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cAMPthat

cAMPthat is a proprietary, innovative sensor technology designed for real-time detection and imaging of cyclic adenosine monophosphate (cAMP) levels within living cells. Developed by researchers aiming to advance cellular signaling studies, cAMPthat utilizes a genetically encoded biosensor that employs fluorescence resonance energy transfer (FRET) or fluorescence intensity changes to monitor cAMP dynamics with high sensitivity and spatial resolution.

The sensor's design typically involves the fusion of cAMP-binding domains with fluorescent proteins, enabling it to

cAMPthat's applications span neuroscience, pharmacology, and cell biology, assisting in understanding how cAMP mediates cellular responses

The technology is compatible with standard fluorescence microscopy equipment, making it accessible for laboratories seeking to

Overall, cAMPthat represents a significant advancement in the toolkit available for cellular signaling research, providing a

produce
measurable
signals
upon
cAMP
binding.
This
allows
researchers
to
visualize
cAMP
fluctuations
in
response
to
various
stimuli,
facilitating
insights
into
signal
transduction
pathways
associated
with
various
physiological
and
pathological
processes.
such
as
neurotransmission,
hormone
action,
and
immune
regulation.
Its
high
temporal
resolution
enables
the
observation
of
rapid
changes
in
cAMP
concentrations,
aiding
in
the
development
of
targeted
therapies.
perform
live-cell
imaging
studies.
cAMPthat's
development
reflects
ongoing
efforts
to
enhance
the
specificity,
sensitivity,
and
usability
of
biosensors
for
intracellular
signaling
molecules.
robust
method
for
investigating
cAMP-related
mechanisms
and
their
implications
across
various
biological
disciplines.