Filová Elena, Suchý Tomáš, Sucharda Zbyněk, Supová Monika, Zaloudková Margit, Balík Karel, Lisá Věra, Slouf Miroslav, Bačáková Lucie
Department of Biomaterials and Tissue Engineering, Institute of Physiology, Prague, Czech Republic.
Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics, Academy of Sciences of the Czech Republic, Prague, Czech Republic ; Laboratory of Biomechanics, Department of Mechanics, Biomechanics and Mechatronics, Faculty of Mechanical Engineering, CTU in Prague, Prague, Czech Republic.
Int J Nanomedicine. 2014 Aug 6;9:3687-706. doi: 10.2147/IJN.S56661. eCollection 2014.
Hydroxyapatite (HA) is considered to be a bioactive material that favorably influences the adhesion, growth, and osteogenic differentiation of osteoblasts. To optimize the cell response on the hydroxyapatite composite, it is desirable to assess the optimum concentration and also the optimum particle size. The aim of our study was to prepare composite materials made of polydimethylsiloxane, polyamide, and nano-sized (N) or micro-sized (M) HA, with an HA content of 0%, 2%, 5%, 10%, 15%, 20%, 25% (v/v) (referred to as N0-N25 or M0-M25), and to evaluate them in vitro in cultures with human osteoblast-like MG-63 cells. For clinical applications, fast osseointegration of the implant into the bone is essential. We observed the greatest initial cell adhesion on composites M10 and N5. Nano-sized HA supported cell growth, especially during the first 3 days of culture. On composites with micro-size HA (2%-15%), MG-63 cells reached the highest densities on day 7. Samples M20 and M25, however, were toxic for MG-63 cells, although these composites supported the production of osteocalcin in these cells. On N2, a higher concentration of osteopontin was found in MG-63 cells. For biomedical applications, the concentration range of 5%-15% (v/v) nano-size or micro-size HA seems to be optimum.
羟基磷灰石(HA)被认为是一种生物活性材料,对成骨细胞的黏附、生长和成骨分化具有积极影响。为了优化细胞对羟基磷灰石复合材料的反应,评估最佳浓度和最佳粒径是很有必要的。我们研究的目的是制备由聚二甲基硅氧烷、聚酰胺和纳米级(N)或微米级(M)HA组成的复合材料,HA含量为0%、2%、5%、10%、15%、20%、25%(体积/体积)(分别称为N0 - N25或M0 - M25),并在人成骨样MG - 63细胞培养物中进行体外评估。对于临床应用,植入物快速骨整合到骨中至关重要。我们观察到复合材料M10和N5上最初的细胞黏附最多。纳米级HA支持细胞生长,尤其是在培养的前3天。在含有微米级HA(2% - 15%)的复合材料上,MG - 63细胞在第7天达到最高密度。然而,样品M20和M25对MG - 63细胞有毒性,尽管这些复合材料支持这些细胞中骨钙素的产生。在N2上,MG - 63细胞中发现了更高浓度的骨桥蛋白。对于生物医学应用,5% - 15%(体积/体积)的纳米级或微米级HA浓度范围似乎是最佳的。