首页> 外文期刊>Journal of biomedical materials research, Part A >Novel low temperature setting nanocrystalline calcium phosphate cements for bone repair: osteoblast cellular response and gene expression studies.
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Novel low temperature setting nanocrystalline calcium phosphate cements for bone repair: osteoblast cellular response and gene expression studies.

机译:用于骨修复的新型低温凝固纳米晶磷酸钙水泥:成骨细胞反应和基因表达研究。

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Low temperature setting calcium phosphate cements (CPC) formed from reactive calcium phosphate precursors are receiving great attention in the fields of orthopaedics and tissue engineering. The purpose of this study was to evaluate the mechanical properties and osteocompatibility of a novel calcium deficient hydroxyapatite (CDSHA) with a Ca/P ratio of 1.6 developed in our laboratories and compare it to a previously developed calcium deficient hydroxyapatite (CDHA) with a Ca/P ratio of 1.5. The results demonstrated that the calcium-deficient hydroxyapatites (HA) formed from the CPCs were similar to biological HA at physiological temperature and the elastic moduli of CDHA and CDSHA were found to be 174.42 +/- 20.41 MPa (p < 0.05) and 115.86 +/- 24.8 MPa (p < 0.05), respectively. The surface morphologies of the two calcium deficient HA's formed were identical with a microano porous structure as evidenced from SEM. The cellular proliferation on CDHA, and CDSHA, was comparable to the control, tissue culture polystyrene (TCPS) (p < 0.05). Alkaline phosphatase activity was significantly elevated on CDHA and CDSHA matrices at early time points when compared with the control (TCPS) (p < 0.05). Osteoblast cells gene expression on CDHA, and CDSHA showed type I collagen, alkaline phosphatase, osteocalcin, and osteopontin activity at both 7 and 14 days of culture. Thus, novel calcium-deficient HAs, CDHA, and CDSHA formed at low temperature are promising candidates for orthopaedic applications based on their ability to promote osteoblast cell adhesion and gene expression in vitro.
机译:由反应性磷酸钙前体形成的低温凝固型磷酸钙水泥(CPC)在整形外科和组织工程领域受到极大关注。这项研究的目的是评估我们实验室中开发的Ca / P比为1.6的新型钙缺乏羟基磷灰石(CDSHA)的力学性能和骨相容性,并将其与先前开发的具有Ca的钙缺乏羟基磷灰石(CDHA)进行比较/ P比为1.5。结果表明,在生理温度下,由CPC形成的缺钙羟基磷灰石(HA)与生物HA相似,并且CDHA和CDSHA的弹性模量为174.42 +/- 20.41 MPa(p <0.05)和115.86 +分别为24.8 MPa(p <0.05)。由SEM证明,形成的两个缺钙HA的表面形态与微/纳米多孔结构相同。 CDHA和CDSHA上的细胞增殖与对照组织培养聚苯乙烯(TCPS)相当(p <0.05)。与对照组(TCPS)相比,在早期时间点,CDHA和CDSHA基质上的碱性磷酸酶活性显着提高(p <0.05)。在培养的第7天和第14天,CDHA和CDSHA上的成骨细胞基因表达均显示出I型胶原,碱性磷酸酶,骨钙素和骨桥蛋白活性。因此,在低温下形成的新型缺钙型HAs,CDHA和CDSHA基于其在体外促进成骨细胞粘附和基因表达的能力,有望成为骨科应用的候选者。

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