Materials Today Bio,
Journal Year:
2024,
Volume and Issue:
27, P. 101134 - 101134
Published: June 20, 2024
Biomimetic
functionalized
metal-organic
frameworks
(Fn-MOFs)
represent
a
cutting-edge
approach
in
the
realm
of
cancer
vaccines.
These
multifunctional
agents,
inspired
by
biological
systems,
offer
unprecedented
opportunities
for
development
next-generation
The
vast
surface
area,
tunable
pore
size,
and
diverse
chemistry
MOFs
provide
versatile
scaffold
encapsulation
protection
antigenic
components,
crucial
vaccine
stability
delivery.
This
work
delves
into
innovative
design
application
Fn-MOFs,
highlighting
their
role
as
carriers
immune
enhancement
potential
to
revolutionize
By
mimicking
natural
processes,
with
ability
be
myriad
chemical
entities,
exhibit
superior
biocompatibility
stimuli-responsive
behavior
facilitate
targeted
delivery
tumor
sites.
review
encapsulates
latest
advancements
Fn-MOF
technology,
from
synthesis
modification
integration
combination
therapies.
It
underscores
significance
biomimetic
approaches
overcoming
current
challenges
development,
such
antigen
evasion.
leveraging
nature
this
paves
way
strategies
vaccines,
aiming
induce
potent
long-lasting
responses
against
malignancies.
ACS Nano,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 6, 2025
C8
aromatic
isomers,
namely
para-xylene
(PX),
meta-xylene
(MX),
ortho-xylene
(OX),
and
ethylbenzene
(EB),
are
essential
industrial
chemicals
with
a
wide
range
of
applications.
The
effective
separation
these
isomers
is
crucial
across
various
sectors,
including
petrochemicals,
pharmaceuticals,
polymer
manufacturing.
Traditional
methods,
such
as
distillation
solvent
extraction,
energy-intensive.
In
contrast,
selective
adsorption
has
emerged
an
efficient
technique
for
separating
in
which
nanospace
engineering
offers
promising
strategies
to
address
existing
challenges
by
precisely
tailoring
the
structures
properties
porous
materials
at
nanoscale.
This
review
explores
application
modifying
pore
characteristics
diverse
materials─including
zeolites,
metal-organic
frameworks
(MOFs),
covalent
organic
(COFs),
other
substances─to
enhance
their
performance
isomer
separation.
Additionally,
this
provides
comprehensive
summary
how
different
techniques,
temperature
fluctuations,
enthalpy/entropy
considerations,
desorption
processes
influence
efficiency.
It
also
presents
forward-looking
perspective
on
remaining
potential
opportunities
advancing
Electronic
grade
hydrogen
peroxide
plays
a
crucial
role
in
the
fabrication
of
large-scale
integrated
circuits.
However,
prepared
by
anthraquinone
method
contains
impurities
such
as
lead
ions
(Pb2+)
and
phosphate,
which
can
seriously
affect
yield
circuit.
Traditional
adsorbent
materials
have
difficulty
solving
problem
simultaneous
adsorption
trace
anions
cations
due
to
single
site
poor
kinetics.
In
this
study,
UiO-66-NH2
was
introducing
-NH2
group
on
terephthalic
acid
ligand,
series
hybrid
matrix
hollow
fiber
membranes
with
different
contents
were
loading
it
polysulfone
(PSF).
This
initiative
not
only
improved
pore
size
water
flux
but
also
enhanced
removal
efficiency
from
solution,
thereby
facilitating
practical
application.
Among
them,
[email protected]
showed
best
phosphate
capacities
3.099
2.160
mg
g-1
reached
67.1
60.1%,
fully
confirms
practicability
purification
electronic
chemicals.
work
innovatively
proposes
that
UiO-66-NH2@PSF
great
potential
adsorbents
for
efficient
solvents.
ChemEngineering,
Journal Year:
2025,
Volume and Issue:
9(2), P. 24 - 24
Published: Feb. 24, 2025
Asthma
and
allergic
rhinitis
(AR)
stand
as
prevalent
chronic
ailments
impacting
children
within
the
United
States.
It
is
approximated
that
many
40%
of
American
exhibit
symptoms
indicative
AR,
a
condition
which,
if
inadequately
managed,
could
potentially
lead
to
onset
additional
illnesses
such
asthma,
rhinosinusitis,
conjunctivitis,
otitis
media.
We
have
devised
universal
synthetic
pathway
encapsulate
small
molecules
montelukast
sodium
Metal–Organic
Frameworks
(MOFs)
for
treatment
asthma
AR.
Two
distinct
Cu-MOFs,
namely
single
linker
mixed
MOFs,
were
synthesized
through
solvothermal
method
utilizing
1,4-benzenedioic
acid
(BDC)
4,4′-dipyridile
linkers.
The
Cu-MOFs
underwent
thorough
examination
employing
various
analytical
techniques
including
BET,
SEM,
FTIR,
PXRD.
These
MOFs
hold
promise
potential
vehicles
drug
delivery
applications.
Various
proportions
Cu-MOF-1
Cu-MOF-2
dispersed
alongside
sodium.
Notably,
1:1
ratio
both
exhibited
enhanced
absorption
compared
other
ratios.
Furthermore,
demonstrated
superior
overall
when
contrasted
with
Cu-MOF-1.
This
investigation
also
delves
into
release
dynamics
from
different
ratios
drug.
analysis
was
conducted
in
phosphate-buffered
saline
(PBS)
solution
pH
7.4,
absorbance
values
measured
using
UV-visible
spectrometer
at
time
intervals.
Drug
are
effectively
encapsulated
demonstrate
controlled
establishment
hydrogen
bonding
or
π–π
interactions
between
MOFs.
Despite
notable
advancements
utilization
biomedical
purposes,
enhancements
necessary
before
they
can
be
considered
viable
therapeutic
modalities.
Ultrasonics Sonochemistry,
Journal Year:
2024,
Volume and Issue:
107, P. 106912 - 106912
Published: May 17, 2024
The
United
Nations'
Sustainable
Development
Goals
(SDGs)
are
significant
in
guiding
modern
scientific
research.
In
recent
years,
scholars
have
paid
much
attention
to
MOFs
materials
as
green
materials.
However,
piezo
catalysis
of
has
not
been
widely
studied.
Piezoelectric
can
convert
mechanical
energy
into
electrical
energy,
while
effective
photocatalysts
for
removing
pollutants.
Therefore,
it
is
crucial
design
with
piezoelectric
properties
and
photosensitivity.
this
study,
sulfur-functionalized
metal-organic
frameworks
(S-MOFs)
were
prepared
using
organic
ligand
(H
ACS Applied Materials & Interfaces,
Journal Year:
2024,
Volume and Issue:
16(33), P. 43156 - 43170
Published: Aug. 12, 2024
Metal-organic
frameworks
(MOFs)
are
composite
crystalline
materials
created
through
the
coordination
of
metal
ions
and
organic
ligands.
MOFs
have
attracted
extensive
attention
in
biomedical
field
based
on
advantages
internal
porosity,
customizable
facile
surface
modification.
This
review
examines
utilization
drug
delivery
systems,
focusing
research
progress
from
aspects
coloading
intelligent
responsive
carriers,
biological
macromolecule
stabilizers,
self-driving
micro/nanomotors,
multifunctional
living
carriers.
In
addition,
current
challenges
faces
also
discussed.
The
aims
to
provide
a
reference
for
further
application
as
advanced
systems.