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首页> 外文期刊>ACS nano >Structural-mechanical characterization of nanoparticle exosomes in human saliva, using correlative AFM, FESEM, and force spectroscopy
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Structural-mechanical characterization of nanoparticle exosomes in human saliva, using correlative AFM, FESEM, and force spectroscopy

机译:使用相关AFM,FESEM和力谱法对人唾液中的纳米颗粒外泌体进行结构-机械表征

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摘要

All living systems contain naturally occurring nanoparticles with unique structural, biochemical, and mechanical characteristics. Specifically, human saliva exosomes secreted by normal cells into saliva via exocytosis are novel biomarkers showing tumor-antigen enrichment during oral cancer. Here we show the substructure of single human saliva exosomes, using a new ultrasensitive low force atomic force microscopy (AFM) exhibiting substructural organization unresolvable in electron microscopy. We correlate the data with field emission scanning electron microscopy (FESEM) and AFM images to interpret the nanoscale structures of exosomes under varying forces. Single exosomes reveal reversible mechanical deformation displaying distinct elastic, 70-100 nm trilobed membrane with substructures carrying specific transmembrane receptors. Further, we imaged and investigated, using force spectroscopy with antiCD63 IgG functionalized AFM tips, highly specific and sensitive detection of antigenCD63, potentially useful cancer markers on individual exosomes. The quantitative nanoscale morphological, biomechanical, and surface biomolecular properties of single saliva exosomes are critical for the applications of exosomes for cancer diagnosis and as a model for developing new cell delivery systems.
机译:所有生命系统均包含具有独特结构,生化和机械特性的天然存在的纳米颗粒。具体而言,正常细胞通过胞吐作用分泌到唾液中的人唾液外泌体是在口腔癌期间显示肿瘤抗原富集的新型生物标记。在这里,我们显示了单个人类唾液外泌体的亚结构,使用了一种新的超灵敏低力原子力显微镜(AFM),它展现了在电子显微镜下无法解决的亚结构组织。我们将数据与场发射扫描电子显微镜(FESEM)和AFM图像相关联,以解释在不同作用力下外泌体的纳米尺度结构。单个外泌体显示出可逆的机械变形,显示出独特的70-100 nm三叶弹性膜,其亚结构带有特定的跨膜受体。此外,我们使用具有抗CD63 IgG功能化AFM针尖的力谱,对抗原CD63(个体外泌体上可能有用的癌症标志物)进行了高度特异性和灵敏的检测,并进行了成像和研究。单个唾液外泌体的定量纳米级形态,生物力学和表面生物分子特性对于外泌体在癌症诊断中的应用以及作为开发新细胞递送系统的模型至关重要。

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