Antimicrobial and Ecological Potential of Chlorellaceae and Scenedesmaceae with a Focus on Wastewater Treatment and Industry
Fermentation,
Journal Year:
2024,
Volume and Issue:
10(7), P. 341 - 341
Published: June 28, 2024
A
complex
evaluation
of
antimicrobial
activities
microalgae,
including
those
relevant
to
wastewater
treatment
(WWT),
in
light
the
integrated
biorefinery
concept,
is
performed.
An
example
this
concept
linking
a
commercial
microalgal
system
plants,
factories,
or
farms
that
emit
polluted
(WW).
The
microalgae
would
not
only
metabolize
pollutants—such
as
nitrogen
(N)
and
phosphorus
(P)—from
WW,
thus
fueling
their
biomass,
but
they
exert
an
antibacterial
effect
against
pathogenic
bacteria
there.
biomass
then
could
be
harvested
used
for
biofertilizers,
biofuels,
bioplastics
might
possibly
utilized
animal
feed,
other
pharmaceutical
agents.
large
amount
research
on
activity
WWT
potential
focuses
families
Chlorellaceae
Scenedesmaceae,
which
are
also
some
most
commercially
strains
microalgae.
For
reason,
species
chosen
current
review.
Furthermore,
increasing
resistance
necessitates
search
antibiotic
alternatives,
antifungal
Scenedesmaceae
very
promising.
Microalgae
rich
compounds
like
polyunsaturated
fatty
acids
(PUFAs),
polysaccharides,
carotenoids,
proteins,
etc.,
extracts
possess
effects.
vitro
has
varied
broad
range
from
low
strong
no
effect.
Several
have
fulfilled
criteria
outstanding
high
activity,
especially
C.
vulgaris
spp.,
with
equal
better
than
control
antibiotics.
There
were
several
minimum
inhibitory
concentrations
(MIC)
below
80
µg/mL
even
10
1.5
µg/mL;
had
inhibition
zones
(IZ)
over
30
mm,
48
mm.
In
vivo
results
promising
scarce,
all
warrants
further
situ
studies—from
models
clinical
environmental
trials.
Altogether,
important
data
circle
economy,
urgent
necessity
decrease
CO2
emissions
fight
climate
change,
curb
harmful
influence
future
pandemics
presented.
This
review
paves
way
utilizing
total
system.
Language: Английский
Integrated assessment of the elimination of particle-associated fecal indicators in algal–bacterial granule photobioreactors
Environmental Science Water Research & Technology,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
Two
photo-sequencing
batch
reactors
(PSBR)
fed
with
real
wastewater
were
evaluated
to
understand
the
elimination
and
particle
association
of
fecal
indicator
bacteria
(FIB)
coliphages.
Language: Английский
Application of microbial pigments in the pharmaceutical industry: current status and opportunities
Archives of Microbiology,
Journal Year:
2025,
Volume and Issue:
207(5)
Published: March 31, 2025
Language: Английский
Integrated Assessment of the Impact of Airflow Rates on the Particle Associated Fecal Indicators Removal for Algal-Bacterial Granular Photobioreactors
Published: Jan. 1, 2024
Two
photo-sequencing
batch
reactors
fed
with
real
wastewater
were
evaluated
to
understand
the
impact
of
airflow
rate
on
elimination
and
particle
association
fecal
indicator
bacteria
(FIB)
coliphages.
The
average
log10
removal
E.
coli
Enterococcus
spp.
3.2
2.9,
respectively,
for
low
reactor
2.8
2.7,
high
reactor.
F-specific
somatic
coliphages
2.9
2.5
3.1
FIB
had
a
maximum
particles
20-0.45μm
(46.1-63.3%)
while
coliphage
highest
0.45-0.03μm
(44.7-51.2%).
dynamic
adaptations
in
microbial
community
structure
(16S
rRNA
gene)
also
investigated
during
operation
period.
Genera
involved
nutrient
removal,
such
as
Thauer
spp.,
Nitrospira
detected
across
samples.
Outcomes
reveal
efficiency
photobioreactors
removing
pathogen
indicators
from
wastewater.
Language: Английский
A Mini Review on Biotechnological Potentials of Bioactive Compounds and Bioproducts Isolated from Cyanobacteria
Acta Biologica Marisiensis,
Journal Year:
2023,
Volume and Issue:
6(2), P. 62 - 86
Published: Dec. 1, 2023
Abstract
Cyanobacteria
are
well-distributed,
because
of
their
ability
to
acclimate
various
environments.
Recently,
cyanobacteria
have
received
more
research
attention
due
increasing
pollution
problems
and
global
warming.
They
many
potential
applications
in
the
biotechnology
sectors
such
as
pharmaceuticals,
bioplastics
production,
cosmetics.
produce
biologically
active
compounds
that
utilized
anti-inflammatory,
antiviral,
antibacterial,
antifungal
agents.
The
bioactive
metabolites
extracted
from
include
alkaloids,
fatty
acids,
lipopeptides,
amides.
In
this
minireview,
some
biotechnical
summarized
provide
an
account
recent
advancements
research.
Language: Английский