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基于碳-13核磁共振光谱法对构象的阐释,线性和支链(1→3)-β-D-葡聚糖抗肿瘤活性的构象依赖性变化

Conformation-dependent change in antitumor activity of linear and branched (1----3)-beta-D-glucans on the basis of conformational elucidation by carbon-13 nuclear magnetic resonance spectroscopy.

作者信息

Yoshioka Y, Uehara N, Saitô H

机构信息

Chemotherapy Division, National Cancer Center Research Institute, Tokyo, Japan.

出版信息

Chem Pharm Bull (Tokyo). 1992 May;40(5):1221-6. doi: 10.1248/cpb.40.1221.

Abstract

The antitumor activity of (1----3)-beta-D-glucans was tested in order to clarify its conformation-dependent response together with conformational elucidation by carbon-13 nuclear magnetic resonance (13C-NMR) spectroscopy. It was shown that the following three conformations, single chain, single helix and triple helix, are readily distinguished by the high-resolution solid-state 13C-NMR method. It turned out that preparations of linear (1----3)-beta-D-glucans of a triple helical conformation were ineffective in the inhibition of tumor growth. These linear (1----3)-beta-D-glucans were converted to an effective form in the inhibition of tumor growth when they were lyophilized from dimethyl sulfoxide (DMSO) solutions as a result of a conformational change from the triple helical to the single chain forms. They were not effective, however, when assayed in DMSO solution. In contrast, it was found that a branched (1----3)-beta-D-glucan is effective not only in either saline solutions of the triple helical sample or the lyophilized sample from DMSO, but also in DMSO solution. The aforementioned drastic change in antitumor activity was interpreted in terms of resulting conformational changes as analyzed by the 13C-NMR method.

摘要

为了阐明其构象依赖性反应以及通过碳-13核磁共振(13C-NMR)光谱法进行的构象解析,对(1→3)-β-D-葡聚糖的抗肿瘤活性进行了测试。结果表明,通过高分辨率固态13C-NMR方法可以很容易地区分单链、单螺旋和三螺旋这三种构象。结果发现,三螺旋构象的线性(1→3)-β-D-葡聚糖制剂在抑制肿瘤生长方面无效。当这些线性(1→3)-β-D-葡聚糖从二甲基亚砜(DMSO)溶液中冻干时,由于从三螺旋形式转变为单链形式的构象变化,它们在抑制肿瘤生长方面转变为有效形式。然而,当在DMSO溶液中进行检测时,它们无效。相比之下,发现一种支链(1→3)-β-D-葡聚糖不仅在三螺旋样品的盐溶液或来自DMSO的冻干样品中有效,而且在DMSO溶液中也有效。通过13C-NMR方法分析,上述抗肿瘤活性的剧烈变化是根据所产生的构象变化来解释的。

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