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Acoustic reporter genes for noninvasive imaging of microorganisms in mammalian hosts

机译:用于哺乳动物宿主微生物无创成像的声学报告基因

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摘要

The mammalian microbiome has many important roles in health and disease(1,2), and genetic engineering is enabling the development of microbial therapeutics and diagnostics(3-7). A key determinant of the activity of both natural and engineered microorganisms in vivo is their location within the host organism(8,9). However, existing methods for imaging cellular location and function, primarily based on optical reporter genes, have limited deep tissue performance owing to light scattering or require radioactive tracers(10-12). Here we introduce acoustic reporter genes, which are genetic constructs that allow bacterial gene expression to be visualized in vivo using ultrasound, a widely available inexpensive technique with deep tissue penetration and high spatial resolution(13-15). These constructs are based on gas vesicles, a unique class of gas-filled protein nanostructures that are expressed primarily in water-dwelling photosynthetic organisms as a means to regulate buoyancy(16,17). Heterologous expression of engineered gene clusters encoding gas vesicles allows Escherichia coli and Salmonella typhimurium to be imaged noninvasively at volumetric densities below 0.01% with a resolution of less than 100 mu m. We demonstrate the imaging of engineered cells in vivo in proof-of-concept models of gastrointestinal and tumour localization, and develop acoustically distinct reporters that enable multiplexed imaging of cellular populations. This technology equips microbial cells with a means to be visualized deep inside mammalian hosts, facilitating the study of the mammalian microbiome and the development of diagnostic and therapeutic cellular agents.
机译:哺乳动物的微生物组在健康和疾病中具有许多重要的作用(1,2),而基因工程使微生物治疗和诊断学的发展成为可能(3-7)。决定体内天然微生物和工程微生物活性的关键因素是它们在宿主生物体内的位置(8,9)。但是,现有的主要基于光学报告基因对细胞定位和功能进行成像的方法由于光散射或需要放射性示踪剂而限制了深部组织的功能(10-12)。在这里,我们介绍了声报告基因,这是一种遗传构建体,可以使用超声波在体内可视化细菌基因的表达,这是一种广泛使用的廉价技术,具有深层组织穿透和高空间分辨率(13-15)。这些构建体基于气体囊泡,这是一类独特的气体填充蛋白纳米结构,主要在居住于水的光合生物中表达,作为调节浮力的一种手段(16,17)。编码气体小泡的工程基因簇的异源表达使大肠杆菌和鼠伤寒沙门氏菌能够以低于0.01%的体积密度,小于100微米的分辨率无创成像。我们在胃肠道和肿瘤定位的概念验证模型中证明了体内工程化细胞的成像,并开发了声学上截然不同的报告基因,使细胞群体能够进行多重成像。这项技术为微生物细胞提供了一种在哺乳动物宿主内部进行可视化的手段,从而有助于哺乳动物微生物组的研究以及诊断和治疗性细胞因子的开发。

著录项

  • 来源
    《Nature》 |2018年第7686期|86-90|共5页
  • 作者单位

    CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Biol & Biol Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Biol & Biol Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Biol & Biol Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA;

    CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:51:26

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