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通过全息显微镜对铌酸锂极化对细胞黏附的影响进行无标记定量分析。

Label-free quantification of the effects of lithium niobate polarization on cell adhesion via holographic microscopy.

作者信息

Mandracchia Biagio, Gennari Oriella, Bramanti Alessia, Grilli Simonetta, Ferraro Pietro

机构信息

Institute of Applied Sciences and Intelligent Systems of the National Research Council (CNR-ISASI), Pozzuoli, Naples, Italy.

出版信息

J Biophotonics. 2018 Aug;11(8):e201700332. doi: 10.1002/jbio.201700332. Epub 2018 Apr 18.

Abstract

The surface of a c- cut ferroelectric crystal at room temperature is characterized by the so-called screening surface charges, able to compensate the charge due to the spontaneous polarization. Recently, these charges inspired the investigation of the interaction affinity of live cells with lithium niobate and lithium tantalate crystals. However, different knowledge gaps still remain that prevent a reasonable application of these materials for biological applications. Here, a label-free holographic total internal reflection microscopy is shown; the technique is able to evaluate quantitatively the contact area of live fibroblast cells adhering onto the surface of a ferroelectric lithium niobate crystal. The results show values of contact area significantly different between cells adhering onto the positive or negative face of the crystal. This reinforces the reasons for using the polarization charge of these materials to study and/or control cellular processes and, thus, to develop an innovative platform based on polar dielectric functional substrates.

摘要

在室温下,c切割铁电晶体的表面具有所谓的屏蔽表面电荷,能够补偿自发极化产生的电荷。最近,这些电荷激发了对活细胞与铌酸锂和钽酸锂晶体相互作用亲和力的研究。然而,仍然存在不同的知识空白,阻碍了这些材料在生物应用中的合理应用。在此,展示了一种无标记全息全内反射显微镜;该技术能够定量评估粘附在铁电铌酸锂晶体表面的活成纤维细胞的接触面积。结果表明,粘附在晶体正面或负面的细胞之间的接触面积值存在显著差异。这进一步说明了利用这些材料的极化电荷来研究和/或控制细胞过程的理由,从而开发基于极性介电功能基板的创新平台。

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