polluted
through
widespread
in
animal
feed.
The
normal
concentrations
environmental
samples
typically
vary
from
ng
g/L.
Antibiotic
residues
excess
these
values
can
pose
major
risks
development
illnesses
infections/diseases.
According
estimates,
300
million
people
will
die
prematurely
next
three
decades
(by
2050),
WHO
has
proclaimed
“antibiotic
resistance”
be
a
severe
economic
sociological
hazard
public
health.
Several
been
recognised
possible
pollutants
(EMA)
detection
various
matrices
such
food,
milk,
is
investigated.
Currently,
chromatographic
techniques
coupled
with
different
detectors
(e.g.,
HPLC,
LC-MS)
used
antibiotic
analysis.
Other
screening
methods
include
optical
methods,
ELISA,
electrophoresis,
biosensors,
etc.
To
minimise
problems
associated
(i.e.,
AMR)
currently
available
analytical
electrochemical
platforms
investigated,
provide
cost-effective,
rapid
portable
alternative.
Despite
significant
progress
this
field,
further
developments
necessary
advance
sensors,
e.g.,
multi-functional
nanomaterials
advanced
(bio)materials
ensure
efficient
detection,
sensitivity,
portability,
reliability.
This
review
summarises
biosensors
milk/milk
products
presents
brief
introduction
AMR
followed
by
field
based
on
(i)
immunosensor,
(ii)
aptamer
(iii)
MIP,
(iv)
enzyme,
(v)
whole-cell
(vi)
direct
approaches.
role
sensor
fabrication
discussed
wherever
necessary.
Finally,
discusses
challenges
encountered
future
perspectives.
serve
an
insightful
source
information,
enhancing
awareness
providing
information
preservation
health
public,
animals,
our
environment,
globally.
ECS Sensors Plus,
Год журнала:
2024,
Номер
3(2), С. 020603 - 020603
Опубликована: Май 11, 2024
Enzymatic
and
microbial
electrochemical
biosensors
integrate
enzymes
microorganisms
as
biological
recognition
elements
into
the
sensor
design
functionality.
Enzyme-based
sensors
offer
high
sensitivity
selectivity
for
target
analyte
detection.
However,
these
have
limited
stability
necessary
continuous
monitoring.
Contrarily,
microbe-based
provide
a
means
sensing
but
are
associated
with
challenges
related
to
in
complex
samples.
To
address
limitations,
surface-display
methods,
which
bind
surfaces,
enhance
biosensor
sensitivity.
This
perspective
outlines
application
of
techniques,
offering
promising
avenue
health
Biosensors,
Год журнала:
2023,
Номер
13(9), С. 892 - 892
Опубликована: Сен. 19, 2023
Neurotransmitters
are
chemical
compounds
released
by
nerve
cells,
including
neurons,
astrocytes,
and
oligodendrocytes,
that
play
an
essential
role
in
the
transmission
of
signals
living
organisms,
particularly
central
nervous
system,
they
also
perform
roles
realizing
function
maintaining
state
each
organ
body.
The
dysregulation
neurotransmitters
can
cause
neurological
disorders.
This
highlights
significance
precise
neurotransmitter
monitoring
to
allow
early
diagnosis
treatment.
review
provides
a
complete
multidisciplinary
examination
electrochemical
biosensors
integrating
nanomaterials
nanotechnologies
order
achieve
accurate
detection
neurotransmitters.
We
introduce
extensively
researched
their
respective
functions
biological
beings.
Subsequently,
classified
based
on
methodologies
employed
for
direct
detection,
encompassing
recently
documented
cell-based
systems.
These
methods
involve
neuronal
cells
vitro,
identification
emitted
stem
vivo
incorporation
into
has
potential
assist
timely
management
study
significant
insights
researchers
clinicians
regarding
its
implications
numerous
applications.