Integrated Environmental Assessment and Management,
Год журнала:
2019,
Номер
15(6), С. 917 - 935
Опубликована: Июль 5, 2019
Environmental
challenges
persist
across
the
world,
including
Australasian
region
of
Oceania,
where
biodiversity
hotspots
and
unique
ecosystems
such
as
Great
Barrier
Reef
are
common.
These
systems
routinely
affected
by
multiple
stressors
from
anthropogenic
activities,
increasingly
influenced
global
megatrends
(e.g.,
food-energy-water
nexus,
demographic
transitions
to
cities)
climate
change.
Here
we
report
priority
research
questions
Global
Horizon
Scanning
Project,
which
aimed
identify,
prioritize,
advance
environmental
quality
needs
an
perspective,
within
a
context.
We
employed
transparent
inclusive
process
soliciting
key
members
Society
Toxicology
Chemistry.
Following
submission
78
questions,
20
were
identified
during
expert
workshop
in
Nelson,
New
Zealand.
covered
range
issues
relevance,
needed
more
closely
integrate
ecotoxicology
ecology
for
protection
ecosystems,
increase
flexibility
prioritizing
chemical
substances
currently
commerce,
understand
impacts
complex
mixtures
stressors,
define
ecosystem
integrity
temporary
waters.
Some
have
specific
relevance
Australasia,
particularly
uncertainties
associated
with
using
toxicity
data
exotic
species
protect
indigenous
species.
Several
related
deal
theme
how
widely
international
ecotoxicological
databases
can
be
applied
regional
ecosystems.
Other
timely
focus
on
improving
predictive
chemistry
toxicology
tools
techniques,
will
important
answer
several
here.
Another
question
raised
was
local
cultural
social
values
maintain
engagement
problem
formulation
identification
goals.
Addressing
these
challenging,
but
doing
so
promises
sustainability
Oceania
globally.
Science,
Год журнала:
2020,
Номер
367(6476), С. 388 - 392
Опубликована: Янв. 24, 2020
Chemicals
have
improved
our
quality
of
life,
but
the
resulting
environmental
pollution
has
potential
to
cause
detrimental
effects
on
humans
and
environment.
People
biota
are
chronically
exposed
thousands
chemicals
from
various
sources
through
multiple
pathways.
Environmental
chemists
toxicologists
moved
beyond
detecting
quantifying
single
characterizing
complex
mixtures
in
indoor
outdoor
environments
biological
matrices.
We
highlight
analytical
bioanalytical
approaches
isolating,
characterizing,
tracking
groups
concern
Techniques
that
combine
chemical
analysis
bioassays
facilitate
identification
pose
a
combined
risk.
The Science of The Total Environment,
Год журнала:
2021,
Номер
795, С. 148776 - 148776
Опубликована: Июль 1, 2021
Monitoring
of
chemicals
in
the
aquatic
environment
by
chemical
analysis
alone
cannot
completely
assess
and
predict
effects
on
species
ecosystems.
This
is
primarily
because
increasing
number
(unknown)
stressors
mixture
present
environment.
In
addition,
ability
ecological
indices
to
identify
underlying
causing
negative
limited.
Therefore,
additional
complementary
methods
are
needed
that
can
address
biological
a
direct
manner
provide
link
exposure,
i.e.
(eco)toxicological
tests.
(Eco)toxicological
tests
defined
as
test
systems
expose
components
(cells,
individuals,
populations,
communities)
(environmental
mixtures
of)
register
effects.
These
measure
responses
at
sub-organismal
(biomarkers
vitro
bioassays),
whole-organismal,
population,
or
community
level.
We
performed
literature
search
obtain
state-of-the-art
overview
ecotoxicological
available
for
assessing
impacts
biota
reveal
datagaps.
total,
we
included
509
biomarkers,
207
bioassays,
422
measuring
whole-organismal
level,
78
population-
community-
ecosystem-level.
Tests
level
biomarkers
were
most
abundant
invertebrates
fish,
whilst
bioassays
mostly
based
mammalian
cell
lines.
ecosystem-level
almost
missing
organisms
other
than
microorganisms
algae.
an
various
extrapolation
challenges
faced
using
data
from
these
suggest
some
forward
looking
perspectives.
