首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Investigation of the properties of N-[(2-hydroxy-3-trimethylammonium) propyl] chloride chitosan derivatives
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Investigation of the properties of N-[(2-hydroxy-3-trimethylammonium) propyl] chloride chitosan derivatives

机译:N - [(2-羟基-3-三甲基铵)丙基]氯化物壳聚糖衍生物的性能研究

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摘要

N-[(2-Hydroxy-3-Trimethylammonium) Propyl] Chitosan Chloride Derivatives (HTCC), based on low molecular weight crab chitosan, were synthesized by the alkylation reaction with a degree of substitution of 10-98%. The chemical structure was confirmed by H-1 NMR and IR-spectra. Physical and chemical characteristics and a number of properties were defined. All HTCC derivatives were soluble at pH 7.4. HTCCs have an inhibitory capacity on the growth of the studied microorganisms. The introduction of quaternary ammonium groups into chitosan molecule contributed to the increase of antibacterial activity of derivatives. HTCC53 showed antifungal activity and at a concentration of 500 mg/rat completely inhibited the growth of mycelial fungi F. oxysporum, A. alternata and C. herbarum. When studying the ability of HTCCs to absorb DPPH radicals, it was found that samples of HTCC10 and HTCC40 showed high inhibitory capacity at a concentration of 15 mg/ml. It was shown that the chelating ability of HTCCs decreased by reducing the number of free amino groups. HTCC10-HTCC53 demonstrated the maximum values of chelating ability at a concentration of 4-10 mg/ml. Due to the solubility at neutral pH values and the properties shown, obtained chitosan derivatives can be used in clinical practice, pharmaceutical and food industries in the future. (C) 2018 Published by Elsevier B.V.
机译:基于低分子量蟹壳聚糖的N - [(2-羟基-3-三甲基铵)丙基氯化氨酸氯化物衍生物(HTCC)由烷基化反应合成10-98%。通过H-1 NMR和IR光谱证实了化学结构。定义了物理和化学特性和许多性质。所有HTCC衍生物可溶于pH7.4。 HTCCS对研究微生物的生长具有抑制能力。将季铵基团引入壳聚糖分子中有助于衍生物抗菌活性的增加。 HTCC53显示抗真菌活性,浓度为500毫克/大鼠完全抑制菌丝菌菌丝菌,A.替代品和C. Herbarum的生长。在研究HTCCS吸收DPPH激进的能力时,发现HTCC10和HTCC40的样品以浓度的浓度显示出高的抑制力。15mg / ml。结果表明,通过减少游离氨基的数量来降低HTCC的螯合能力。 HTCC10-HTCC53证明了浓度为4-10mg / ml的螯合能力的最大值。由于在中性pH值的溶解度和所示的性质,获得的壳聚糖衍生物可用于未来的临床实践,制药和食品工业。 (c)2018由elestvier b.v出版。

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