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利用原子力显微镜(AFM)测量经聚赖氨酸图案化的琼脂糖凝胶层的硬度。

AFM measurement of the stiffness of layers of agarose gel patterned with polylysine.

机构信息

Nanophysics Unit, Nanobiotechnology, Italian Institute of Technology, Genoa, Italy.

出版信息

Microsc Res Tech. 2010 Oct;73(10):982-90. doi: 10.1002/jemt.20838.

Abstract

Films of agarose gel microspotted with polylysine aqueous solution have been characterized by atomic force microscopy carried out in deionized water. Thickness and surface morphology of the layers have been checked, and the effect of polylysine impregnation on the local elasticity has been investigated. An increase in contact stiffness of the organic layer at the spotted areas has been observed, correlated with the polylysine concentration. For the considered agarose layer thickness of ~0.9 μm in dry condition, the concentration threshold at which stiffening appears is ~0.1 mg/mL. Above this threshold, the stiffening coefficient becomes approximately twofold and seems not to increase significantly with concentration in the range 0.3-0.7 mg/mL. For concentrations above the stiffening threshold, this effect is also accompanied by a locally lower film thickness. For quantitative determination of the stiffness, force-distance curves extracted from the regions of interest of spots and agarose substrate have been selected and processed. These curves were fitted to the Hertz model of purely elastic tip-surface interaction, under appropriate assumptions on both tip shape and optimum indentation depth. In this way, we could determine the Young's modulus of the agarose layer to be ~50 kPa and quantitatively confirm the stiffening due to polylysine.

摘要

用聚赖氨酸水溶液微点琼脂糖凝胶的薄膜已经通过在去离子水中进行原子力显微镜进行了表征。检查了层的厚度和表面形态,并研究了聚赖氨酸浸渍对局部弹性的影响。在斑点区域观察到有机层的接触刚度增加,这与聚赖氨酸浓度有关。对于考虑的干燥条件下约 0.9μm 的琼脂糖层厚度,出现变硬的浓度阈值约为 0.1mg/mL。在此阈值以上,变硬系数变为约两倍,并且似乎在 0.3-0.7mg/mL 的范围内不会随着浓度的增加而显著增加。对于浓度高于变硬阈值,这种效应还伴随着局部较低的薄膜厚度。为了定量确定刚度,从点和琼脂糖基底的感兴趣区域中提取并处理了力-距离曲线。这些曲线根据尖端形状和最佳压入深度的适当假设,拟合到纯弹性尖端-表面相互作用的赫兹模型。通过这种方式,我们可以确定琼脂糖层的杨氏模量约为 50kPa,并定量确认聚赖氨酸引起的变硬。

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