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Optical micromanipulation of nanoparticles and cells inside living zebrafish

机译:斑马鱼体内纳米粒子和细胞的光学显微操纵

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摘要

Regulation of biological processes is often based on physical interactions between cells and their microenvironment. To unravel how and where interactions occur, micromanipulation methods can be used that offer high-precision control over the duration, position and magnitude of interactions. However, lacking an in vivo system, micromanipulation has generally been done with cells in vitro , which may not reflect the complex in vivo situation inside multicellular organisms. Here using optical tweezers we demonstrate micromanipulation throughout the transparent zebrafish embryo. We show that different cells, as well as injected nanoparticles and bacteria can be trapped and that adhesion properties and membrane deformation of endothelium and macrophages can be analysed. This non-invasive micromanipulation inside a whole-organism gives direct insights into cell interactions that are not accessible using existing approaches. Potential applications include screening of nanoparticle-cell interactions for cancer therapy or tissue invasion studies in cancer and infection biology.
机译:生物学过程的调控通常基于细胞与其微环境之间的物理相互作用。为了阐明交互作用的方式和位置,可以使用微处理方法,这些方法可以对交互作用的持续时间,位置和大小进行高精度控制。然而,由于缺乏体内系统,通常在体外对细胞进行显微操作,这可能无法反映多细胞生物体内复杂的体内情况。在这里,我们使用光镊来演示整个透明斑马鱼胚胎的显微操作。我们表明,可以捕获不同的细胞,以及注入的纳米颗粒和细菌,并且可以分析内皮和巨噬细胞的粘附特性和膜变形。整个有机体内的这种非侵入性显微操作可直接洞察使用现有方法无法获得的细胞相互作用。潜在的应用包括筛选用于癌症治疗或癌症和感染生物学中的组织入侵研究的纳米细胞相互作用。

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