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1.
Elife ; 102021 10 18.
Article in English | MEDLINE | ID: mdl-34658338

ABSTRACT

Elucidating how synaptic molecules such as AMPA receptors mediate neuronal communication and tracking their dynamic expression during behavior is crucial to understand cognition and disease, but current technological barriers preclude large-scale exploration of molecular dynamics in vivo. We have developed a suite of innovative methodologies that break through these barriers: a new knockin mouse line with fluorescently tagged endogenous AMPA receptors, two-photon imaging of hundreds of thousands of labeled synapses in behaving mice, and computer vision-based automatic synapse detection. Using these tools, we can longitudinally track how the strength of populations of synapses changes during behavior. We used this approach to generate an unprecedentedly detailed spatiotemporal map of synapses undergoing changes in strength following sensory experience. More generally, these tools can be used as an optical probe capable of measuring functional synapse strength across entire brain areas during any behavioral paradigm, describing complex system-wide changes with molecular precision.


Subject(s)
Neuronal Plasticity/physiology , Receptors, AMPA/genetics , Synapses/physiology , Animals , Female , Male , Mice , Receptors, AMPA/metabolism
2.
Nano Lett ; 15(4): 2235-41, 2015 Apr 08.
Article in English | MEDLINE | ID: mdl-25651002

ABSTRACT

The rise of bacterial antibiotic resistance has created a demand for alternatives to traditional antibiotics. Attractive possibilities include pro- and anti-quorum sensing therapies that function by modulating bacterial chemical communication circuits. We report the use of Flash NanoPrecipitation to deliver the Vibrio cholerae quorum-sensing signal CAI-1 ((S)-3-hydroxytridecan-4-one) in a water dispersible form as nanoparticles. The particles activate V. cholerae quorum-sensing responses 5 orders of magnitude higher than does the identically administered free CAI-1 and are diffusive across in vivo delivery barriers such as intestinal mucus. This work highlights the promise of combining quorum-sensing strategies with drug delivery approaches for the development of next-generation medicines.


Subject(s)
Biofilms/drug effects , Biofilms/growth & development , Ketones/administration & dosage , Nanocapsules/chemistry , Quorum Sensing/drug effects , Quorum Sensing/physiology , Ketones/chemistry , Nanocapsules/ultrastructure , Particle Size
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