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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Morphometric Analysis of Paramylon Particles Produced by Euglena gracilis EOD-1 Using FIB/SEM Tomography
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Morphometric Analysis of Paramylon Particles Produced by Euglena gracilis EOD-1 Using FIB/SEM Tomography

机译:使用FIB / SEM断层扫描由Euglena Gracilis EOD-1产生的Paramylon颗粒的形态学分析

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Euglena gracilis EOD-1, a microalgal strain, produces large quantities of paramylon, a class of polymers known as β-1,3-glucans and has been reported to function as a dietary fiber and to improve the metabolic syndrome including obesity. However, despite its importance, the morphometric analysis of paramylon has not been conducted so far. In this study, we attempted to observe the detailed three-dimensional structure of paramylon by focused ion beam/scanning electron microscopy (FIB/SEM). Paramylon samples were fixed and three-dimensional image reconstruction and segmentation of the image stack were created using computer software (Amira v6.0.1, FEI). The results indicated that the inside of paramylon particles (diameter: 5?μm, thickness: 3?μm) was comprised of a dense structure with no evidence of the presence of large pores and gaps, although a small 100?nm crack was observed. The specific surface area of paramylon particles measured by the Brunauer–Emmet–Teller (BET) method, was not as large as activated charcoal, but similar to those of plant starches, indicating that the cholesterol-lowering effect of paramylon cannot be simply attributed to its adsorption ability. The FIB/SEM method was found to be useful for elucidating the internal structure of small solid particles.
机译:Euglena Gracilis eod-1,一种微藻菌株,产生大量Paramenton,一类称为β-1,3-葡聚糖的聚合物,并据报道,用作膳食纤维,并改善包括肥胖在内的代谢综合征。然而,尽管重要的是,到目前为止,帕拉多的形态学分析尚未进行。在这项研究中,我们试图通过聚焦离子束/扫描电子显微镜(FIB / SEM)观察Paramylon的详细三维结构。 Paramenton样本是固定的,使用计算机软件(Amira V6.0.1,FEI)创建了三维图像重建和图像堆栈的分割。结果表明,Paramyon颗粒的内部(直径:5≤μm,厚度:3≤μm)由致密结构组成,没有证据表明存在大的孔隙和间隙,尽管观察到一个小的100?nm裂缝。由Brunauer-Emmet-Teller(Bet)方法测量的Paramylon颗粒的比表面积并不像活性炭一样大,但与植物淀粉类似,表明Paramenton的胆固醇降低效果不能简单地归因于它的吸附能力。发现FIB / SEM方法可用于阐明小固体颗粒的内部结构。

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