首页> 外文期刊>Acta biomaterialia >Exposed hydroxyapatite particles on the surface of photo-crosslinked nanocomposites for promoting MC3T3 cell proliferation and differentiation.
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Exposed hydroxyapatite particles on the surface of photo-crosslinked nanocomposites for promoting MC3T3 cell proliferation and differentiation.

机译:光交联的纳米复合材料表面上暴露的羟基磷灰石颗粒可促进MC3T3细胞的增殖和分化。

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摘要

We present a systematic study for investigating the role of exposed hydroxyapatite (HA) nanoparticles in influencing surface characteristics and mouse pre-osteoblastic MC3T3-E1 cell behavior using nanocomposites prepared by photo-crosslinking poly(epsilon-caprolactone) diacrylate (PCLDA) with HA. PCLDA530 and PCLDA2000 synthesized from poly(epsilon-caprolactone) diol precursors with nominal molecular weights of 530 and 2000 g mol(-1) were used as the polymer matrices. Crosslinked PCLDA530 was amorphous while crosslinked PCLDA2000 was semi-crystalline. Crosslinked PCLDA/HA composites with different compositions of HA (10%, 20% and 30%) as well as crosslinked PCLDAs were characterized in terms of their composition-dependent physicochemical properties. The tensile, compressive and shear moduli were greatly enhanced by incorporating HA nanoparticles with the polymer matrices. The disk surfaces of original crosslinked PCLDA/HA nanocomposites were removed by cutting using a blade to expose HA nanoparticles that were embedded in the polymer substrates. The composition of HA was much higher on the cut surface, particularly in semi-crystalline crosslinked PCLDA2000/HA nanocomposites. The surface characteristics of original and cut crosslinked PCLDA/HA nanocomposites were compared and correlated with cell behavior on these nanocomposites. MC3T3-E1 cell attachment, proliferation and differentiation were significantly enhanced when the HA composition was increased in original crosslinked PCLDA/HA nanocomposites due to more bioactive HA, higher surface stiffness and rougher topography. More exposed HA on the surface of cut semi-crystalline PCLDA2000/HA nanocomposites resulted in improved hydrophilicity and significantly better MC3T3 cell attachment, proliferation and differentiation compared with the original surfaces. This study suggests that HA nanoparticles may not be fully exploited in polymer/HA nanocomposites where the top polymer surface covers the particles. The removal of this polymer layer can generate more desirable surfaces and osteoconductivity for bone repair and regeneration.
机译:我们提供了一个系统的研究,用于研究使用羟基交联的聚(ε-己内酯)二丙烯酸酯(PCLDA)制备的纳米复合材料制备的羟基磷灰石(HA)纳米粒子在影响表面特征和小鼠成骨前MC3T3-E1细胞行为中的作用。由标称分子量为530和2000 g mol(-1)的聚(ε-己内酯)二醇前体合成的PCLDA530和PCLDA2000被用作聚合物基质。交联的PCLDA530是无定形的,而交联的PCLDA2000是半结晶的。具有不同的HA组成(10%,20%和30%)的交联PCLDA / HA复合材料以及交联的PCLDA的组成依赖于其物理化学性质。通过将HA纳米粒子与聚合物基体结合在一起,可大大提高拉伸模量,压缩模量和剪切模量。通过使用刀片切割以去除原始的交联的PCLDA / HA纳米复合材料的磁盘表面,以暴露出嵌入聚合物基质中的HA纳米颗粒。 HA的成分在切面更高,尤其是在半结晶交联的PCLDA2000 / HA纳米复合材料中。比较了原始和切割的交联的PCLDA / HA纳米复合材料的表面特性,并将其与这些纳米复合材料上的细胞行为相关联。当原始的交联的PCLDA / HA纳米复合材料中的HA组成增加时,由于具有更高的生物活性HA,更高的表面刚度和更粗糙的地形,MC3T3-E1细胞的附着,增殖和分化得到了显着增强。与原始表面相比,切出的半结晶PCLDA2000 / HA纳米复合材料表面上更多的暴露HA可以改善亲水性,并显着改善MC3T3细胞的附着,增殖和分化。这项研究表明,HA纳米颗粒可能无法在聚合物/ HA纳米复合材料(聚合物顶部表面覆盖颗粒)中得到充分利用。去除该聚合物层可以产生更理想的表面和骨传导性,以用于骨修复和再生。

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