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Updated: May 2, 2026

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Published on: November 15, 2016
Biogenic gas nanostructures as ultrasonic molecular reporters
Mikhail G Shapiro1, Patrick W Goodwill2, Arkosnato Neogy3
11] Miller Research Institute, University of California at Berkeley, 2536 Channing Way, Berkeley, California 94720, USA [2] Department of Bioengineering, 306 Stanley Hall MC #1762, University of California at Berkeley, Berkeley, California 94720, USA [3] Department of Molecular and Cell Biology, 142 LSA #3200, University of California at Berkeley, Berkeley, California 94720, USA [4].
Abstract:
Ultrasound is among the most widely used non-invasive imaging modalities in biomedicine, but plays a surprisingly small role in molecular imaging due to a lack of suitable molecular reporters on the nanoscale. Here, we introduce a new class of reporters for ultrasound based on genetically encoded gas nanostructures from microorganisms, including bacteria and archaea. Gas vesicles are gas-filled protein-shelled compartments with typical widths of 45-250 nm and lengths of 100-600 nm that exclude water and are permeable to gas. We show that gas vesicles produce stable ultrasound contrast that is readily detected in vitro and in vivo, that their genetically encoded physical properties enable multiple modes of imaging, and that contrast enhancement through aggregation permits their use as molecular biosensors.
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