Nanoscale,
Journal Year:
2021,
Volume and Issue:
13(39), P. 16769 - 16780
Published: Jan. 1, 2021
The
Rashba
effect
has
been
proposed
to
give
rise
a
bright
exciton
ground
state
in
halide
perovskite
nanocrystals
(NCs),
resulting
very
fast
radiative
recombination
at
room
temperature
and
extremely
low
temperature.
In
this
paper
we
find
the
dispersion
of
"Rashba
exciton",
i.e.,
whose
bulk
reflects
large
spin-orbit
terms
conduction
valence
bands
thus
minima
non-zero
quasi-momenta.
Placing
excitonsin
quasi-2D
cylindrical
quantum
dots,
calculate
size-dependent
levels
confined
excitons
their
oscillator
transition
strengths.
We
consider
implications
model
for
two-dimensional
hybrid
organic-inorganic
perovskites,
discuss
generalizations
3D
NCs,
establish
criteria
under
which
could
be
realized.
Biomarker Research,
Journal Year:
2022,
Volume and Issue:
10(1)
Published: Aug. 12, 2022
Circulating
tumor
cells
(CTCs)
are
that
shed
from
a
primary
and
travel
through
the
bloodstream.
Studying
functional
molecular
characteristics
of
CTCs
may
provide
in-depth
knowledge
regarding
highly
lethal
diseases.
Researchers
working
to
design
devices
develop
analytical
methods
can
capture
detect
in
whole
blood
cancer
patients
with
improved
sensitivity
specificity.
Techniques
using
samples
utilize
physical
prosperity,
immunoaffinity
or
combination
above
positive
negative
enrichment
during
separation.
Further
analysis
is
helpful
monitoring,
efficacy
evaluation
designing
targeted
treatment
methods.
Although
many
advances
have
been
achieved
detection
characterization
CTCs,
several
challenges
still
exist
limit
current
use
this
burgeoning
diagnostic
approach.
In
review,
brief
summary
biological
presented.
We
focus
on
existing
CTC
potential
clinical
implications
CTCs.
also
put
forward
our
own
views
future
development
direction
Signal Transduction and Targeted Therapy,
Journal Year:
2024,
Volume and Issue:
9(1)
Published: Sept. 2, 2024
Abstract
The
primary
reason
for
high
mortality
rates
among
cancer
patients
is
metastasis,
where
tumor
cells
migrate
through
the
bloodstream
from
original
site
to
other
parts
of
body.
Recent
advancements
in
technology
have
significantly
enhanced
our
comprehension
mechanisms
behind
bloodborne
spread
circulating
(CTCs).
One
critical
process,
DNA
methylation,
regulates
gene
expression
and
chromosome
stability,
thus
maintaining
dynamic
equilibrium
Global
hypomethylation
locus-specific
hypermethylation
are
examples
changes
methylation
patterns
that
pivotal
carcinogenesis.
This
comprehensive
review
first
provides
an
overview
various
processes
contribute
formation
CTCs,
including
epithelial-mesenchymal
transition
(EMT),
immune
surveillance,
colonization.
We
then
conduct
in-depth
analysis
how
modifications
within
CTCs
impact
each
these
stages
during
CTC
dissemination.
Furthermore,
we
explored
potential
clinical
implications
with
cancer.
By
understanding
epigenetic
modifications,
can
gain
insights
into
metastatic
process
identify
new
biomarkers
early
detection,
prognosis,
targeted
therapies.
aims
bridge
gap
between
basic
research
application,
highlighting
significance
context
metastasis
offering
avenues
improving
patient
outcomes.
British Journal of Cancer,
Journal Year:
2022,
Volume and Issue:
127(5), P. 800 - 810
Published: April 28, 2022
Abstract
Metastasis
formation
is
the
main
cause
of
cancer-related
death
in
patients
with
solid
tumours.
At
beginning
this
process,
cancer
cells
escape
from
primary
tumour
to
blood
circulation
where
they
become
circulating
(CTCs).
Only
a
small
subgroup
CTCs
will
survive
during
harsh
journey
and
colonise
distant
sites.
The
in-depth
analysis
these
metastasis-competent
very
challenging
because
their
extremely
low
concentration
peripheral
blood.
So
far,
only
few
groups
managed
expand
vitro
vivo
be
used
as
models
for
large-scale
descriptive
functional
analyses
CTCs.
These
have
shown
already
high
variability
complexity
metastatic
cascade
cancer,
open
new
avenue
development
diagnostic
therapeutic
approaches.
Bioengineering,
Journal Year:
2023,
Volume and Issue:
10(7), P. 857 - 857
Published: July 19, 2023
Stem
cells
hold
promise
in
regenerative
medicine
due
to
their
ability
proliferate
and
differentiate
into
various
cell
types.
However,
self-renewal
multipotency
also
raise
concerns
about
tumorigenicity
during
post-therapy.
Indeed,
multiple
studies
have
reported
the
presence
of
stem
cell-derived
tumors
animal
models
clinical
administrations.
Therefore,
assessment
is
crucial
evaluating
safety
therapeutic
products.
Ideally,
needs
be
performed
rapidly,
sensitively,
cost-effectively,
scalable.
This
article
reviews
approaches
for
assessing
tumorigenicity,
including
models,
soft
agar
culture,
PCR,
flow
cytometry,
microfluidics.
Each
method
has
its
advantages
limitations.
The
selection
assay
depends
on
specific
study
stage
development
product.
