Daaboul George G, Lopez Carlos A, Chinnala Jyothsna, Goldberg Bennett B, Connor John H, Ünlü M Selim
Electrical & Computer Engineering Dept., Boston University, Boston, MA 02215.
Biomedical Engineering Dept., Boston University, Boston, MA 02215.
ACS Nano. 2014 Jun 24;8(6):6047-6055. doi: 10.1021/nn501312q. Epub 2014 Jun 4.
Rapid, sensitive, and direct label-free capture and characterization of nanoparticles from complex media such as blood or serum will broadly impact medicine and the life sciences. We demonstrate identification of virus particles in complex samples for replication-competent wild-type vesicular stomatitis virus (VSV), defective VSV, and Ebola- and Marburg-pseudotyped VSV with high sensitivity and specificity. Size discrimination of the imaged nanoparticles (virions) allows differentiation between modified viruses having different genome lengths and facilitates a reduction in the counting of nonspecifically bound particles to achieve a limit-of-detection (LOD) of 5 × 10(3) pfu/mL for the Ebola and Marburg VSV pseudotypes. We demonstrate the simultaneous detection of multiple viruses in a single sample (composed of serum or whole blood) for screening applications and uncompromised detection capabilities in samples contaminated with high levels of bacteria. By employing affinity-based capture, size discrimination, and a "digital" detection scheme to count single virus particles, we show that a robust and sensitive virus/nanoparticle sensing assay can be established for targets in complex samples. The nanoparticle microscopy system is termed the Single Particle Interferometric Reflectance Imaging Sensor (SP-IRIS) and is capable of high-throughput and rapid sizing of large numbers of biological nanoparticles on an antibody microarray for research and diagnostic applications.
从血液或血清等复杂介质中快速、灵敏且直接地进行无标记纳米颗粒捕获和表征,将对医学和生命科学产生广泛影响。我们展示了在复杂样本中对具有复制能力的野生型水疱性口炎病毒(VSV)、缺陷型VSV以及埃博拉和马尔堡假型VSV病毒颗粒的鉴定,具有高灵敏度和特异性。对成像的纳米颗粒(病毒粒子)进行尺寸区分,能够区分具有不同基因组长度的修饰病毒,并有助于减少非特异性结合颗粒的计数,从而实现对埃博拉和马尔堡VSV假型的检测限(LOD)达到5×10³ pfu/mL。我们展示了在单个样本(由血清或全血组成)中同时检测多种病毒,用于筛查应用,并且在被高水平细菌污染的样本中具有不受影响的检测能力。通过采用基于亲和力的捕获、尺寸区分和“数字”检测方案来计数单个病毒颗粒,我们表明可以为复杂样本中的目标建立一种强大且灵敏的病毒/纳米颗粒传感测定法。该纳米颗粒显微镜系统被称为单粒子干涉反射成像传感器(SP-IRIS),能够在抗体微阵列上对大量生物纳米颗粒进行高通量和快速尺寸测定,用于研究和诊断应用。