Current Opinion in Biotechnology,
Год журнала:
2024,
Номер
91, С. 103242 - 103242
Опубликована: Дек. 21, 2024
While
the
use
of
phages
in
food
and
biomedical
sectors
occurs
commercially,
their
application
water
sector
is
less
common
typically
demonstrated
at
a
lower
technological
readiness
level.
This
so
despite
potential
that
have
to
enhance
control
problematic
bacteria
(including
pathogens)
protect
infrastructure
within
sector.
Fulfilling
great
this
nascent
field
requires
more
research
development.
Here,
we
highlight
innovation
opportunities
discern
critical
knowledge
gaps
needs
facilitate
as
precise
biocontrol
agents
First,
while
advent
sequencing
technologies
made
it
easier
identify
bacterial
communities
understand
functional
roles,
identifying
cultivating
appropriate
can
be
effective
against
target
research.
The
large
volumes
spiked
with
also
require
optimizing
phage
strategy,
minimizing
associated
costs
enhancing
scaling
up.
In
addition,
hosts
may
gain
resistance
after
long-term
exposure,
which
most
water-engineered
systems,
strategies
minimize
or
delay
must
considered.
opinion,
provide
an
overview
pertinent
literature
bioinformatic
tools
help
for
systems
applications.
We
then
discuss
aid
prolonging
efficacy
feasibility
approaches.
Current Research in Microbial Sciences,
Год журнала:
2022,
Номер
3, С. 100131 - 100131
Опубликована: Янв. 1, 2022
has
notably
become
a
superbug
due
to
its
mounting
risk
of
infection
and
escalating
rates
antimicrobial
resistance,
including
colistin,
the
last-resort
antibiotic.
Its
propensity
form
biofilm
on
biotic
abiotic
surfaces
contributed
majority
nosocomial
infections.
Bacterial
cells
in
biofilms
are
resistant
antibiotics
host
immune
response,
pose
challenges
treatment.
Therefore
current
scenario
urgently
requires
development
novel
therapeutic
strategies
for
successful
treatment
outcomes.
This
article
provides
holistic
understanding
sequential
events
regulatory
mechanisms
directing
Scientific Reports,
Год журнала:
2023,
Номер
13(1)
Опубликована: Июнь 1, 2023
Phage
treatment
has
been
used
as
an
alternative
to
antibiotics
since
the
early
1900s.
However,
bacteria
may
acquire
phage
resistance
quickly,
limiting
use
of
treatment.
The
combination
genetically
diverse
phages
displaying
distinct
replication
machinery
in
cocktails
therefore
become
a
novel
strategy
improve
therapeutic
outcomes.
Here,
we
isolated
and
studied
lytic
(SPA01
SPA05)
that
infect
wide
range
clinical
Pseudomonas
aeruginosa
isolates.
These
relatively
small
myophages
have
around
93
kbp
genomes
with
no
undesirable
genes,
30-min
latent
period,
reproduce
high
number
progenies,
ranging
from
218
240
PFU
per
infected
cell.
Even
though
both
lyse
their
hosts
within
4
h,
phage-resistant
emerge
during
Considering
SPA01-resistant
cross-resist
SPA05
vice
versa,
combining
SPA01
for
cocktail
would
be
ineffective.
According
decreased
adsorption
rate
resistant
isolates,
one
anti-phage
mechanisms
occur
through
modification
receptors
on
target
cells.
All
however,
are
susceptible
nucleus-forming
jumbophages
(PhiKZ
PhiPA3),
which
SPA05,
suggesting
recognize
different
receptor
entry.
these
jumbophage
PhiKZ
outperforms
other
tested
combinations
terms
bactericidal
activity
effectively
suppresses
emergence
resistance.
This
finding
reveals
effectiveness
phage-composed
reducing
bacterial
growth
prolonging
evolution
Viruses,
Год журнала:
2023,
Номер
15(3), С. 673 - 673
Опубликована: Март 3, 2023
Acinetobacter
baumannii
(A.
baumannii)
is
one
of
the
most
common
clinical
pathogens
and
a
typical
multi-drug
resistant
(MDR)
bacterium.
With
increase
drug-resistant
A.
infections,
it
urgent
to
find
some
new
treatment
strategies,
such
as
phage
therapy.
In
this
paper,
we
described
different
drug
resistances
basic
properties
phages,
analyzed
interaction
between
phages
their
hosts,
focused
on
therapies.
Finally,
discussed
chance
challenge
This
paper
aims
provide
more
comprehensive
understanding
theoretical
support
for
application
phages.
