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Marine-derived collagen biomaterials from echinoderm connective tissues

机译:棘皮动物结缔组织中海洋来源的胶原蛋白生物材料

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The use of marine collagens is a hot topic in the field of tissue engineering. Echinoderms possess unique connective tissues (Mutable Collagenous Tissues, MCTs) which can represent an innovative source of collagen to develop collagen barrier -membranes for Guided Tissue Regeneration (GTR). In the present work we used MCTs from different echinoderm models (sea urchin, starfish and sea cucumber) to produce echinoderm-derived collagen membranes (EDCMs). Commercial membranes for GTR or soluble/reassembled (fibrillar) bovine collagen substrates were used as controls. The three EDCMs were similar among each other in terms of structure and mechanical performances and were much thinner and mechanically more resistant than the commercial membranes. Number of fibroblasts seeded on sea urchin membranes were comparable to the bovine collagen substrates. Cell morphology on all EDCMs was similar to that of structurally comparable (reassembled) bovine collagen substrates. Overall, echinoderms, and sea urchins particularly, are alternative collagen sources to produce efficient GTR membranes. Sea urchins display a further advantage in terms of eco-sustainability by recycling tissues from food wastes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋胶原蛋白的使用是组织工程领域中的热门话题。棘皮动物具有独特的结缔组织(可变的胶原组织,MCT),可以代表胶原的创新来源,以开发用于引导组织再生(GTR)的胶原屏障膜。在目前的工作中,我们使用了来自不同棘皮动物模型(海胆,海星和海参)的MCT来生产棘皮动物衍生的胶原膜(EDCM)。用于GTR或可溶/重组(原纤维)牛胶原蛋白底物的商业膜用作对照。三种EDCM在结构和机械性能方面彼此相似,并且比市售膜要薄得多并且在机械上更具抵抗力。植入海胆膜上的成纤维细胞数量与牛胶原蛋白底物相当。所有EDCM上的细胞形态与结构可比(重新组装)的牛胶原蛋白底物相似。总体而言,棘皮动物尤其是海胆是生产高效GTR膜的替代胶原蛋白来源。通过从餐厨垃圾中回收纸巾,海胆在生态可持续性方面显示出更多优势。 (C)2016 Elsevier Ltd.保留所有权利。

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