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深海热液细菌来源的罕见糖胺聚糖可改善工程化结缔组织中纤维状胶原蛋白的结构和成纤维细胞活性。

Unusual glycosaminoglycans from a deep sea hydrothermal bacterium improve fibrillar collagen structuring and fibroblast activities in engineered connective tissues.

机构信息

Biochemistry Department, Dental School, Paris Descartes University, PRES Sorbonne Paris Cité, 1 rue Maurice Arnoux, Montrouge 92120, France.

出版信息

Mar Drugs. 2013 Apr 23;11(4):1351-69. doi: 10.3390/md11041351.

Abstract

Biopolymers produced by marine organisms can offer useful tools for regenerative medicine. Particularly, HE800 exopolysaccharide (HE800 EPS) secreted by a deep-sea hydrothermal bacterium displays an interesting glycosaminoglycan-like feature resembling hyaluronan. Previous studies demonstrated its effectiveness to enhance in vivo bone regeneration and to support osteoblastic cell metabolism in culture. Thus, in order to assess the usefulness of this high-molecular weight polymer in tissue engineering and tissue repair, in vitro reconstructed connective tissues containing HE800 EPS were performed. We showed that this polysaccharide promotes both collagen structuring and extracellular matrix settle by dermal fibroblasts. Furthermore, from the native HE800 EPS, a low-molecular weight sulfated derivative (HE800 DROS) displaying chemical analogy with heparan-sulfate, was designed. Thus, it was demonstrated that HE800 DROS mimics some properties of heparan-sulfate, such as promotion of fibroblast proliferation and inhibition of matrix metalloproteinase (MMP) secretion. Therefore, we suggest that the HE800EPS family can be considered as an innovative biotechnological source of glycosaminoglycan-like compounds useful to design biomaterials and drugs for tissue engineering and repair.

摘要

海洋生物产生的生物聚合物可为再生医学提供有用的工具。特别是,深海热液细菌分泌的 HE800 胞外多糖 (HE800 EPS) 具有有趣的糖胺聚糖样特征,类似于透明质酸。先前的研究表明,它能有效促进体内骨再生,并支持培养中的成骨细胞代谢。因此,为了评估这种高分子量聚合物在组织工程和组织修复中的有用性,进行了含有 HE800 EPS 的体外重建结缔组织实验。我们表明,这种多糖可促进真皮成纤维细胞的胶原结构和细胞外基质的形成。此外,从天然的 HE800 EPS 中设计了一种低分子量硫酸化衍生物 (HE800 DROS),其化学结构与肝素硫酸酯类似。因此,证明了 HE800 DROS 模拟了肝素硫酸酯的一些特性,如促进成纤维细胞增殖和抑制基质金属蛋白酶 (MMP) 的分泌。因此,我们认为 HE800EPS 家族可被视为具有创新性的生物技术糖胺聚糖类似物来源,可用于设计组织工程和修复用的生物材料和药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea3b/3705409/4a62af9cb75f/marinedrugs-11-01351-g001.jpg

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