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首页> 外文期刊>Materials science & engineering >Bioglass 45S5: Structural characterization of short range order and analysis of biocompatibility with adipose-derived mesenchymal stromal cells in vitro and in vivo
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Bioglass 45S5: Structural characterization of short range order and analysis of biocompatibility with adipose-derived mesenchymal stromal cells in vitro and in vivo

机译:Bioglass 45S5:短程有序结构表征以及与脂肪来源的间充质基质细胞在体外和体内的生物相容性分析

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摘要

Bioactive glasses have potential applications in the field of regenerative medicine due to their bioactivity that permits interaction with both hard and soft tissues. In the same way, mesenchymal stromal cells (MSCs) have been experimentally tested as part of engineered constructs considering their self-renewal and multipotent capacities. However, to design an association, it is crucial to investigate the physical properties of bioglass 45S5, as well as its biocompatibility. Therefore, we investigated the structural short range order of the stoichiometric 45S5, by obtaining its total structure factors (S(K)) and total pair distribution function G(r). The in vitro compatibility of human MSCs with 45S5 was verified by viability, morphometry and osteoinduction assays, F-actin staining and scanning electron (SEM) analysis. The compatibility outcome was verified through a subcutaneous implantation in a murine model by grafting the 45S5 as a scaffold for allogeneic MSCs. The cell-substrate modulation includes the maintenance of the MSC viability and osteoinduction potential after being exposed to the 45S5 extract. A low spreading during cell adhesion was detected. Both normal actin cytoskeleton organization and nuclei irregularities were observed, besides an increase of hydroxyapatite (HA) depositions around cells. Cells showed satisfactory compatibility patterns when growing over 45S5 for 7, 30 and 90 days. The implant did not show any apparent toxicity for organs, or strong immunogenic reactions, and it was accompanied by a dense capsule formation around the graft. Our results indicate that MSCs can grow in the long term on the 45S5 while maintaining their characteristics. This fact, together with a non-toxicity to animals means that the 45S5 can be implemented in pre-clinical trials aiming MSC's transplantation leading to further bone and tissue repair.
机译:生物活性玻璃由于其生物活性可与硬组织和软组织相互作用,因此在再生医学领域具有潜在的应用。以相同的方式,考虑到它们的自我更新和多能能力,间充质基质细胞(MSCs)已作为工程构建体的一部分进行了实验测试。但是,要设计一个关联,研究生物玻璃45S5的物理性质及其生物相容性至关重要。因此,我们通过获得其总结构因子(S(K))和总对分布函数G(r),研究了化学计量45S5的结构短程顺序。通过可行性,形态测定和骨诱导测定,F-肌动蛋白染色和扫描电子(SEM)分析,验证了人MSC与45S5的体外相容性。通过将45S5移植为同种异体MSC的支架,通过在鼠模型中皮下植入来验证相容性结果。暴露于45S5提取物后,细胞底物的调节包括维持MSC的生存能力和骨诱导潜力。在细胞粘附期间检测到低扩散。除了增加了细胞周围羟基磷灰石(HA)沉积,还观察到了正常的肌动蛋白细胞骨架组织和细胞核不规则性。当在45S5上生长7天,30天和90天时,细胞显示出令人满意的相容性模式。植入物对器官没有表现出任何明显的毒性或强烈的免疫原性反应,并且在移植物周围伴随着致密的胶囊形成。我们的结果表明,MSC可以在45S5上长期生长,同时保持其特性。这一事实以及对动物的无毒意味着45S5可以在针对MSC移植的临床前试验中实施,从而进一步修复骨骼和组织。

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