硅影响三维牙髓样基质中人牙髓干细胞的胶原重塑和矿化。

IF 4.6 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Dental Materials Pub Date : 2024-06-21 DOI:10.1016/j.dental.2024.06.021
Daline Mbitta Akoa, Christophe Hélary, Asmaa Foda, Catherine Chaussain, Anne Poliard, Thibaud Coradin
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引用次数: 0

摘要

目的:硅释放生物材料被广泛应用于牙科领域。然而,与骨骼不同,人们对硅在牙科组织形成和修复中的作用知之甚少。本研究调查了硅酸对三维类牙髓环境中人牙髓干细胞(hDPSCs)的存活、分化和矿化能力的影响 方法:在生理浓度(10 μM)和超生理浓度(100 μM)的硅酸存在下,用致密 I 型胶原水凝胶播种 hDPSCs,培养 4 周。细胞活力和增殖通过阿拉玛蓝和活体/死体染色法进行研究。使用二次谐波发生成像技术研究了胶原蛋白网络。通过组织学和扫描电子显微镜监测矿物质沉积。通过 qPCR 研究了矿化和基质重塑相关蛋白的基因表达:结果:硅酸的存在对细胞存活、代谢活性和关键矿化相关蛋白(ALP、OCN、BSP)的基因表达没有明显影响。然而,硅酸会增强细胞集群,延迟基质重塑相关蛋白(MMP13、Col I)的表达。OPN 的表达和矿物质沉积在 100 μM 时受到抑制。可以推断,硅酸对细胞没有直接作用,而是与胶原网络相互作用,导致细胞-基质界面的改变:我们的研究结果为牙髓覆盖硅酸钙生物材料释放的硅酸在修复性牙本质形成过程中可能发挥的作用提供了先进的见解。更广泛地说,这些结果探讨了硅在牙髓病理生理学中可能扮演的角色。
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Silicon impacts collagen remodelling and mineralization by human dental pulp stem cells in 3D pulp-like matrices.

Objectives: Silicon-releasing biomaterials are widely used in the field of dentistry. However, unlike bone, very little is known about the role of silicon on dental tissue formation and repair. This study investigates the influence of silicic acid on the survival, differentiation and mineralizing ability of human dental pulp stem cells (hDPSCs) in 3D pulp-like environments METHODS: Dense type I collagen hydrogels seeded with hDPSCs were cultured over 4 weeks in the presence of silicic acid at physiological (10 μM) and supraphysiological (100 μM) concentrations. Cell viability and proliferation were studied by Alamar Blue and live/dead staining. The collagen network was investigated using second harmonic generation imaging. Mineral deposition was monitored by histology and scanning electron microscopy. Gene expression of mineralization- and matrix remodeling-associated proteins was studied by qPCR.

Results: Presence of silicic acid did not show any significant influence on cell survival, metabolic activity and gene expression of key mineralization-related proteins (ALP, OCN, BSP). However, it induced enhanced cell clustering and delayed expression of matrix remodeling-associated proteins (MMP13, Col I). OPN expression and mineral deposition were inhibited at 100 μM. It could be inferred that silicic acid has no direct cellular effect but rather interacts with the collagen network, leading to a modification of the cell-matrix interface.

Significance: Our results offer advanced insights on the possible role of silicic acid, as released by pulp capping calcium silicates biomaterials, in reparative dentine formation. More globally, these results interrogate the possible role of Si in pulp pathophysiology.

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来源期刊
Dental Materials
Dental Materials 工程技术-材料科学:生物材料
CiteScore
9.80
自引率
10.00%
发文量
290
审稿时长
67 days
期刊介绍: Dental Materials publishes original research, review articles, and short communications. Academy of Dental Materials members click here to register for free access to Dental Materials online. The principal aim of Dental Materials is to promote rapid communication of scientific information between academia, industry, and the dental practitioner. Original Manuscripts on clinical and laboratory research of basic and applied character which focus on the properties or performance of dental materials or the reaction of host tissues to materials are given priority publication. Other acceptable topics include application technology in clinical dentistry and dental laboratory technology. Comprehensive reviews and editorial commentaries on pertinent subjects will be considered.
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