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Sci Adv ; 4(1): e1601453, 2018 01.
Article in English | MEDLINE | ID: mdl-29349292

ABSTRACT

We developed membrane voltage nanosensors that are based on inorganic semiconductor nanoparticles. We provide here a feasibility study for their utilization. We use a rationally designed peptide to functionalize the nanosensors, imparting them with the ability to self-insert into a lipid membrane with a desired orientation. Once inserted, these nanosensors could sense membrane potential via the quantum confined Stark effect, with a single-particle sensitivity. With further improvements, these nanosensors could potentially be used for simultaneous recording of action potentials from multiple neurons in a large field of view over a long duration and for recording electrical signals on the nanoscale, such as across one synapse.


Subject(s)
Biosensing Techniques/methods , Electricity , Membrane Potentials/physiology , Quantum Dots/chemistry , Feasibility Studies , HEK293 Cells , Humans , Nanotubes/ultrastructure , Surface Properties
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