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3D Chitin Scaffolds of Marine Demosponge Origin for Biomimetic Mollusk Hemolymph-Associated Biomineralization Ex-Vivo

机译:仿生软体动物血淋巴相关的生物矿化前海洋生物的3D几丁质脚手架支架。

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摘要

Structure-based tissue engineering requires large-scale 3D cell/tissue manufacture technologies, to produce biologically active scaffolds. Special attention is currently paid to naturally pre-designed scaffolds found in skeletons of marine sponges, which represent a renewable resource of biomaterials. Here, an innovative approach to the production of mineralized scaffolds of natural origin is proposed. For the first time, a method to obtain calcium carbonate deposition ex vivo, using living mollusks hemolymph and a marine-sponge-derived template, is specifically described. For this purpose, the marine sponge and the terrestrial snail were selected as appropriate 3D chitinous scaffold and as hemolymph donor, respectively. The formation of calcium-based phase on the surface of chitinous matrix after its immersion into hemolymph was confirmed by Alizarin Red staining. A direct role of mollusks hemocytes is proposed in the creation of fine-tuned microenvironment necessary for calcification ex vivo. The X-ray diffraction pattern of the sample showed a high CaCO amorphous content. Raman spectroscopy evidenced also a crystalline component, with spectra corresponding to biogenic calcite. This study resulted in the development of a new biomimetic product based on ex vivo synthetized ACC and calcite tightly bound to the surface of 3D sponge chitin structure.
机译:基于结构的组织工程需要大规模的3D细胞/组织制造技术,才能生产具有生物活性的支架。目前,人们特别注意在海洋海绵的骨架中发现的自然预先设计的支架,这些支架代表了生物材料的可再生资源。在这里,提出了一种创新的方法来生产天然来源的矿化支架。首次特别描述了一种使用活的软体动物的血淋巴和海洋海绵衍生的模板离体获得碳酸钙沉积的方法。为此,分别选择海洋海绵和陆地蜗牛作为合适的3D几丁质支架和​​血淋巴供体。茜素红染色证实了几丁质基质浸入淋巴液后在其表面形成了钙基相。提出了在制备离体钙化所必需的微调微环境中,软体动物血细胞的直接作用。样品的X射线衍射图显示出高的CaCO无定形含量。拉曼光谱法也证明是结晶成分,其光谱对应于生物方解石。这项研究导致开发了一种新的仿生产品,该产品基于离体合成的ACC和方解石紧密结合到3D海绵甲壳质结构的表面。

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