Usseglio Julie, Dumur Adeline, Pagès Esther, Renaudie Émeline, Abélanet Alice, Brie Joël, Champion Éric, Magnaudeix Amandine
Université de Limoges, CNRS, Institut de Recherche sur les Céramiques, UMR 7315, F-87000 Limoges, France.
J Funct Biomater. 2023 Sep 5;14(9):460. doi: 10.3390/jfb14090460.
Incorporation of silicate ions in calcium phosphate ceramics (CPC) and modification of their multiscale architecture are two strategies for improving the vascularization of scaffolds for bone regenerative medicine. The response of endothelial cells, actors for vascularization, to the chemical and physical cues of biomaterial surfaces is little documented, although essential. We aimed to characterize in vitro the response of an endothelial cell line, C166, cultivated on the surface CPCs varying either in terms of their chemistry (pure versus silicon-doped HA) or their microstructure (dense versus microporous). Adhesion, metabolic activity, and proliferation were significantly altered on microporous ceramics, but the secretion of the pro-angiogenic VEGF-A increased from 262 to 386 pg/mL on porous compared to dense silicon-doped HA ceramics after 168 h. A tubulogenesis assay was set up directly on the ceramics. Two configurations were designed for discriminating the influence of the chemistry from that of the surface physical properties. The formation of tubule-like structures was qualitatively more frequent on dense ceramics. Microporous ceramics induced calcium depletion in the culture medium (from 2 down to 0.5 mmol/L), which is deleterious for C166. Importantly, this effect might be associated with the in vitro static cell culture. No influence of silicon doping of HA on C166 behavior was detected.
将硅酸根离子掺入磷酸钙陶瓷(CPC)并改变其多尺度结构是改善骨再生医学支架血管化的两种策略。内皮细胞作为血管化的关键参与者,对生物材料表面化学和物理信号的反应虽至关重要,但相关研究报道较少。我们旨在体外表征内皮细胞系C166在不同化学组成(纯HA与硅掺杂HA)或微观结构(致密与微孔)的CPC表面上的反应。在微孔陶瓷上,细胞的黏附、代谢活性和增殖均有显著改变,但在168小时后,与致密硅掺杂HA陶瓷相比,多孔陶瓷上促血管生成的VEGF - A分泌量从262 pg/mL增加到386 pg/mL。直接在陶瓷上进行了小管形成试验。设计了两种配置以区分化学组成和表面物理性质的影响。致密陶瓷上定性地更频繁形成管状样结构。微孔陶瓷导致培养基中钙耗竭(从2 mmol/L降至0.5 mmol/L),这对C166细胞有害。重要的是,这种效应可能与体外静态细胞培养有关。未检测到HA的硅掺杂对C166细胞行为有影响。