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In-vivo programmable acoustic manipulation of genetically engineered bacteria.


ABSTRACT: Acoustic tweezers can control target movement through the momentum interaction between an acoustic wave and an object. This technology has advantages over optical tweezers for in-vivo cell manipulation due to its high tissue penetrability and strong acoustic radiation force. However, normal cells are difficult to acoustically manipulate because of their small size and the similarity between their acoustic impedance and that of the medium. In this study, we use the heterologous expression of gene clusters to generate genetically engineered bacteria that can produce numerous sub-micron gas vesicles in the bacterial cytoplasm. We show that the presence of the gas vesicles significantly enhances the acoustic sensitivity of the engineering bacteria, which can be manipulated by ultrasound. We fi

SUBMITTER: Yang Y 

PROVIDER: S-EPMC10244463 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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