International Journal of Biological Macromolecules,
Journal Year:
2023,
Volume and Issue:
242, P. 124968 - 124968
Published: May 20, 2023
Lignin
modifying
enzymes
(LMEs)
have
gained
widespread
recognition
in
depolymerization
of
lignin
polymers
by
oxidative
cleavage.
LMEs
are
a
robust
class
biocatalysts
that
include
peroxidase
(LiP),
manganese
(MnP),
versatile
(VP),
laccase
(LAC),
and
dye-decolorizing
(DyP).
Members
the
family
act
on
phenolic,
non-phenolic
substrates
been
widely
researched
for
valorization
lignin,
cleavage
xenobiotics
phenolics.
implementation
biotechnological
industrial
sectors
has
sparked
significant
attention,
although
its
potential
future
applications
remain
underexploited.
To
understand
mechanism
sustainable
pollution
mitigation,
several
studies
undertaken
to
assess
feasibility
correlating
diverse
pollutants
binding
intermolecular
interactions
at
molecular
level.
However,
further
investigation
is
required
fully
comprehend
underlying
mechanism.
In
this
review
we
presented
key
structural
functional
features
LMEs,
including
computational
aspects,
as
well
advanced
biotechnology
research.
Furthermore,
concluding
remarks
look
ahead,
use
coupled
with
framework,
built
upon
artificial
intelligence
(AI)
machine
learning
(ML),
emphasized
recent
milestone
environmental
Current Pollution Reports,
Journal Year:
2021,
Volume and Issue:
7(2), P. 167 - 179
Published: April 20, 2021
Abstract
Purpose
of
Review
In
the
presented
review,
we
have
summarized
recent
achievements
on
use
immobilized
oxidoreductases
for
biodegradation
hazardous
organic
pollutants
including
mainly
dyes,
pharmaceuticals,
phenols,
and
bisphenols.
order
to
facilitate
process
optimization
achievement
high
removal
rates,
effect
various
conditions
has
been
highlighted
discussed.
Recent
Findings
Current
reports
clearly
show
that
are
capable
efficient
conversion
pollutants,
usually
reaching
over
90%
rate.
Further,
enzymes
showed
great
recyclability
potential,
allowing
their
reuse
in
numerous
catalytic
cycles.
Summary
Collected
data
indicates
as
an
biocatalytic
tools
phenolic
compounds,
making
them
a
promising
option
future
water
purification.
Data
shows,
however,
both
immobilization
affect
efficiency;
therefore,
is
required
achieve
rates.
Nevertheless,
demonstrated
trends
several
issues
be
solved
near-future
research,
large-scale
application
wastewater
treatment.
Ecologies,
Journal Year:
2022,
Volume and Issue:
3(2), P. 206 - 224
Published: June 12, 2022
Micro-pollutants
especially
estrogens,
progesterone,
androgens,
glucocorticoids,
and
growth
hormones,
are
biological
chemical
impurities
that
find
their
way
into
natural
aquatic
environments
in
trace
quantities
(ng/L),
possess
a
significant
disturbance
by
impacting
human
life.
Due
to
the
progress
analysis
detection
techniques,
these
elements
have
been
observed
quantified
several
studies.
However,
as
result
of
limited
methods
management
technology,
adverse
effects
micro-pollutants
surface
coastal
water
is
largely
unknown.
For
this
study,
compounds
hormones
selected
according
high
frequent
value
environmental
waters.
The
concentration
steroid
ranges
from
0.1–196
ng/L
(estrogens),
less
than
0.1
439
(progesterone),
0.06–86
±
2
(androgens),
433
(glucocorticoids),
26.6
ng/g
100
(growth
hormones),
percentage
removal
efficiency
varies
10%
99%,
measurement
was
found
be
very
low.
Here,
we
report
future
studies
necessary
detect
entry
routes
water,
well
explore
technological
approaches
which
able
resolve
issue
permanently.
Frontiers in Environmental Science,
Journal Year:
2022,
Volume and Issue:
10
Published: Dec. 16, 2022
Pharmaceuticals
are
essential
for
human
health,
but
they
become
an
environmental
concern
when
entering
the
environment
which
occurs
residues
excreted
after
consumption
or
unused
pharmaceuticals
discarded
improperly.
Although
there
no
developed
detection
methods
all
that
reach
ecosystem,
certain
groups
have
been
proven
to
cause
adverse
effects
on
ecosystems,
including
increased
mortality
in
aquatic
species
and
changes
physiology,
behavior,
reproduction.
Particular
attention
is
devoted
these
of
their
impact.
In
this
review,
authors
suggest
measures
reduction
environment,
with
a
strong
emphasis
prevention.
Various
policy
interventions
recommended
across
lifecycle
source-directed,
user-orientated,
waste
management
measures,
prevent
creation
household
pharmaceutical
ensure
environmentally
friendly
ways
disposal.
Preventive
include
rational
consumption,
prescribing
greener
drugs,
designing
benign
easily
biodegradable,
improved
disease
prevention,
personalized
medicine,
enhanced
dimensioning
pack
sizes,
marketplaces
redistribution
pharmaceuticals.
The
next
step
unavoidable
so
proper
collection
disposal
utmost
importance.
Finally,
educating
health
professionals
public
partnership
between
healthcare
scientists
vital
significance
stages
pharmaceuticals’
lifecycle.
Minimalization
level
will
benefit
life.
RSC Advances,
Journal Year:
2023,
Volume and Issue:
13(33), P. 22675 - 22697
Published: Jan. 1, 2023
Steroidal
estrogens
(SEs)
pose
a
significant
threat
to
the
aquatic
environment
in
this
era
because
they
interfere
with
human
body's
normal
metabolic
functions,
calls
for
their
sequestration.