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使用原子力显微镜和双偏振干涉生物传感器测量五角甜甜圈形状的C反应蛋白的尺寸。

Measurement of dimensions of pentagonal doughnut-shaped C-reactive protein using an atomic force microscope and a dual polarisation interferometric biosensor.

作者信息

Lin Shiming, Lee Chih-Kung, Wang Yu-Ming, Huang Long-Sun, Lin Yin-Hang, Lee Shih-Yuan, Sheu Bor-Ching, Hsu Su-Ming

机构信息

Centre for Optoelectronic Biomedicine, National Taiwan University, College of Medicine, 1-1 Jen-Ai Road, Taipei 100, Taiwan.

出版信息

Biosens Bioelectron. 2006 Aug 15;22(2):323-7. doi: 10.1016/j.bios.2006.01.018. Epub 2006 Feb 28.

Abstract

In order to develop the C-reactive protein (CRP) sensor chips for clinical detection of atherosclerosis and coronary heart disease, we used an atomic force microscope (AFM) and a dual polarization interferometric (DPI) biosensor to probe the surface ultrastructure and to measure the dimensions of CRP. A single pentagonal structure was directly visualized by AFM, and quantitative measurements of the dimensions of the protein were provided. The average height calculated for each pentagonal CRP particle was approximately 3.03+/-0.37 nm, which basically corresponds to that (36 A in protomer diameter) previously obtained from the structure of CRP determined by X-ray crystallography. Moreover, a experiment using dual polarization interferometric (DPI) as a biosensor was then performed, and the average monolayer thickness value (3.18+/-0.43 nm) that was calculated basically corresponds to that obtained from the experimental value (3.03+/-0.37 nm) of the height measured by an AFM method for CRP. Further investigations will be performed to study the surface ultrastructure of a single pentagonal CRP molecule, and for this purpose a CRP sample (at low concentration) was scanned in vacuum by AFM. The higher-resolution images clearly revealed the presence of doughnut-shaped CRP molecules. In addition, phase images of CRP molecules were captured simultaneously with their height images, and the lateral dimensions of the doughnut-shaped CRP molecules were then measured. It was found that the average values calculated for the outer diameter (11.13+/-1.47 nm) and pore diameter (3.52+/-0.42 nm) are respectively close to those (102 A in outer diameter and 30 A in pore diameter) previously obtained from the structure of CRP determined by X-ray crystallography. This study represents the first direct characterization of the surface ultrastructure and dimensional measurement of the CRP molecule on the sensor chip.

摘要

为了开发用于临床检测动脉粥样硬化和冠心病的C反应蛋白(CRP)传感器芯片,我们使用原子力显微镜(AFM)和双偏振干涉(DPI)生物传感器来探测表面超微结构并测量CRP的尺寸。通过AFM直接观察到单个五边形结构,并提供了蛋白质尺寸的定量测量。计算得出的每个五边形CRP颗粒的平均高度约为3.03±0.37nm,这与先前通过X射线晶体学确定的CRP结构所获得的高度(原体直径为36 Å)基本一致。此外,随后进行了一项使用双偏振干涉(DPI)作为生物传感器的实验,计算得出的平均单层厚度值(3.18±0.43nm)与通过AFM方法测量的CRP高度实验值(3.03±0.37nm)基本一致。将进行进一步研究以研究单个五边形CRP分子的表面超微结构,为此通过AFM在真空中扫描了一个低浓度的CRP样品。更高分辨率的图像清楚地显示出存在甜甜圈形状的CRP分子。此外,在获取CRP分子高度图像的同时捕获了其相位图像,然后测量了甜甜圈形状CRP分子的横向尺寸。发现计算得出的外径(11.13±1.47nm)和孔径(3.52±0.42nm)的平均值分别接近先前通过X射线晶体学确定的CRP结构所获得的外径(102 Å)和孔径(30 Å)。这项研究首次直接表征了传感器芯片上CRP分子的表面超微结构并进行了尺寸测量。

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