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昆塔海岸盐场中度嗜盐细菌产生的胞外多糖的分子特征及生物相容性

Molecular Characterization and Biocompatibility of Exopolysaccharide Produced by Moderately Halophilic Bacterium from the Saltern of Kumta Coast.

作者信息

Andrew Monic, Jayaraman Gurunathan

机构信息

School of Biosciences and Technology, Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India.

出版信息

Polymers (Basel). 2022 Sep 23;14(19):3986. doi: 10.3390/polym14193986.

Abstract

The use of natural polysaccharides as biomaterials is gaining importance in tissue engineering due to their inherent biocompatibility. In this direction, the present study aims to explore the structure and biocompatibility of the EPS produced by Virgibacillus dokdonensis VITP14. This marine bacterium produces 17.3 g/L of EPS at 96 h of fermentation. The EPS was purified using ion exchange and gel permeation chromatographic methods. The porous web-like structure and elemental composition (C, O, Na, Mg, P, S) of the EPS were inferred from SEM and EDX analysis. AFM analysis revealed spike-like lumps with a surface roughness of 84.85 nm. The zeta potential value of −10 mV indicates the anionic nature of the EPS. Initial molecular characterization showed that the EPS is a heteropolysaccharide composed of glucose (25.8%), ribose (18.6%), fructose (31.5%), and xylose (24%), which are the monosaccharide units in the HPLC analysis. The FTIR spectrum indicates the presence of functional groups/bonds typical of EPSs (O-H, C-H, C-O-H, C-O, S=O, and P=O). The polymer has an average molecular weight of 555 kDa. Further, NMR analysis revealed the monomer composition, the existence of two α- and six β-glycosidic linkages, and the branched repeating unit as → 1)[α-D-Xylp-(1 → 2)-α-D-Glcp-(1 → 6)-β-D-Glcp-(1 → 5)]-β-D-Frup-(2 → 2)[β-D-Xylp-(1 → 4)]-β-D-Xylp-(1 → 6)-β-D-Fruf-(2 → 4)-β-D-Ribp-(1 →. The EPS is thermally stable till 251.4 °C. X-ray diffraction analysis confirmed the semicrystalline (54.2%) nature of the EPS. Further, the EPS exhibits significant water solubility (76.5%), water-holding capacity (266.8%), emulsifying index (66.8%), hemocompatibility (erythrocyte protection > 87%), and cytocompatibility (cell viability > 80% on RAW264.7 and keratinocyte HaCaT cells) at higher concentrations and prolongs coagulation time in APTT and PT tests. Our research unveils the significant biocompatibility of VITP14 EPS for synthesizing a variety of biomaterials.

摘要

由于天然多糖具有固有的生物相容性,因此在组织工程中作为生物材料的应用越来越重要。在这个方向上,本研究旨在探索多哥维尔吉芽孢杆菌VITP14产生的胞外多糖(EPS)的结构和生物相容性。这种海洋细菌在发酵96小时时可产生17.3 g/L的EPS。使用离子交换和凝胶渗透色谱法对EPS进行了纯化。通过扫描电子显微镜(SEM)和能谱分析(EDX)推断出EPS的多孔网状结构和元素组成(C、O、Na、Mg、P、S)。原子力显微镜(AFM)分析显示有尖刺状团块,表面粗糙度为84.85 nm。ζ电位值为 -10 mV表明EPS具有阴离子性质。初步的分子表征表明,EPS是一种杂多糖,由葡萄糖(25.8%)、核糖(18.6%)、果糖(31.5%)和木糖(24%)组成,这些是高效液相色谱(HPLC)分析中的单糖单元。傅里叶变换红外光谱(FTIR)表明存在EPS典型的官能团/键(O-H、C-H、C-O-H、C-O、S=O和P=O)。该聚合物的平均分子量为555 kDa。此外,核磁共振(NMR)分析揭示了单体组成、两个α-和六个β-糖苷键的存在以及支链重复单元为→1)[α-D-木糖基-(1→2)-α-D-葡萄糖基-(1→6)-β-D-葡萄糖基-(1→5)]-β-D-果糖基-(2→2)[β-D-木糖基-(1→4)]-β-D-木糖基-(1→6)-β-D-果糖基-(2→4)-β-D-核糖基-(1→。EPS在高达251.4°C时具有热稳定性。X射线衍射分析证实了EPS的半结晶性质(54.2%)。此外,EPS在较高浓度下表现出显著的水溶性(76.5%)、持水能力(266.8%)、乳化指数(66.8%)、血液相容性(红细胞保护率>87%)和细胞相容性(在RAW264.7和角质形成细胞HaCaT细胞上细胞活力>80%),并在活化部分凝血活酶时间(APTT)和凝血酶原时间(PT)测试中延长凝血时间。我们的研究揭示了VITP14 EPS在合成多种生物材料方面具有显著的生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23c6/9570845/46f081262e36/polymers-14-03986-g001.jpg

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