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用于血管生成研究的透明质酸寡糖的制备与表征

Preparation and characterization of hyaluronan oligosaccharides for angiogenesis study.

作者信息

Gao Feng, Cao Manlin, Yang Cuixia, He Yiqing, Liu Yiwen

机构信息

Department of Laboratory Medicine, No. 6 People's Hospital, Shanghai Jiaotong University School of Medicine, 600 Yishan Road, Shanghai 200233, People's Republic of China.

出版信息

J Biomed Mater Res B Appl Biomater. 2006 Aug;78(2):385-92. doi: 10.1002/jbm.b.30499.

Abstract

Low molecular weight hyaluronan (HA) is proved to be active in stimulating endothelial cell (EC) proliferation. The study is to obtain biological active HA fragments of defined length from high molecular weight HA for angiogenesis research. A novel method, by a high-voltage polyacrylamide-gel electrophoresis (PAGE) that uses specific fluorophore labeling, was developed to identify the degraded products digested from native high molecular weight HA. The polymer HA was digested by hyaluornidase partially, and the enzymatic fragments of HA or HA oligosaccharides (o-HAs) were analyzed for molecular sizes by a combination of PAGE, high-performance liquid chromatography (HPLC), and mass spectrometry (MS). The purified HA oligomers were pooled and the biological effects of the mixtures on EC proliferation were studied, by separating the digests of HA fragments by size exclusion chromatography on a Bio-Gel P-10 column. The prepared o-HAs were collected and analyzed by a series of methods, PAGE, HPLC, and MS, which indicated a mixture of oligosaccharides covering a range of different sizes from 4 to 20-mer. The minimal molecular size determined by the special PAGE was 2 disaccharide, and the method can determine o-HA mass as high as 10 disaccharide (seeing the least clear band as much as possible on gel). Fractions containing HA fragments with sizes from 4 to 20-mer were pooled by distinct oligosaccharide species and added to the culture of pig endothelial cell (PIEC) for biological activities study. A significant increase in EC proliferation was found in comparison with nondigested high molecular weight HA. Our results suggested that o-HA can be obtained by a method of fluorophore-labeled olyacrylamide gel electrophoresis for identifying as small as 4-mer oligomer HA from high molecular weight HA-digested products. This method was proved to be sensitive, simple, and rapid in characterizing saccharides, which may be used by replacing the complicated ways of HPLC and MS. The prepared o-HA was found to be active in stimulating EC proliferation.

摘要

低分子量透明质酸(HA)被证明在刺激内皮细胞(EC)增殖方面具有活性。本研究旨在从高分子量HA中获取特定长度的生物活性HA片段用于血管生成研究。开发了一种新方法,即通过使用特定荧光团标记的高压聚丙烯酰胺凝胶电泳(PAGE)来鉴定从天然高分子量HA消化得到的降解产物。将聚合物HA用透明质酸酶部分消化,通过PAGE、高效液相色谱(HPLC)和质谱(MS)相结合的方法分析HA的酶解片段或HA寡糖(o-HAs)的分子大小。将纯化的HA寡聚物合并,并通过在Bio-Gel P-10柱上进行尺寸排阻色谱分离HA片段的消化物,研究混合物对EC增殖的生物学效应。收集制备的o-HAs并通过一系列方法进行分析,包括PAGE、HPLC和MS,结果表明其为一系列不同大小的寡糖混合物,范围从4聚体到20聚体。通过特殊PAGE确定的最小分子大小为2个二糖,该方法可测定高达10个二糖的o-HA质量(在凝胶上尽可能使最不清晰的条带可见)。将含有大小为4聚体到20聚体的HA片段的级分按不同寡糖种类合并,并添加到猪内皮细胞(PIEC)培养物中进行生物学活性研究。与未消化的高分子量HA相比,发现EC增殖有显著增加。我们的结果表明,通过荧光团标记的聚丙烯酰胺凝胶电泳方法可以从高分子量HA消化产物中获得o-HA,用于鉴定低至4聚体的寡聚体HA。该方法在糖类表征方面被证明是灵敏、简单且快速的,可替代HPLC和MS等复杂方法。所制备的o-HA被发现具有刺激EC增殖的活性。

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