Unspecific peroxygenases: The pot of gold at the end of the oxyfunctionalization rainbow?
Current Opinion in Green and Sustainable Chemistry,
Journal Year:
2023,
Volume and Issue:
41, P. 100786 - 100786
Published: Feb. 16, 2023
Fungal
unspecific
peroxygenases
(UPOs)
are
among
the
most
promising
biocatalysts
in
synthetic
chemistry.
The
kaleidoscope
of
oxyfunctionalization
reactions
that
industrial
and
environmental
relevance
offer
UPOs
opportunity
to
provide
solutions
many
processes.
However,
there
important
shortcomings
must
first
be
overcome
order
convert
into
applied
biocatalysts,
which
include
their
general
poor
levels
heterologous
functional
expression,
presence
unwanted
peroxidase
activity
overoxidation
reactions,
as
well
oxidative
inactivation
provoked
by
co-substrate,
hydrogen
peroxide.
specific
engineering
these
proteins,
they
participate,
is
being
used
tackle
principal
challenges,
with
a
view
generate
portfolio
highly
active,
selective
stable
variants.
In
this
review,
we
will
discuss
some
recent
developments
true
focusing
on
different
trends
currently
followed
fascinating
field
research.
Language: Английский
Advancing the Enzymatic Removal of Antibiotics with Unspecific Peroxygenase and Vanadium Chloroperoxidase
Journal of environmental chemical engineering,
Journal Year:
2025,
Volume and Issue:
unknown, P. 115795 - 115795
Published: Feb. 1, 2025
Language: Английский
Process intensification in continuous flow biocatalysis by up and downstream processing strategies
Current Opinion in Biotechnology,
Journal Year:
2022,
Volume and Issue:
78, P. 102835 - 102835
Published: Nov. 2, 2022
In
this
review,
we
focus
on
the
holistic
continuous
enzymatic
production
and
put
special
emphasis
process
intensification
by
up-
downstream
processing
in
flow
biocatalysis.
After
a
brief
introduction,
provide
an
overview
of
current
examples
enzyme
immobilization
as
upstream
for
Thereafter,
unit
operations
strategies,
namely
(i)
liquid-liquid
extraction,
(ii)
adsorptive
processing,
(iii)
crystallization
precipitation.
Eventually,
present
our
perspectives
future
trends
research
field.
Language: Английский
From characterization to biocatalytic application of two peroxygenases from Collariella virescens and Daldinia caldariorum
Angelique Pothuizen,
No information about this author
Rosalie I. Wouters,
No information about this author
Hugo Brasselet
No information about this author
et al.
Comptes Rendus Chimie,
Journal Year:
2025,
Volume and Issue:
28(G1), P. 141 - 150
Published: Feb. 21, 2025
Language: Английский
A 3D printable synthetic hydrogel as an immobilization matrix for continuous synthesis with fungal peroxygenases
Lars‐Erik Meyer,
No information about this author
Dorottya Horváth,
No information about this author
Sonja Vaupel
No information about this author
et al.
Reaction Chemistry & Engineering,
Journal Year:
2023,
Volume and Issue:
8(5), P. 984 - 988
Published: Jan. 1, 2023
Development
of
a
novel
immobilization
strategy
using
synthetic
3D
printable
hydrogels
for
flow
biocatalysis.
Language: Английский
At-line monitoring of hydrogen peroxide released from its photocatalytic and continuous synthesis
Reaction Chemistry & Engineering,
Journal Year:
2024,
Volume and Issue:
9(4), P. 777 - 781
Published: Jan. 1, 2024
Photocatalytic
synthesis
of
H
2
O
in
a
continuous
operation
set-up
using
nitrogen-doped
carbon
nanodots
(N-CNDs)
and
simultaneous
determination
generated
.
Language: Английский
Unspecific peroxygenase immobilization in 3D-printed microfluidics: Towards tailor-made screening platforms
Catalysis Science & Technology,
Journal Year:
2024,
Volume and Issue:
14(22), P. 6496 - 6502
Published: Jan. 1, 2024
In
the
context
of
empowering
biocatalysis,
an
easy-to-develop,
reproducible,
and
easy-to-scale
biocatalytic
system
is
demonstrated
as
a
microfluidic
screening
platform.
Language: Английский
Robust Light Driven Enzymatic Oxyfunctionalization via Immobilization of Unspecific Peroxygenase
ChemSusChem,
Journal Year:
2023,
Volume and Issue:
16(23)
Published: June 26, 2023
Unspecific
peroxygenases
have
attracted
interest
in
synthetic
chemistry,
especially
for
the
oxidative
activation
of
C-H
bonds,
as
they
only
require
hydrogen
peroxide
(H2
O2
)
instead
a
cofactor.
Due
to
their
instability
even
small
amounts
H2
,
different
strategies
like
enzyme
immobilization
or
situ
production
been
developed
improve
stability
these
enzymes.
While
most
studied
separately,
combination
photocatalysis
with
immobilized
enzymes
was
recently
reported.
To
show
advantages
and
limiting
factors
photobiocatalytic
reaction,
comparison
is
made
between
free
Adjustment
critical
parameters
such
(i)
substrate
concentration,
(ii)
illumination
wavelength
(iii)
light
intensity
results
significantly
increased
stabilities
variant.
Moreover,
under
optimized
conditions
turnover
number
334,500
reached.
Language: Английский
Process intensification using immobilized enzymes
Physical Sciences Reviews,
Journal Year:
2023,
Volume and Issue:
9(8), P. 2737 - 2755
Published: May 31, 2023
Abstract
The
application
potential
of
enzymes
is
undoubtedly
very
high.
However,
despite
the
large
number
different
and
enzyme
activities,
industrial
processes
comparatively
small.
particular
challenge
often
lies
in
transferring
promising
laboratory
to
an
scale.
Here,
required
performance
parameters,
such
as
stability
or
productivity,
must
be
achieved.
On
one
hand,
this
can
achieved
by
improving
enzymes.
other
key
indicators
only
using
technical
systems
sense
process
intensification.
In
enzymatic
processes,
immobilization
means
choice
enable
processes.
aim
article
outline
most
important
methods
summarize
immobilized
Finally,
are
compared
a
case
study
with
unspecific
peroxygenase.
Language: Английский
Biocatalysis in microfluidic systems: an experimental basis for data science
Reaction Chemistry & Engineering,
Journal Year:
2024,
Volume and Issue:
9(8), P. 2028 - 2033
Published: Jan. 1, 2024
Accelerated
development
of
new
biocatalytic
processes
using
data
science
from
designed
microfluidic
experiments,
aimed
at
scale-down
exposure
enzyme
variants
to
conditions
mimicking
those
found
in
industrial
processes.
Language: Английский