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水溶性天然和硫酸化超支化蘑菇多糖的理化性质及抗肿瘤活性

Physicochemical properties and antitumor activities of water-soluble native and sulfated hyperbranched mushroom polysaccharides.

作者信息

Tao Yongzhen, Zhang Lina, Cheung Peter C K

机构信息

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Carbohydr Res. 2006 Sep 25;341(13):2261-9. doi: 10.1016/j.carres.2006.05.024. Epub 2006 Jun 27.

Abstract

A water-soluble hyperbranched beta-glucan, coded as TM3b, extracted from sclerotia of an edible fungus (Pleurotus tuber-regium) was fractioned into eight fractions coded as F1-F8 by a nonsolvent addition method. Five fractions were treated with chlorosulfonic acid at 35 degrees C to synthesize successfully sulfated derivatives coded as S-F2, S-F3, S-F4, S-F5, and S-F8 with degree of substitution of 0.28-0.54. The 13C NMR results of these sulfated beta-glucans indicated that while the C-6 position was fully substituted, C-2, C-3, and C-4 were only partially substituted by the sulfate groups. The weight-average molecular weights (Mw) and intrinsic viscosities ([eta]) of the native and sulfated TM3b fractions were determined using multi-angle laser light scattering and viscometry in 0.15M aq NaCl at 25 degrees C, respectively. The dependences of [eta] on Mw for TM3b and sulfated TM3b were found to be [eta]=0.18Mw(0.28+/-0.03) (Mw range from 3.30 x 10(4) to 3.90 x 10(7)) and [eta]=2.24 x 10(-2)Mw(0.52+/-0.06) (Mw range from 3.24 x 10(4) to 3.15 x 10(5)) in 0.15M aq NaCl at 25 degrees C, respectively. It revealed that both the native TM3b and its sulfated derivatives exist in a spherical chain conformation in 0.15M aq NaCl. Furthermore, the native and sulfated TM3b fractions showed potent antitumor activities in vivo and in vitro. The sulfated derivatives exhibited relatively higher in vitro antitumor activity against human hepatic cancer cell line HepG2 than the native TM3b. Water solubility and introduction of sulfate groups were the main factors in enhancing the antitumor activities.

摘要

从食用菌(块菌侧耳)菌核中提取的一种水溶性超支化β-葡聚糖,编码为TM3b,通过非溶剂添加法被分离为八个级分,编码为F1 - F8。五个级分在35℃下用氯磺酸处理,成功合成了取代度为0.28 - 0.54的硫酸化衍生物,编码为S - F2、S - F3、S - F4、S - F5和S - F8。这些硫酸化β-葡聚糖的13C NMR结果表明,虽然C - 6位被完全取代,但C - 2、C - 3和C - 4仅被硫酸根基团部分取代。分别使用多角度激光光散射和粘度测定法在25℃下于0.15M NaCl水溶液中测定了天然和硫酸化TM3b级分的重均分子量(Mw)和特性粘度([η])。发现TM3b和硫酸化TM3b的[η]对Mw的依赖性分别为[η]=0.18Mw(0.28±0.03)(Mw范围为3.30×10(4)至3.90×10(7))和[η]=2.24×10(-2)Mw(0.52±0.06)(Mw范围为3.24×10(4)至3.15×10(5)),在25℃下于0.15M NaCl水溶液中。结果表明,天然TM3b及其硫酸化衍生物在0.15M NaCl水溶液中均以球形链构象存在。此外,天然和硫酸化TM3b级分在体内和体外均表现出强大的抗肿瘤活性。硫酸化衍生物对人肝癌细胞系HepG2的体外抗肿瘤活性相对高于天然TM3b。水溶性和硫酸根基团的引入是增强抗肿瘤活性的主要因素。

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