Advanced Drug Delivery Reviews,
Journal Year:
2023,
Volume and Issue:
200, P. 115028 - 115028
Published: July 28, 2023
Lipid-based
nanocarriers
have
been
extensively
investigated
for
their
application
in
drug
delivery.
Particularly,
liposomes
are
now
clinically
established
treating
various
diseases
such
as
fungal
infections.
In
contrast,
extracellular
vesicles
(EVs)
-
small
cell-derived
nanoparticles
involved
cellular
communication
just
recently
sparked
interest
carriers
but
development
is
still
at
the
preclinical
level.
To
drive
this
further,
methods
and
technologies
exploited
context
of
liposome
research
should
be
applied
domain
EVs
to
facilitate
accelerate
clinical
translation.
One
crucial
steps
EV-based
therapeutics
designing
them
proper
dosage
forms
specific
applications.
This
review
offers
a
comprehensive
overview
state-of-the-art
polysaccharide-based
hydrogel
platforms
designed
artificial
natural
with
delivery
skin.
We
discuss
physicochemical
biological
properties
try
create
sound
basis
optimization
EV-embedded
hydrogels
versatile
therapeutic
avenues.
Polymers,
Journal Year:
2022,
Volume and Issue:
14(16), P. 3335 - 3335
Published: Aug. 16, 2022
In
recent
years,
cellulose
has
attracted
much
attention
because
of
its
excellent
properties,
such
as
hydrophilicity,
mechanical
biodegradability,
biocompatibility,
low
cost
and
toxicity.
addition,
derivatives
contain
abundant
hydrophilic
functional
groups
(such
hydroxyl,
carboxyl
aldehyde
groups),
which
are
good
raw
materials
for
synthesizing
biocompatible
hydrogels.
this
paper,
the
application
prospects
derivatives-based
hydrogels
in
biomedical
tissue
engineering
summarized
discussed
through
analysis
research.
Firstly,
we
discuss
structure
properties
cellulose,
nano
celluloses
(NC)
from
different
sources
(including
nanocrystals
(CNC),
nanofibrils
(CNF)
bacterial
(BNC))
ethers
esters)
obtained
by
modification
methods.
Then,
preparation
methods
physical
chemical
described,
respectively.
The
cellulose-based
a
scaffold
(skin,
bone
cartilage)
field
is
introduced.
Finally,
challenges
summarized.
Gels,
Journal Year:
2023,
Volume and Issue:
9(2), P. 161 - 161
Published: Feb. 17, 2023
Polymer
gels
are
a
valuable
class
of
polymeric
materials
that
have
recently
attracted
significant
interest
due
to
the
exceptional
properties
such
as
versatility,
soft-structure,
flexibility
and
stimuli-responsive,
biodegradability,
biocompatibility.
Based
on
their
properties,
polymer
can
be
used
in
wide
range
applications:
food
industry,
agriculture,
biomedical,
biosensors.
The
utilization
different
medical
industrial
applications
requires
better
understanding
formation
process,
factors
which
affect
gel’s
stability,
structure-rheological
relationship.
present
review
aims
give
an
overview
gels,
classification
gels’
highlight
important
features,
recent
development
biomedical
applications.
Several
perspectives
future
advancement
hydrogel
offered.
Green Chemistry,
Journal Year:
2023,
Volume and Issue:
25(14), P. 5338 - 5389
Published: Jan. 1, 2023
The
past
two
decades
have
seen
fruitful
efforts
in
shaping
cellulose
into
functional
materials
using
ionic
liquids.
This
Tutorial
Review
aims
at
providing
guidance
from
a
science
perspective
to
stimulate
more
research
this
field.
International Journal of Molecular Sciences,
Journal Year:
2023,
Volume and Issue:
24(3), P. 2630 - 2630
Published: Jan. 30, 2023
Polysaccharides
are
one
of
the
most
abundant
natural
polymers
and
their
molecular
structure
influences
many
crucial
characteristics—inter
alia
hydrophobicity,
mechanical,
physicochemical
properties.
Vibrational
spectroscopic
techniques,
such
as
infrared
(IR)
Raman
spectroscopies
excellent
tools
to
study
arrangement
during
polymerization
cross-linking
processes.
This
review
paper
summarizes
application
above-mentioned
analytical
methods
track
polysaccharides,
cellulose,
hemicellulose,
glucan,
starch,
chitosan,
dextran,
derivatives,
which
affects
industrial
medical
use.
Applied Sciences,
Journal Year:
2024,
Volume and Issue:
14(4), P. 1383 - 1383
Published: Feb. 8, 2024
Nowadays,
drug
delivery
has
an
important
role
in
medical
therapy.
The
use
of
biopolymers
developing
systems
(DDSs)
is
increasingly
attracting
attention
due
to
their
remarkable
and
numerous
advantages,
contrast
conventional
polymers.
Biopolymers
have
many
advantages
(biodegradability,
biocompatibility,
renewability,
affordability,
availability),
which
are
extremely
for
materials
with
applications
the
biomedical
field.
Additionally,
appropriate
when
they
improve
functioning
a
number
positive
effects
on
human
life.
Therefore,
this
review
presents
most
used
applications,
especially
delivery.
In
addition,
by
combining
different
DDSs
tailored
functional
properties
(e.g.,
physical
properties,
biodegradability)
can
be
developed.
This
summarizes
provides
data
progress
research
(chitosan,
alginate,
starch,
cellulose,
albumin,
silk
fibroin,
collagen,
gelatin)
DDSs,
preparation,
mechanism
action.