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从海桑红树林叶片中提取多糖的优化及其理化性质表征:一种有潜力的抗氧化和抗生物膜剂。

Optimization and Physicochemical Characterization of Polysaccharide Purified from Sonneratia caseolaris Mangrove Leaves: a Potential Antioxidant and Antibiofilm Agent.

机构信息

Department of Biotechnology, School of Lifesciences, Pondicherry University, Puducherry, 605014, India.

Department of Biotechnology, Karpagam Academy of Higher Education (Karpagam University), Coimbatore, 641021, Tamil Nadu, India.

出版信息

Appl Biochem Biotechnol. 2023 Dec;195(12):7832-7858. doi: 10.1007/s12010-023-04534-6. Epub 2023 Apr 24.

DOI:10.1007/s12010-023-04534-6
PMID:37093530
Abstract

The Box-Behnken design was applied to determine the optimal parameters of the extraction condition by using the response surface methodology (RSM) from the leaves of Sonneratia caseolaris L. The result indicates the best-optimized conditions used for the extraction of polysaccharides at 84.02 °C temperature, 3.12 h time, and 27.31 mL/g for the water-to-material ratio. The maximum experimental yield of 8.81 ± 0.09% was obtained which is in agreement with the predicted value of 8.79%. Thereafter, low molecular weight polysaccharide (SCLP) was separated after sequentially being purified through column chromatography with a relative molecular weight of 3.74 kDa. The physicochemical properties were evaluated by characterization techniques such as FT-IR spectra, NMR spectrum, and SEM analysis. RP-HPLC analysis confirmed that SCLP was a heteropolysaccharide, majorly comprising rhamnose (28.25%), and xylose (27.17%) residues, followed by mannose (18.90%), and galactose (17.17%), respectively. Thermal analysis (TGA-DSC) results showed that SCLP is a highly thermostable polymer with a degradation temperature of 361.63 °C. X-ray diffraction patterns and tertiary structure analyses indicate that SCLP had a semi-crystalline polymer having a triple-helical configuration. Moreover, SCLP displayed potential antibiofilm ability for all the tested pathogens while stronger activity against Klebsiella pneumoniae and Pseudomonas aeruginosa. In addition, SCLP has potential in vitro antioxidant activity on DPPH, ABTS radical, superoxide, and Fe chelating. These findings indicate that the polysaccharide has potentially been used in functional food, cosmetics, and pharmacological industries.

摘要

Box-Behnken 设计被应用于通过响应面法(RSM)从海桑叶中确定提取条件的最佳参数。结果表明,用于提取多糖的最佳优化条件为 84.02°C 温度、3.12 小时时间和 27.31mL/g 的水与物料比。最大实验得率为 8.81±0.09%,与预测值 8.79%相符。之后,通过柱层析依次对多糖进行纯化,得到低分子质量多糖(SCLP),其相对分子质量为 3.74kDa。通过傅里叶变换红外光谱(FT-IR)、核磁共振谱(NMR)和扫描电子显微镜(SEM)分析等表征技术对其理化性质进行评价。反相高效液相色谱(RP-HPLC)分析证实 SCLP 是一种杂多糖,主要由鼠李糖(28.25%)和木糖(27.17%)残基组成,其次是甘露糖(18.90%)和半乳糖(17.17%)。热分析(TGA-DSC)结果表明,SCLP 是一种热稳定性很高的聚合物,其降解温度为 361.63°C。X 射线衍射图谱和三级结构分析表明,SCLP 是一种具有半结晶聚合物的三螺旋构象。此外,SCLP 对所有测试的病原体均表现出潜在的抗生物膜能力,对肺炎克雷伯菌和铜绿假单胞菌的活性更强。此外,SCLP 具有体外抗氧化活性,可清除 DPPH、ABTS 自由基、超氧自由基和 Fe 螯合。这些发现表明,该多糖具有在功能食品、化妆品和药理学等行业应用的潜力。

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