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骨细胞对蓖麻聚氨酯与碱性磷酸酶复合物的反应。

Bone cell responses to the composite of Ricinus communis polyurethane and alkaline phosphatase.

作者信息

Beloti Marcio Mateus, de Oliveira Paulo Tambasco, Tagliani Marcela Martini, Rosa Adalberto Luiz

机构信息

Department of Morphology, Stomatology, and Physiology, School of Dentistry of Ribeirao Preto, University of Sao Paulo, Sao Paulo, Brazil.

出版信息

J Biomed Mater Res A. 2008 Feb;84(2):435-41. doi: 10.1002/jbm.a.31344.

Abstract

The aim of this study was to evaluate the response of osteoblastic cells to the composite of Ricinus communis polyurethane (RCP) and alkaline phosphatase (ALP) incubated in synthetic body fluid (SBF). RCP pure (RCPp) and RCP blended with ALP 6 mg/mL polymer (RCP+ALP) were incubated in SBF for 17 days. Four groups of RCP were tested: RCPp, RCP+ALP, and RCPp and RCP+ALP incubated in SBF (RCPp/SBF and RCP+ALP/SBF). Stem cells from rat bone marrow were cultured in conditions that allowed osteoblastic differentiation on RCP discs and were evaluated: cell adhesion, culture growth, cell viability, total protein content, ALP activity, and bone-like nodule formation. Data were compared by ANOVA or Kruskal-Wallis test. The group RCP+ALP was highly cytotoxic and, therefore, was not considered here. Cell adhesion (p = 0.14), culture growth (p = 0.39), viability (p = 0.46) and total protein content (p = 0.12) were not affected by either RCP composition or incubation in SBF. ALP activity was affected (p = 0.0001) as follows: RCPp < RCPp/SBF < RCP+ALP/SBF. Bone-like nodule formation was not observed on all evaluated groups. The composite RCP+ALP prior to SBF incubation is cytotoxic and must not be considered as biomaterial, but the incorporation of ALP to the RCP followed by SBF incubation could be a useful alternative to improve the biological properties of the RCP.

摘要

本研究的目的是评估成骨细胞对蓖麻聚氨酯(RCP)与碱性磷酸酶(ALP)在合成体液(SBF)中孵育形成的复合材料的反应。将纯RCP(RCPp)和与6 mg/mL聚合物ALP混合的RCP(RCP+ALP)在SBF中孵育17天。测试了四组RCP:RCPp、RCP+ALP以及在SBF中孵育的RCPp和RCP+ALP(RCPp/SBF和RCP+ALP/SBF)。将大鼠骨髓干细胞在允许其在RCP圆盘上向成骨细胞分化的条件下培养,并进行评估:细胞黏附、培养生长、细胞活力、总蛋白含量、ALP活性和骨样结节形成。数据通过方差分析或Kruskal-Wallis检验进行比较。RCP+ALP组具有高度细胞毒性,因此在此未予考虑。细胞黏附(p = 0.14)、培养生长(p = 0.39)、活力(p = 0.46)和总蛋白含量(p = 0.12)不受RCP组成或在SBF中孵育的影响。ALP活性受到影响(p = 0.0001),情况如下:RCPp < RCPp/SBF < RCP+ALP/SBF。在所有评估组中均未观察到骨样结节形成。SBF孵育前的RCP+ALP复合材料具有细胞毒性,不能被视为生物材料,但在RCP中加入ALP后再进行SBF孵育可能是改善RCP生物学特性的一种有用替代方法。

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