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生物活性玻璃诱导人脂肪干细胞成骨分化依赖于细胞黏附机制和丝裂原活化蛋白激酶。

Bioactive glass induced osteogenic differentiation of human adipose stem cells is dependent on cell attachment mechanism and mitogen-activated protein kinases.

机构信息

University of Tampere, ARVO / BMT / Regenerative Medicine / Adult Stem Cell Group, 33014 University of Tampere,

出版信息

Eur Cell Mater. 2018 Jan 30;35:54-72. doi: 10.22203/eCM.v035a05.

Abstract

Bioactive glasses (BaGs) are widely utilised in bone tissue engineering (TE) but the molecular response of cells to BaGs is poorly understood. To elucidate the mechanisms of cell attachment to BaGs and BaG-induced early osteogenic differentiation, we cultured human adipose stem cells (hASCs) on discs of two silica-based BaGs S53P4 (23.0 Na2O - 20.0 CaO - 4.0 P2O5 - 53.0 SiO2 (wt-%)) and 1-06 (5.9 Na2O - 12.0 K2O - 5.3 MgO - 22.6 CaO - 4.0 P2O5 - 0.2 B2O3 - 50.0 SiO2) in the absence of osteogenic supplements. Both BaGs induced early osteogenic differentiation by increasing alkaline phosphatase activity (ALP) and the expression of osteogenic marker genes RUNX2a and OSTERIX. Based on ALP activity, the slower reacting 1-06 glass was a stronger osteoinducer. Regarding the cell attachment, cells cultured on BaGs had enhanced integrinβ1 and vinculin production, and mature focal adhesions were smaller but more dispersed than on cell culture plastic (polystyrene). Focal adhesion kinase (FAK), extracellular signal-regulated kinase (ERK1/2) and c-Jun N-terminal kinase (JNK)-induced c-Jun phosphorylations were upregulated by glass contact. Moreover, the BaG-stimulated osteoinduction was significantly reduced by FAK and mitogen-activated protein kinase (MAPK) inhibitors, indicating an important role for FAK and MAPKs in the BaG-induced early osteogenic commitment of hASCs. Upon indirect insert culture, the ions released from the BaG discs could not reproduce the observed cellular changes, which highlighted the role of direct cell-BaG interactions in the osteopotential of BaGs. These findings gave valuable insight into the mechanism of BaG-induced osteogenic differentiation and therefore provided knowledge to aid the future design of new functional biomaterials to meet the increasing demand for clinical bone TE treatments.

摘要

生物活性玻璃(BaGs)广泛应用于骨组织工程(TE),但细胞对 BaGs 的分子反应知之甚少。为了阐明细胞附着在 BaGs 上的机制以及 BaG 诱导的早期成骨分化,我们在两种基于硅的 BaGs S53P4(23.0 Na2O-20.0 CaO-4.0 P2O5-53.0 SiO2(wt-%))和 1-06(5.9 Na2O-12.0 K2O-5.3 MgO-22.6 CaO-4.0 P2O5-0.2 B2O3-50.0 SiO2)的圆片上培养人脂肪干细胞(hASCs),而无需添加成骨补充剂。两种 BaG 均通过增加碱性磷酸酶活性(ALP)和骨形成标志物基因 RUNX2a 和 OSTERIX 的表达来诱导早期成骨分化。基于 ALP 活性,反应较慢的 1-06 玻璃是更强的成骨诱导剂。关于细胞附着,在 BaG 上培养的细胞增加了整合素β1 和 vinculin 的产生,成熟的焦点粘连更小,但比细胞培养塑料(聚苯乙烯)更分散。玻璃接触后,粘着斑激酶(FAK)、细胞外信号调节激酶(ERK1/2)和 c-Jun N-末端激酶(JNK)诱导的 c-Jun 磷酸化上调。此外,FAK 和丝裂原活化蛋白激酶(MAPK)抑制剂显著降低了 BaG 刺激的成骨诱导,表明 FAK 和 MAPKs 在 hASCs 的 BaG 诱导早期成骨承诺中起重要作用。在间接插入培养中,从 BaG 圆片释放的离子不能复制观察到的细胞变化,这突出了直接细胞-BaG 相互作用在 BaGs 成骨潜力中的作用。这些发现深入了解了 BaG 诱导成骨分化的机制,从而为未来设计新的功能生物材料提供了知识,以满足日益增长的临床骨 TE 治疗需求。

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