JAC-Antimicrobial Resistance,
Год журнала:
2023,
Номер
6(1)
Опубликована: Дек. 28, 2023
Abstract
Antibiotic
failure
is
one
of
the
most
worrisome
threats
to
global
health.
Among
new
therapeutic
efforts
that
are
being
explored,
use
bacteriophages
(viruses
kill
bacteria),
also
known
as
‘phages’,
extensively
studied
a
strategy
target
bacterial
pathogens.
However,
main
drawbacks
phage
therapy
plethora
defence
mechanisms
bacteria
defend
themselves
against
phages.
This
review
aims
summarize
approaches
evaluated
overcome
systems,
including
innovative
applied:
circumvention
receptor
mutations;
modification
prophages;
targeting
CRISPR-Cas
systems
and
biofilm
matrix;
engineering
safer
more
efficacious
phages;
inhibition
anti-persister
strategies
used
by
bacteria.
Antibiotics,
Год журнала:
2024,
Номер
13(7), С. 680 - 680
Опубликована: Июль 22, 2024
Acinetobacter
baumannii
is
a
challenging
multidrug-resistant
pathogen
in
healthcare.
Phage
vB_AbaSi_W9
(GenBank:
PP146379.1),
identified
our
previous
study,
shows
lytic
activity
against
26
(89.66%)
of
29
carbapenem-resistant
(CRAB)
strains
with
various
sequence
types
(STs).
It
promising
candidate
for
CRAB
treatment;
however,
its
efficiency
insufficient
complete
bacterial
lysis.
Therefore,
this
study
aimed
to
investigate
the
clinical
utility
phage
by
identifying
antimicrobial
agents
that
show
synergistic
effects
when
combined
it.
The
A.
ATCC17978
strain
was
used
as
host
vB_AbaSi_W9.
Adsorption
and
one-step
growth
assays
were
performed
at
MOIs
0.001
0.01,
respectively.
Four
belonging
different
types,
KBN10P04948
(ST191),
LIS2013230
(ST208),
KBN10P05982
(ST369),
KBN10P05231
(ST451),
phage-antibiotic
synergy.
Five
antibiotics
tested
following
concentration:
meropenem
(0.25-512
µg/mL);
colistin,
tigecycline,
rifampicin
(0.25-256
ampicillin/sulbactam
(0.25/0.125-512/256
µg/mL).
vitro
effect
verified
through
an
vivo
mouse
infection
model.
demonstrated
90%
adsorption
cells
1
min,
20
min
latent
period,
burst
size
114
PFU/cell.
Experiments
combining
pronounced
tigecycline
rifampicin.
In
model
infected
group
treated
(100
μg/mL)
(MOI
1)
achieved
100%
survival
rate-a
significant
improvement
over
phage-only
treatment
(8.3%
rate)
or
antibiotic-only
(25%
groups.
bacteriophage
excellent
synergy
rifampicin,
suggesting
potential
candidates
combination
therapy
treating
infections.
Viruses,
Год журнала:
2023,
Номер
15(1), С. 231 - 231
Опубликована: Янв. 13, 2023
Infections
with
the
opportunistic
Gram-negative
bacterium
Acinetobacter
baumannii
pose
a
serious
threat
today,
which
is
aggravated
by
growing
problem
of
multi-drug
resistance
among
bacteria,
caused
overuse
antibiotics.
Treatment
infections
antibiotic-resistant
A.
strains
use
phage
therapy
not
only
promising
alternative,
but
sometimes
option.
Therefore,
phages
specific
for
clinical
resistant
were
searched
in
environmental,
municipal,
and
hospital
wastewater
samples
collected
from
different
locations
Poland.
The
conducted
research
allowed
us
to
determine
biological
properties
morphology
tested
phages.
As
result
our
research,
12
baumannii,
11
turned
out
be
temperate
one
lytic,
isolated.
Their
lytic
spectra
ranged
75%.
plaques
formed
most
small
transparent,
while
them
relatively
large
clearly
marked
‘halo’
effect.
Based
on
Transmission
Electron
Microscopy
(TEM),
have
been
classified
as
siphoviruses
(only
was
podovirus).
All
icosahedral
capsid
symmetry,
long
tail.
Optimal
multiplicity
(MOIs)
adsorption
rate
also
determined.
MOI
values
varied
depending
phage—from
0.001
10.
similarities
known
bacteriophages,
baumannii-specific
proposed
belong
Beijerinckvirinae
Junivirinae
subfamilies.