Although
extrapolating
measured
relevant
protection
goals
remains
challenging,
combination
experiments
models
key
more
comprehensive
assessment
Chemical Reviews,
Год журнала:
2023,
Номер
123(17), С. 10584 - 10640
Опубликована: Авг. 2, 2023
Exposure
to
environmental
organic
pollutants
has
triggered
significant
ecological
impacts
and
adverse
health
outcomes,
which
have
been
received
substantial
increasing
attention.
The
contribution
of
unidentified
chemical
components
is
considered
as
the
most
knowledge
gap
in
understanding
combined
effects
pollutant
mixtures.
To
address
this
issue,
remarkable
analytical
breakthroughs
recently
made.
In
review,
basic
principles
on
recognition
are
overviewed.
Complementary
methodologies
(i.e.,
quantitative
structure–activity
relationship
prediction,
mass
spectrometric
nontarget
screening,
effect-directed
analysis)
experimental
platforms
briefly
described.
stages
technique
development
and/or
essential
parts
workflow
for
each
then
reviewed.
Finally,
plausible
paths
applications
future
screening
methods,
interdisciplinary
techniques
achieving
toxicant
identification,
burgeoning
strategies
risk
assessment
cocktails
discussed.
Green Chemistry,
Год журнала:
2019,
Номер
21(24), С. 6545 - 6566
Опубликована: Янв. 1, 2019
Achieving
a
sustainable
future
will
only
be
possible
through
the
intersection
of
best
science
and
technology
in
combination
with
societal,
economic,
policy,
cultural,
moral,
ethical
ecosystem.
Environmental Science & Technology,
Год журнала:
2020,
Номер
54(13), С. 8280 - 8290
Опубликована: Июнь 5, 2020
Rain
events
may
impact
the
chemical
pollution
burden
in
rivers.
Forty-four
small
streams
Germany
were
profiled
during
several
rain
for
presence
of
395
chemicals
and
five
types
mixture
effects
vitro
bioassays
(cytotoxicity;
activation
estrogen,
aryl
hydrocarbon,
peroxisome
proliferator-activated
receptors;
oxidative
stress
response).
While
these
selected
to
cover
a
wide
range
agricultural
impacts,
addition
expected
pesticides,
wastewater-derived
typical
street
runoff
detected.
The
unexpectedly
high
estrogenic
many
samples
indicated
by
wastewater
or
overflow
combined
sewer
systems.
128
water
exhibited
diversity
effect
patterns,
even
different
at
same
site.
detected
290
explained
only
fraction
(<8%)
measured
effects.
experimental
designed
mixtures
that
dominate
consistent
with
predictions
concentration
within
factor
two
94%
mixtures.
Overall,
was
much
higher
than
previously
surface
dry
weather,
often
exceeding
proposed
effect-based
trigger
values.
Environmental Science & Technology,
Год журнала:
2023,
Номер
57(9), С. 3486 - 3495
Опубликована: Фев. 24, 2023
Although
advancements
in
nontargeted
analysis
have
made
it
possible
to
detect
hundreds
of
chemical
contaminants
a
single
run,
the
current
environmental
toxicology
approaches
lag
behind,
precluding
transition
from
analytical
chemistry
efforts
health
risk
assessment.
We
herein
highlighted
recently
developed
"top-down"
bioanalytical
method,
protein
Affinity
Purification
with
Nontargeted
Analysis
(APNA),
screen
for
bioactive
at
"exposome-wide"
level.
To
achieve
this,
tagged
functional
is
employed
as
"bait"
directly
isolate
mixtures,
which
are
further
identified
by
analysis.
Advantages
this
protein-guided
approach,
including
discovery
new
ligands
well
targets
known
contaminants,
were
several
case
studies.
Encouraged
these
successful
applications,
we
proposed
framework,
i.e.,
Chemical-Protein
Interaction
Network
(eCPIN),
construct
complete
map
7
billion
binary
interactions
between
all
(>350,000)
and
human
proteins
(∼20,000)
via
APNA.
The
eCPIN
could
be
established
three
stages
through
strategically
prioritizing
∼20,000
proteins,
such
focusing
on
48
nuclear
receptors
(e.g.,
thyroid
hormone
receptors)
first
stage.
will
provide
an
unprecedented
throughput
screening
exposome-wide
level
facilitate
identification
molecular
initiating
events
proteome-wide