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与 Maytenus rigida 提取物相关的克菲尔微生物膜的立体几何特征。

Stereometric characterization of kefir microbial films associated with Maytenus rigida extract.

机构信息

Postgraduate Program in Materials Science and Engineering, Federal University of Sergipe-UFS, São Cristóvão, Brazil.

Amazonian Materials Group, Physics Department, Federal University of Amapá-UNIFAP, Brazil.

出版信息

Microsc Res Tech. 2020 Nov;83(11):1401-1410. doi: 10.1002/jemt.23532. Epub 2020 Jul 10.

Abstract

The aim of this study was to report the first discussion of statistical parameters and possible applications related to the surface of kefir biofilms prepared with Maytenus rigida Mart. extract through micromorphology, using atomic force microscopy (AFM). Four different samples were produced. The reference contained demerara sugar with a concentration of 40 g/L and the others had added extract whose concentrations were 0.25, 0.50, and 0.75 g/L, respectively. AFM was used to image the surface in tapping mode, on square areas of 30 μm × 30 μm. Images were studied by the MountainsMap premium commercial software. The main parameter of the surface, roughness, grew with the increase of the extract concentration up to 0.50 g/L. In addition, asymmetry and kurtosis showed that the biofilm with the best peak distribution was the one with 0.25 g/L of plant extract. The other parameters followed the main results for the surface and were observed for the depth and volume parameters. The power spectrum density spectrum confirmed the reliability of the results for the sample with 0.25 g/L. Therefore, the sample with 0.25 g/L of plant extract produced the best balance in relation to the surface properties. These results showed that the biofilm morphology and microtexture were affected by the incorporation of the plant extract and can be useful to define possible applications.

摘要

本研究旨在报告通过原子力显微镜(AFM)首次讨论与用 Maytenus rigida Mart. 提取物制备的酸马奶酒生物膜表面相关的统计参数和可能的应用。制备了四个不同的样品。参考样品含有 40g/L 的红糖,其他三个样品分别添加了浓度为 0.25、0.50 和 0.75g/L 的提取物。使用 AFM 以轻敲模式在 30μm×30μm 的正方形区域上对表面进行成像。使用 MountainsMap 商业软件研究图像。表面的主要参数粗糙度随着提取物浓度的增加而增加,最高可达 0.50g/L。此外,不对称和峰度表明,具有最佳峰分布的生物膜是添加 0.25g/L 植物提取物的生物膜。其他参数与表面的主要结果一致,并观察到深度和体积参数。功率谱密度谱证实了 0.25g/L 样品结果的可靠性。因此,添加 0.25g/L 植物提取物的样品在表面性质方面达到了最佳平衡。这些结果表明,生物膜形态和微观结构受到植物提取物的影响,这可能有助于定义可能的应用。

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