Laboratoire Microenvironnement Cellulaire et Pathologies (MILPAT), Equipe MIPDF, EA 4652, Normandie University, UNICAEN, BIOTARGEN, 14000, Caen, France.
UMR BOREA, Biologie des Organismes et Ecosystèmes Aquatiques, MNHN, UPMC, UCN, CNRS-7208, IRD-207, UFR des Sciences, Normandie University, UNICAEN, 14000, Caen, France.
Mar Biotechnol (NY). 2018 Aug;20(4):436-450. doi: 10.1007/s10126-018-9807-7. Epub 2018 Apr 7.
The shells of the bivalve mollusks are organo-mineral structures predominantly composed of calcium carbonate, but also of a minor organic matrix, a mixture of proteins, glycoproteins, and polysaccharides. These proteins are involved in mineral deposition and, more generally, in the spatial organization of the shell crystallites in well-defined microstructures. In this work, we extracted different organic shell extracts (acid-soluble matrix, acid-insoluble matrix, water-soluble matrix, guanidine HCl/EDTA-extracted matrix, referred as ASM, AIM, WSM, and EDTAM, respectively) from the shell of the scallop Pecten maximus and studied their biological activities on human articular chondrocytes (HACs). We found that these extracts differentially modulate the biological activities of HACs, depending on the type of extraction and the concentration used. Furthermore, we showed that, unlike ASM and AIM, WSM promotes maintenance of the chondrocyte phenotype in monolayer culture. WSM increased the expression of chondrocyte-specific markers (aggrecan and type II collagen), without enhancing that of the main chondrocyte dedifferentiation marker (type I collagen). We also demonstrated that WSM could favor redifferentiation of chondrocyte in collagen sponge scaffold in hypoxia. Thus, this study suggests that the organic matrix of Pecten maximus, particularly WSM, may contain interesting molecules with chondrogenic effects. Our research emphasizes the potential use of WSM of Pecten maximus for cell therapy of cartilage.
双壳贝类的贝壳主要由碳酸钙组成,但也含有少量的有机基质,是蛋白质、糖蛋白和多糖的混合物。这些蛋白质参与矿物质沉积,更广泛地说,参与贝壳结晶在明确定义的微结构中的空间组织。在这项工作中,我们从扇贝 Pecten maximus 的贝壳中提取了不同的有机贝壳提取物(酸溶性基质、酸不溶性基质、水溶性基质、胍盐酸盐/EDTA 提取的基质,分别称为 ASM、AIM、WSM 和 EDTAM),并研究了它们对人关节软骨细胞(HAC)的生物学活性。我们发现,这些提取物根据提取类型和使用浓度的不同,差异调节 HAC 的生物学活性。此外,我们表明,与 ASM 和 AIM 不同,WSM 促进单层培养中软骨细胞表型的维持。WSM 增加了软骨细胞特异性标志物(聚集蛋白聚糖和 II 型胶原)的表达,而不增强主要软骨细胞去分化标志物(I 型胶原)的表达。我们还证明,WSM 可以促进缺氧条件下软骨细胞在胶原海绵支架中的再分化。因此,这项研究表明,扇贝 Pecten maximus 的有机基质,特别是 WSM,可能含有具有软骨生成作用的有趣分子。我们的研究强调了 Pecten maximus 的 WSM 用于软骨细胞治疗的潜在用途。