An emerging assay for rapid diagnosis of live Salmonella Typhimurium by exploiting aqueous/liquid crystal interface
Journal of Hazardous Materials,
Год журнала:
2024,
Номер
477, С. 135365 - 135365
Опубликована: Июль 29, 2024
Язык: Английский
Versatile sensing strategies based on emerging programmable prokaryotic Argonautes: From nucleic acid to non-nucleic acid targets
TrAC Trends in Analytical Chemistry,
Год журнала:
2025,
Номер
unknown, С. 118130 - 118130
Опубликована: Янв. 1, 2025
Язык: Английский
Argonaute protein powered biosensing for pathogenic biosafety
International Journal of Biological Macromolecules,
Год журнала:
2025,
Номер
305, С. 141321 - 141321
Опубликована: Фев. 19, 2025
Язык: Английский
Phage/aptamer dual-encoded hydrogel arrays integrated with microfluidic platforms for simultaneous detection of multiple food pathogens
Talanta,
Год журнала:
2025,
Номер
unknown, С. 128209 - 128209
Опубликована: Апрель 1, 2025
Язык: Английский
Advancements in Pathogen Detection: Argonaute-Based Nucleic Acid Detection Technology
Pathogens,
Год журнала:
2025,
Номер
14(6), С. 554 - 554
Опубликована: Июнь 2, 2025
In
recent
years,
global
public
health
security
has
encountered
significant
challenges,
with
infectious
diseases
accounting
for
approximately
25%
of
mortality
annually.
The
worldwide
pandemic
instigated
by
the
novel
coronavirus,
alongside
persistent
threats
posed
Ebola,
influenza,
and
multidrug-resistant
bacteria,
severely
compromised
human
health,
economic
development,
social
stability.
Within
this
context,
development
rapid
precise
pathogen
detection
technologies
emerged
as
a
critical
frontline
defense
epidemic
prevention
control,
serving
pivotal
component
in
implementation
“early
detection,
early
isolation,
treatment”
strategy.
Argonaute
(Ago)
protein,
recognized
programmable
target-specific
activated
nuclease,
demonstrated
substantial
potential
realm
nucleic
acid
due
to
its
distinctive
biological
properties,
garnering
considerable
attention.
study,
we
delineate
structural
characteristics
Ago
proteins
elucidate
mechanism
underlying
their
nuclease
activity.
Furthermore,
review
principles
based
on
provide
comprehensive
analysis
advancements
related
systems.
Additionally,
compare
advantages
other
methodologies.
Through
analysis,
aim
robust
theoretical
foundation
an
advanced
technical
reference
new-generation
platforms
high
sensitivity
specificity.
Язык: Английский
Advancements of Prokaryotic Argonautes in Molecular Diagnostics and Further Perspectives
TrAC Trends in Analytical Chemistry,
Год журнала:
2024,
Номер
unknown, С. 118122 - 118122
Опубликована: Дек. 1, 2024
Язык: Английский
Efficiency of Bacteriophage-Based Detection Methods for Non-Typhoidal Salmonella in Foods: A Systematic Review
Viruses,
Год журнала:
2024,
Номер
16(12), С. 1840 - 1840
Опубликована: Ноя. 27, 2024
Food
contamination
with
non-typhoidal
Salmonella
(NTS)
presents
a
significant
public
health
risk,
underscoring
the
critical
need
for
rigorous
food
safety
measures
throughout
production,
distribution,
preparation,
and
consumption
stages.
Conventional
diagnostic
strategies
are
time-consuming
labor-intensive
thus
sub-optimal
throughput
NTS
detection.
Bacteriophages
(phages)
highly
specialized
bacterial
viruses
exhibit
extreme
specificity
their
hosts.
This
organic
phage/bacterial
interaction
provides
an
invaluable
tool
that
can
potentially
replace
or
complement
existing
S.
enterica
detection
methods.
Here,
we
explored
work
in
this
area
reviewed
data
from
PubMed/MEDLINE,
Embase,
ScienceDirect
up
to
4
November
2024.
Thirty-five
studies
were
selected
607
retrieved
articles
using
JBI
Critical
Appraisal
Checklist
ensure
quality.
enrichment,
rapid
detection,
effective
recovery
diverse
sources
various
serovars
targeted.
Utilizing
phages
as
bio-probes
alongside
lateral
flow
immunoassays,
surface-enhanced
Raman
spectroscopy,
fluorescence,
electrochemistry
assays
enabled
sensitive
of
NTS,
achieving
limits
low
7
8
CFU/mL
within
30
min.
Balancing
sensitivity
analysis
time
is
essential.
Further
research
development
will
be
pivotal
overcoming
challenges
maximizing
efficiency
phage-based
optimal
safety.
Язык: Английский