50-nm Gas-Filled Protein Nanostructures to Enable the Access of Lymphatic Cells by Ultrasound Technologies.

Shen, Qionghua; Li, Zongru; Wang, Yixian; Meyer, Matthew D; De Guzman, Marc T; Lim, Janie C; Xiao, Han; Bouchard, Richard R et al. · Adv Mater · 2024

basic_science · Level V

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Abstract

Ultrasound imaging and ultrasound-mediated gene and drug delivery are rapidly advancing diagnostic and therapeutic methods; however, their use is often limited by the need for microbubbles, which cannot transverse many biological barriers due to their large size. Here, the authors introduce 50-nm gas-filled protein nanostructures derived from genetically engineered gas vesicles(GVs) that are referred to as <sub>50 nm</sub>GVs. These diamond-shaped nanostructures have hydrodynamic diameters smaller than commercially available 50-nm gold nanoparticles and are, to the authors' knowledge, the smallest stable, free-floating bubbles made to date. <sub>50 nm</sub>GVs can be produced in bacteria, purified through centrifugation, and remain stable for months. Interstitially injected <sub>50 nm</sub>GVs can extravasate into lymphatic tissues and gain access to critical immune cell populations, and electron microscopy images of lymph node tissues reveal their subcellular location in antigen-presenting cells adjacent to lymphocytes. The authors anticipate that <sub>50 nm</sub>GVs can substantially broaden the range of cells accessible to current ultrasound technologies and may generate applications beyond biomedicine as ultrasmall stable gas-filled nanomaterials.

Medical subject headings