Abstract
ABSTRACTCalcium imaging has enabled major biological discoveries. However, the scattering of light by tissue limits the use of standard fluorescent calcium indicators in living animals. To address this limitation, we introduce the first genetically encoded ultrasonic reporter of calcium (URoC). Based on a unique class of air-filled protein nanostructures called gas vesicles, we engineered URoC to produce elevated nonlinear ultrasound signal upon binding to calcium ions. With URoC expressed in mammalian cells, we demonstrate noninvasive ultrasound imaging of calcium signalingin vivoduring drug-induced receptor activation. URoC brings the depth and resolution advantages of ultrasound to thein vivoimaging of dynamic cellular function and paves the way for acoustic biosensing of a broader variety of biological signals.
Publisher
Cold Spring Harbor Laboratory
Cited by
8 articles.
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