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Nano+tricalcium phosphate/collagen materials with improvedbiostability for bone replacement applications

机译:纳米+磷酸钙/胶原型材料,具有改进的骨替代应用

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Three mixtures of collagen (COL) solution and nano-P-tricalcium phosphate (n-(3-TCP) powder, with dry weight ratios of 1:1; 1:2.6 and 1:5, respectively were prepared. After freeze-drying, porous three-dimensional (3D) scaffolds were obtained. COL/P-n-TCP scaffolds were chemically crosslinked by treatment with carbodiimide. The crosslinking degree, assessed by quantification of free amine groups, decreased with increasing n-P-TCP quantities. In vitro degradation test showed a better biostability of the chemically cross-linked scaffolds over non-treated ones. All crosslinked scaffolds presented a good cytocompatibility and supported cell proliferation at 48 h and 72 h after cell seeding. These results indicated that EDC cross-linked COL/n-P-TCP scaffolds are potential candidates for bone substitutes with enhanced biostability and good biocompatibility.
机译:制备三种胶原(COL)溶液和纳米P-磷酸钙(N-(3-TCP)粉末的三种混合物,具有1:1; 1:2.6和1:5的干重比。在冷冻干燥后,获得多孔的三维(3D)支架。COL / PN-TCP支架通过用碳二亚胺处理化学交联。通过量化游离胺基评价的交联度随着NP-TCP量的增加而降低。体外降解试验在细胞播种后,所有交联支架在未处理的那些上,所有交联支架在48小时和72小时的情况下呈现出良好的细胞相容性和支持的细胞增殖。这些结果表明EDC交联Col / NP- TCP支架是骨替代品的潜在候选者,具有增强的生物稳定性和良好的生物相容性。

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