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锶掺入溶胶-凝胶生物材料对其蛋白质吸附和细胞相互作用的影响。

The effect of strontium incorporation into sol-gel biomaterials on their protein adsorption and cell interactions.

机构信息

Departamento de Ingeniería de Sistemas Industriales y Diseño, Universitat Jaume I, Av. Vicent-Sos Baynat s/n. Castellón 12071. Spain.

Departamento de Ingeniería de Sistemas Industriales y Diseño, Universitat Jaume I, Av. Vicent-Sos Baynat s/n. Castellón 12071. Spain; Department of Medicine. Universitat Jaume I, Av. Vicent-Sos Baynat s/n. Castellón 12071. Spain.

出版信息

Colloids Surf B Biointerfaces. 2019 Feb 1;174:9-16. doi: 10.1016/j.colsurfb.2018.10.075. Epub 2018 Nov 1.

Abstract

It is known strontium can both inhibit the osteoclast formation and stimulate the osteoblast maturation, so biomaterials containing this element can favour bone structure stabilisation. The addition of Sr to biomaterials could affect their interactions with proteins and cells. Here, a silica-hybrid sol-gel network doped with different amounts of SrCl and applied as coatings on titanium discs was examined. in vitro analysis was performed to determine the potential effect of Sr in the coatings, showing enhanced gene expression of osteogenic markers (alkaline phosphatase and transforming growth factor-β) in MC3T3-E1 incubated with Sr-doped biomaterials. The examination of inflammatory markers (tumour necrosis factor-α and interleukin 10) in RAW 264.7 macrophages revealed an anti-inflammatory potential of these materials. Proteins adsorbed onto the coatings incubated with human serum (3 h at 37 °C) were also analysed; mass spectrometry was used to characterise the proteins adhering to materials with different Sr content. Adding Sr to the coatings increased their affinity to APOE and VTNC proteins (associated with anti-inflammatory and osteogenic functions). Moreover, the proteins involved in coagulation processes, such as prothrombin, were more abundant on the coatings containing Sr than on the base sol-gel surfaces. Correlations between gene expression and proteomic results were also examined.

摘要

已知锶既能抑制破骨细胞的形成,又能刺激成骨细胞的成熟,因此含有这种元素的生物材料可以促进骨结构的稳定。Sr 的添加可能会影响生物材料与蛋白质和细胞的相互作用。在这里,研究了掺杂不同量 SrCl 的二氧化硅-杂化溶胶-凝胶网络,并将其作为涂层应用于钛盘上。体外分析确定了涂层中 Sr 的潜在影响,结果表明,与掺杂 Sr 的生物材料孵育的 MC3T3-E1 中骨生成标志物(碱性磷酸酶和转化生长因子-β)的基因表达增强。在 RAW 264.7 巨噬细胞中检测到炎症标志物(肿瘤坏死因子-α和白细胞介素 10)表明这些材料具有抗炎潜力。还分析了在人血清中孵育 3 小时(37°C)的涂层吸附的蛋白质;使用质谱法对具有不同 Sr 含量的材料上附着的蛋白质进行了表征。在涂层中添加 Sr 会增加其对 APOE 和 VTNC 蛋白(与抗炎和成骨功能相关)的亲和力。此外,含有 Sr 的涂层上的凝血过程相关蛋白(如凝血酶原)比基溶胶-凝胶表面上的更丰富。还检查了基因表达和蛋白质组学结果之间的相关性。

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