Ultrasound contrast agents from microbubbles to biogenic gas vesicles

Author:

Zeng Wenlong1,Yue Xiuli2,Dai Zhifei1ORCID

Affiliation:

1. Department of Biomedical Engineering , College of Future Technology, Peking University , Beijing , China

2. School of Environment, Harbin Institute of Technology , Harbin , China

Abstract

Abstract Microbubbles have been the earliest and most widely used ultrasound contrast agents by virtue of their unique features: such as non-toxicity, intravenous injectability, ability to cross the pulmonary capillary bed, and significant enhancement of echo signals for the duration of the examination, resulting in essential preclinical and clinical applications. The use of microbubbles functionalized with targeting ligands to bind to specific targets in the bloodstream has further enabled ultrasound molecular imaging. Nevertheless, it is very challenging to utilize targeted microbubbles for molecular imaging of extravascular targets due to their size. A series of acoustic nanomaterials have been developed for breaking free from this constraint. Especially, biogenic gas vesicles, gas-filled protein nanostructures from microorganisms, were engineered as the first biomolecular ultrasound contrast agents, opening the door for more direct visualization of cellular and molecular function by ultrasound imaging. The ordered protein shell structure and unique gas filling mechanism of biogenic gas vesicles endow them with excellent stability and attractive acoustic responses. What’s more, their genetic encodability enables them to act as acoustic reporter genes. This article reviews the upgrading progresses of ultrasound contrast agents from microbubbles to biogenic gas vesicles, and the opportunities and challenges for the commercial and clinical translation of the nascent field of biomolecular ultrasound.

Funder

National Project for Research and Development of Major Scientific Instruments

State Key Program of National Natural Science of China

National Natural Science Foundation of China

Projects of International Cooperation and Exchanges NSFC-PSF

Publisher

Walter de Gruyter GmbH

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