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褐藻糖胶的解聚作用与内切褐藻糖胶酶一起改变了与骨再生过程相关的生物活性。

Depolymerization of fucoidan with endo-fucoidanase changes bioactivity in processes relevant for bone regeneration.

机构信息

Experimental Trauma Surgery, Department of Orthopedics and Trauma Surgery, University Medical Center Schleswig-Holstein, 24105 Kiel, Germany.

Protein Chemistry and Enzyme Technology Section, DTU Bioengineering, Department of Biotechnology and Biomedicine, Technical University of Denmark, Building 221, 2800 Kongens Lyngby, Denmark.

出版信息

Carbohydr Polym. 2022 Jun 15;286:119286. doi: 10.1016/j.carbpol.2022.119286. Epub 2022 Feb 24.

Abstract

Fucoidans are polysaccharides from brown macroalgae, showing multiple bioactivities important for bone regeneration and bone health. However, the use of fucoidans in medical applications remains sparse due to the heterogeneity in their chemical properties and unclear structure-function relationships. Innovations in extraction techniques and post processing steps are needed to produce homogeneous fucoidan molecules with tailorable bioactivities. Here, we applied enzyme-assisted extraction coupled with enzymatic hydrolysis by Fhf1 fucoidanase to generate low (LMW) and medium molecular weight (MMW) fucoidans from Fucus evanescens. In contrast to the anti-angiogenic properties of the high molecular weight fucoidan, LMW and MMW no longer suppressed the production of pro-angiogenic molecules by bone stem cells, nor impaired the formation of prevascular structures in vitro. In contrast to LMW, a pro-inflammatory response of OEC was observed after treatment with high concentrations of MMW. Thus, fucoidanase hydrolysis could be a useful tool to tailor the bioactivity of fucoidans.

摘要

褐藻胶聚糖是来自褐藻的多糖,具有多种生物活性,对骨再生和骨骼健康很重要。然而,由于其化学性质的异质性和结构-功能关系不明确,褐藻胶聚糖在医学应用中的使用仍然很少。需要创新的提取技术和后处理步骤来生产具有可定制生物活性的均一褐藻胶聚糖分子。在这里,我们应用酶辅助提取结合 Fhf1 褐藻胶聚糖酶的酶解作用,从泡叶藻中生成低分子量(LMW)和中分子量(MMW)褐藻胶聚糖。与高分子量褐藻胶的抗血管生成特性相比,LMW 和 MMW 不再抑制骨髓基质细胞产生促血管生成分子,也不损害体外预血管结构的形成。与 LMW 相反,用高浓度 MMW 处理后观察到 OEC 的促炎反应。因此,褐藻胶聚糖酶水解可以是一种有用的工具来调整褐藻胶聚糖的生物活性。

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