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来自海藻纤细叉蕨的杂岩藻聚糖的抗凝血、抗氧化和抗肿瘤活性。

Anticoagulant, antioxidant and antitumor activities of heterofucans from the seaweed Dictyopteris delicatula.

作者信息

Magalhaes Kaline Dantas, Costa Leandro Silva, Fidelis Gabriel Pereira, Oliveira Ruth Medeiros, Nobre Leonardo Thiago Duarte Barreto, Dantas-Santos Nednaldo, Camara Rafael Barros Gomes, Albuquerque Ivan Rui Lopes, Cordeiro Sara Lima, Sabry Diego Araujo, Costa Mariana Santana Santos Pereira, Alves Luciana Guimaraes, Rocha Hugo Alexandre Oliveira

机构信息

Laboratory of Biotechnology of Natural Polymers (BIOPOL), Department of Biochemistry, Federal University of Rio Grande do Norte (UFRN), 59020-100 Natal-RN, Brazil; E-Mails:

出版信息

Int J Mol Sci. 2011;12(5):3352-65. doi: 10.3390/ijms12053352. Epub 2011 May 23.

Abstract

In the present study, six families of sulfated polysaccharides were obtained from seaweed Dictyopteris delicatula by proteolytic digestion, followed by acetone fractionation and molecular sieving on Sephadex G-100. Chemical analyses demonstrated that all polysaccharides contain heterofucans composed mainly of fucose, xylose, glucose, galactose, uronic acid, and sulfate. The fucans F0.5v and F0.7v at 1.0 mg/mL showed high ferric chelating activity (∼45%), whereas fucans F1.3v (0.5 mg/mL) showed considerable reducing power, about 53.2% of the activity of vitamin C. The fucan F1.5v presented the most prominent anticoagulant activity. The best antiproliferative activity was found with fucans F1.3v and F0.7v. However, F1.3v activity was much higher than F0.7v inhibiting almost 100% of HeLa cell proliferation. These fucans have been selected for further studies on structural characterization as well as in vivo experiments, which are already in progress.

摘要

在本研究中,通过蛋白水解消化从海藻细弱网翼藻中获得了六个硫酸化多糖家族,随后进行丙酮分级分离并在葡聚糖G - 100上进行分子筛分离。化学分析表明,所有多糖均含有主要由岩藻糖、木糖、葡萄糖、半乳糖、糖醛酸和硫酸盐组成的杂岩藻聚糖。1.0 mg/mL的岩藻聚糖F0.5v和F0.7v表现出较高的铁螯合活性(约45%),而岩藻聚糖F1.3v(0.5 mg/mL)表现出相当强的还原能力,约为维生素C活性的53.2%。岩藻聚糖F1.5v表现出最显著的抗凝血活性。在岩藻聚糖F1.3v和F0.7v中发现了最佳的抗增殖活性。然而,F1.3v的活性远高于F0.7v,几乎抑制了100%的HeLa细胞增殖。这些岩藻聚糖已被选用于进一步的结构表征研究以及体内实验,这些实验正在进行中。

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