不同类型微生物影响下红细胞形态功能参数及血红蛋白氧结合能力的变化

IF 2.2 4区 生物学 Q3 BIOPHYSICS
Elena A. Shchuplova, Sergei V. Cherkasov, Victor V. Revin, Sergei I. Pinyaev, Ilya V. Syusin
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引用次数: 0

摘要

当细菌与红细胞相互作用时,质膜接收来自微生物黏附素的信号,红细胞作为一个整体的功能工作依赖于生物膜磷脂状态。然而,微生物对红细胞膜结构和功能特性的影响以及对血红蛋白氧结合能力的影响研究还不够。鉴于上述情况,我们试图在工作中研究这些问题。该研究采用了“细菌-红细胞”模型,使用了档案微生物菌株(金黄色葡萄球菌、大肠杆菌、金红枝分枝杆菌和支原体)和供体红细胞。利用拉曼光谱研究了红细胞膜磷脂的结构和功能特性以及血红蛋白分子的光谱特性。为了研究微生物作用下红细胞形态的变化,采用激光干涉显微镜。结果表明,各种类型的微生物影响了红细胞膜磷脂键的构象结构,从而改变了细胞的形态特征,从而导致红细胞整体和红细胞主要的氧转运蛋白血红蛋白的功能改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Changes in morphofunctional parameters of erythrocytes and oxygen-binding capacity of hemoglobin under the influence of microorganisms of various types

Changes in morphofunctional parameters of erythrocytes and oxygen-binding capacity of hemoglobin under the influence of microorganisms of various types

When bacteria interact with red blood cells, the plasma membrane receives signals from the microorganism adhesins, and the functional work of the erythrocyte as a whole depends on the biomembrane phospholipid condition. However, the microorganism effect on the structural and functional properties of the red blood cell membrane, as well as on the hemoglobin oxygen-binding ability has not been studied enough. Given the foregoing, we sought to study these issues in our work. The study used the “bacteria–red blood cells” model, using archival microbial strains (Staphylococcus aureus, Escherichia coli, Mycolicibacterium rutilum, and M. iranicum) and donor erythrocytes. The structural and functional properties of the red blood cell membrane phospholipids and the spectral characteristics of the hemoglobin molecule were studied using Raman spectroscopy. To study changes in red blood cell (RBC) morphology under the impact of microorganisms, laser interference microscopy was used. The results show that various types of microorganisms affected the conformational structure of the RBCs membrane phospholipid bonds, which contributed to changes in the morphological characteristics of cells, resulting in functional changes in both the red blood cell as a whole and the main RBC oxygen transport protein—hemoglobin.

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来源期刊
European Biophysics Journal
European Biophysics Journal 生物-生物物理
CiteScore
4.30
自引率
0.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The journal publishes papers in the field of biophysics, which is defined as the study of biological phenomena by using physical methods and concepts. Original papers, reviews and Biophysics letters are published. The primary goal of this journal is to advance the understanding of biological structure and function by application of the principles of physical science, and by presenting the work in a biophysical context. Papers employing a distinctively biophysical approach at all levels of biological organisation will be considered, as will both experimental and theoretical studies. The criteria for acceptance are scientific content, originality and relevance to biological systems of current interest and importance. Principal areas of interest include: - Structure and dynamics of biological macromolecules - Membrane biophysics and ion channels - Cell biophysics and organisation - Macromolecular assemblies - Biophysical methods and instrumentation - Advanced microscopics - System dynamics.
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