Combining
assays
may
provide
a
more
comprehensive
evaluation
tumorigenicity.
Future
developments
should
focus
optimization
standardization
microfluidics-based
methods,
as
well
integration
single
platform
efficient
BMC Biology,
Journal Year:
2022,
Volume and Issue:
20(1)
Published: June 15, 2022
Abstract
Background
Circadian
rhythms
are
important
for
all
aspects
of
biology;
virtually
every
aspect
biological
function
varies
according
to
time
day.
Although
this
is
well
known,
variation
across
the
day
also
often
ignored
in
design
and
reporting
research.
For
review,
we
analyzed
top
50
cited
papers
10
major
domains
sciences
calendar
year
2015.
We
repeated
analysis
2019,
hypothesizing
that
awarding
a
Nobel
Prize
2017
achievements
field
circadian
biology
would
highlight
importance
scientists
many
disciplines,
improve
time-of-day
reporting.
Results
Our
analyses
these
1000
empirical
papers,
however,
revealed
most
failed
include
sufficient
temporal
details
when
describing
experimental
methods
few
systematic
differences
existed
between
2015
2019.
Overall,
only
6.1%
reports
included
information
about
measures
manipulations
permit
replication.
Conclusions
defining
feature
systems,
knowing
systems
evaluated
fundamentally
information.
Failing
account
hampers
reproducibility
laboratories,
complicates
interpretation
results,
reduces
value
data
based
predominantly
on
nocturnal
animals
extrapolating
diurnal
humans.
Trends in cancer,
Journal Year:
2023,
Volume and Issue:
10(3), P. 196 - 207
Published: Nov. 23, 2023
Circadian
timekeeping
mechanisms
and
cell
cycle
regulation
share
thematic
biological
principles
in
responding
to
signals,
repairing
cellular
damage,
coordinating
metabolism,
allocating
resources
for
optimal
function.
Recent
studies
show
interactions
between
regulators
circadian
clock
components,
offering
insights
into
potential
cancer
treatment
approaches.
Understanding
control
of
metabolism
informs
timing
therapies
reduce
adverse
effects
enhance
efficacy.
adaptability
lifestyle
factors,
such
as
activity,
sleep,
nutrition
sheds
light
on
their
impact
cancer.
Leveraging
regulatory
prevention
care
is
vital,
most
risk
stems
from
modifiable
lifestyles.
Monitoring
factors
aids
assessment
targeted
interventions
across
the
continuum.
Cells,
Journal Year:
2023,
Volume and Issue:
12(16), P. 2068 - 2068
Published: Aug. 15, 2023
Although
the
impact
of
circadian
timing
on
immunotherapy
has
yet
to
be
integrated
into
clinical
practice,
chronoimmunotherapy
is
an
emerging
and
promising
field
as
oscillations
are
observed
in
immune
cell
numbers
well
expression
targets,
e.g.,
programmed
death
protein-1
its
ligand
1.
Concurrent
retrospective
studies
suggest
that
morning
infusions
may
lead
higher
effectiveness
checkpoint
inhibitors
melanoma,
non-small
lung
cancer,
kidney
cancer.
This
paper
discusses
results
a
study
(2016–2022)
exploring
infusion
outcomes
all
73
patients
with
stage
IV
melanoma
receiving
at
particular
medical
center.
While
median
overall
survival
(OS)
was
24.2
months
(95%
confidence
interval
[CI]
9.04–39.8),
for
follow-up
15.3
months,
our
show
having
more
than
75%
afternoon
shorter
OS
(14.9
vs.
38.1
months;
hazard
ratio
0.45
[CI
0.23–0.86];
p
<
0.01)
expressive
impacts
subgroups:
women,
older
patients,
lower
tumor
burden
outset
immunotherapy.
Our
findings
highlight
potential
benefits
validation
prospective
translational
randomized
studies.
PNAS Nexus,
Journal Year:
2024,
Volume and Issue:
3(2)
Published: Jan. 25, 2024
Abstract
Self-sufficiency
(autonomy)
in
growth
signaling,
the
earliest
recognized
hallmark
of
cancer,
is
fueled
by
tumor
cell's
ability
to
“secrete-and-sense”
factors
(GFs);
this
translates
into
cell
survival
and
proliferation
that
self-sustained
autocrine/paracrine
secretion.
A
Golgi-localized
circuitry
comprised
two
GTPase
switches
has
recently
been
implicated
orchestration
signaling
autonomy.
Using
breast
cancer
cells
are
either
endowed
or
impaired
(by
gene
editing)
their
assemble
for
autonomy,
here
we
define
transcriptome,
proteome,
phenome
such
an
autonomous
state,
unravel
its
role
during
progression.
We
show
autonomy
associated
with
enhanced
molecular
programs
stemness,
proliferation,
epithelial-mesenchymal
plasticity.
Autonomy
both
necessary
sufficient
anchorage-independent
GF-restricted
resistance
anticancer
drugs
required
metastatic
Transcriptomic
proteomic
studies
associated,
a
surprising
degree
specificity,
epidermal
factor
receptor
(EGFR)/ErbB
signaling.
Derivation
expression
signature
revealed
uniquely
induced
circulating
(CTCs),
harshest
phase
life
when
it
deprived
biologically
available
(EGF).
also
CTCs
tracks
therapeutic
response
prognosticates
outcome.
These
data
support
multiple
processes
essential
blood-borne
dissemination
human
cancer.