Journal of Materials Chemistry B,
Journal Year:
2024,
Volume and Issue:
12(19), P. 4724 - 4735
Published: Jan. 1, 2024
We
have
developed
a
highly
sensitive
and
reliable
FRET
probe
using
nitro-dopamine
(ND)
dopamine
(DA)
coated
MnO
2
nanosheet
(ND@MnO
NS
DA@MnO
NS)
as
an
energy
acceptor
MoS
quantum
dots
(QDs)
donor.
Nanoscale Advances,
Journal Year:
2024,
Volume and Issue:
7(1), P. 13 - 41
Published: Nov. 21, 2024
This
review
article
discusses
and
summarizes
the
synthesis
applications
of
luminescent
metal–organic
frameworks
(MOFs)
for
sensing
dipicolinic
acid
in
biological
water
samples.
Luminescence,
Journal Year:
2025,
Volume and Issue:
40(1)
Published: Jan. 1, 2025
ABSTRACT
The
reaction‐based
probe
perylene
diimide–hydroxyphenyl
benzothiazole
(
PR
)
can
be
used
for
the
detection
and
discrimination
of
H
2
S,
DTT
Cys
in
20%
HEPES
buffer–DMSO
DMSO.
S
induced
radical
anion
formation
buffer
thiolysis
ether
bond
However,
addition
showed
only
a
decrease
absorbance
intensity
insignificant
behaviour
towards
optical,
AFM
DLS
studies
along
with
isolation
reaction
product
model
support
interaction
bio
thiols.
Molecules,
Journal Year:
2023,
Volume and Issue:
28(10), P. 4252 - 4252
Published: May 22, 2023
Biothiols
such
as
cysteine,
homocysteine,
and
glutathione
play
significant
roles
in
important
biological
activities,
their
abnormal
concentrations
have
been
found
to
be
closely
associated
with
certain
diseases,
making
detection
a
critical
task.
To
this
end,
fluorescent
probes
become
increasingly
popular
due
numerous
advantages,
including
easy
handling,
desirable
spatiotemporal
resolution,
high
sensitivity,
fast
response,
favorable
biocompatibility.
As
result,
intensive
research
has
conducted
create
for
the
imaging
of
biothiols.
This
brief
review
summarizes
recent
advances
field
biothiol-responsive
probes,
an
emphasis
on
rational
probe
design,
reaction
mechanism,
discriminating
detection,
reversible
specific
detection.
Furthermore,
challenges
prospects
fluorescence
biothiols
are
also
outlined.
Coordination Chemistry Reviews,
Journal Year:
2024,
Volume and Issue:
509, P. 215817 - 215817
Published: March 22, 2024
Redox
reactions
play
fundamental
roles
in
life
and
are
at
the
core
of
metabolism.
Thus,
observing
quantifying
these
is
crucial
for
diagnostics
therapy.
Recent
advances
inorganic
fluorescent
nanoprobes
have
revolutionized
field,
enabling
vitro
by
providing
reliable
tools
real-time,
quantitative
determination
redox
biomolecule
levels
biological
samples
cells.
Due
to
their
high
stability,
probes
also
widely
used
bioimaging,
real-time
information
vivo
guiding
treatment
diseases
associated
with
biomolecules.
This
review
explores
diverse
landscape
designed
detection
biologically
relevant
reactive
oxygen
nitrogen
species.
The
discussion
divided
into
several
sections,
each
focusing
on
tailored
specific
oxidative
impact
imaging-guided
depends
chemical
composition,
surface
property,
fluorescence
mechanism.
discussions
highlight
current
strengths
weaknesses,
which
will
help
design
more
efficient
redox-responsive
future.