This
study
provides
an
additional
tool
fight
against
this
important
pathogen
may
boost
interest
alternative
supplement
current
Microbiology Spectrum,
Год журнала:
2023,
Номер
11(1)
Опубликована: Янв. 18, 2023
The
type
of
capsular
polysaccharide
(CPS)
on
the
cell
surface
Acinetobacter
baumannii
can
determine
specificity
lytic
bacteriophage
under
consideration
for
therapeutic
use.
Here,
we
report
isolation
a
phage
an
extensively
antibiotic
resistant
ST2
A.
isolate
AB5001
that
carries
KL3
CPS
biosynthesis
gene
cluster
predicting
K3-type
CPS.
As
did
not
infect
isolates
carrying
or
KL22
and
known
to
produce
K3
CPS,
structure
isolated
from
was
determined.
produced
variant
form,
K3-v1,
lacks
β-d-GlсpNAc
side
chain
attached
d-Galp
residue
in
structure.
Inspection
sequence
genomes
other
phage-susceptible
with
locus
revealed
single-base
deletions
gtr6,
causing
loss
Gtr6
glycosyltransferase
adds
missing
d-GlсpNAc
Hence,
presence
this
sugar
profoundly
restricts
ability
digest
41-kb
linear
double-stranded
DNA
(dsDNA)
genome
identical
K37-producing
thus
named
APK37.1.
APK37.1
also
infected
KL116.
Consistent
this,
K3-v1
resembles
K37
K116
structures.
is
Friunavirus
belonging
Autographiviridae
family.
phage-encoded
tail
spike
depolymerase
DpoAPK37.1
closely
related
Dpo
encoded
by
sequenced
Friunaviruses,
including
APK37
APK116.
IMPORTANCE
Lytic
have
potential
treatment
otherwise
untreatable
antibiotic-resistant
bacteria.
For
baumannii,
most
exhibit
surface.
However,
resistance
arise
via
mutations
genes
abolish
receptor.
show
result
alteration
final
rather
than
deletion
capsule
layer
hence
affect
newly
reported
podophage
strains
producing
Apmis,
Год журнала:
2024,
Номер
132(5), С. 317 - 335
Опубликована: Март 5, 2024
Acinetobacter
baumannii
(
A.
)
is
a
Gram‐negative,
nonmotile,
and
aerobic
bacillus
emerged
as
superbug,
due
to
increasing
the
possibility
of
infection
accelerating
rates
antimicrobial
agents.
It
recognized
nosocomial
pathogen
its
ability
form
biofilms.
These
biofilms
serve
defensive
barrier,
increase
antibiotic
resistance,
make
treatment
more
difficult.
As
result,
current
situation
necessitates
rapid
emergence
novel
therapeutic
approaches
ensure
successful
outcomes.
This
review
explores
intricate
relationship
between
biofilm
formation
resistance
in
,
emphasizing
role
key
virulence
factors
quorum
sensing
(QS)
mechanisms
that
will
lead
infections
facilitate
insight
into
developing
innovative
method
control
infections.
Furthermore,
article
looks
promising
for
preventing
on
medically
important
surfaces
potential
methods
eliminating
preformed
biofilms,
which
can
address
biofilm‐associated
Modern
advances
emerging
options
such
peptide
(AMPs),
nanoparticles
(NPs),
bacteriophage
therapy,
photodynamic
therapy
(PDT),
other
inhibitors
assist
readers
understand
landscape
future
prospects
effectively
treating
LWT,
Год журнала:
2024,
Номер
200, С. 116153 - 116153
Опубликована: Май 1, 2024
The
rise
and
dissemination
of
colistin-resistant
Escherichia
coli
harboring
mcr-1
has
become
a
global
health
threat.
Bacteriophage
(Phage)
been
considered
as
an
alternative
to
antibiotics
in
the
treatment
antibiotic-resistant
bacteria.
Here,
we
report
effective
control
retail
raw
chicken
using
phage
cocktail.
Three
novel
phages,
named
HEMP1,
HEMP4,
HEMP5,
were
isolated
from
environmental
samples
E.
host
Morphological
genomic
analysis
revealed
that
HEMP1
HEMP5
have
Myovirus-like
morphology,
while
HEMP4
Podovirus-like
without
any
known
genes
associated
with
lysogeny
virulence.
These
phages
exhibited
high
stability
across
wide
temperatures
pH
levels
showed
rapid
adsorption
their
strain.
cocktail,
composed
three
effectively
suppressed
growth
controlled
biofilm
formation
mcr-1.
Moreover,
cocktail
significantly
inhibited
bacteria
on
meat
at
room
(25°C)
refrigeration
(4°C)
temperatures.
results
indicate
could
serve
biological
method
for
strains
food
industry.