dos Santos E A, Farina M, Soares G A, Anselme K
Dep. de Eng. Metal. e de Materiais, COPPE/UFRJ, CP 68505, Rio de Janeiro, 21941-972, Brazil .
J Mater Sci Mater Med. 2008 Jun;19(6):2307-16. doi: 10.1007/s10856-007-3347-4. Epub 2007 Dec 23.
The main objective of this work was to evaluate the specific role of calcium phosphates surface energy on serum protein adsorption and human osteoblast adhesion, by isolating chemical effects from those caused by topography. Highly dense phosphate ceramics (single-phase hydroxyapatite HA and beta-tricalcium phosphates beta-TCP) presenting two distinct nano roughnesses were produced. Some samples were gold-sputter coated in order to conveniently mask the surface chemical effects (without modification of the original roughness) and to study the isolated effect of surface topography on cellular behavior. The results indicated that the nano topography of calcium phosphates strongly affected the protein adsorption process, being more important than surface chemistry. The seeding efficacy of osteoblasts was not affected nor by the topography neither by the calcium phosphate chemistries but the beta-TCP chemistry negatively influenced cell spreading. We observed that surface hydrophobicity is another way to change protein adsorption on surfaces. The decrease of the polar component of surface energy on gold-coated samples leaded to a decreased albumin and fibronectin adsorption but to an increased cell adhesion. Overall, this work contributes to better understand the role of topography and surface chemistry of calcium phosphates in serum protein adsorption and osteoblast adhesion.
这项工作的主要目的是通过将化学效应与形貌引起的效应分离,评估磷酸钙表面能在血清蛋白吸附和人成骨细胞黏附中的特定作用。制备了具有两种不同纳米粗糙度的高密度磷酸盐陶瓷(单相羟基磷灰石HA和β - 磷酸三钙β - TCP)。一些样品进行了金溅射涂层处理,以便方便地掩盖表面化学效应(不改变原始粗糙度),并研究表面形貌对细胞行为的孤立效应。结果表明,磷酸钙的纳米形貌强烈影响蛋白质吸附过程,比表面化学更重要。成骨细胞的接种效率既不受形貌影响,也不受磷酸钙化学性质影响,但β - TCP化学性质对细胞铺展有负面影响。我们观察到表面疏水性是改变表面蛋白质吸附的另一种方式。金涂层样品表面能极性成分的降低导致白蛋白和纤连蛋白吸附减少,但细胞黏附增加。总体而言,这项工作有助于更好地理解磷酸钙的形貌和表面化学在血清蛋白吸附和成骨细胞黏附中的作用。