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β-磷酸三钙/高密度聚乙烯新型骨科复合材料的体外生物学评价:一项使用人成骨细胞和成纤维骨细胞的研究

In vitro biological evaluation of beta-TCP/HDPE--A novel orthopedic composite: a survey using human osteoblast and fibroblast bone cells.

作者信息

Homaeigohar S Sh, Shokrgozar M A, Khavandi A, Sadi A Yari

机构信息

National Cell Bank of Iran, Pasteur Institute of Iran, Tehran, Iran.

出版信息

J Biomed Mater Res A. 2008 Feb;84(2):491-9. doi: 10.1002/jbm.a.31473.

Abstract

Beta-tricalcium phosphate reinforced high density polyethylene (beta-TCP/HDPE) was prepared to simulate bone composition and to study its capacity to act as bone tissue. This material was produced by replacing the mineral component and collagen soft tissue of the bone with beta-TCP and HDPE, respectively. The biocompatibility of the composite samples with different volume fractions of TCP (20, 30 and 40 vol %) was examined in vitro using two osteoblast cell lines G-292 and Saos-2, and also a type of fibroblast cell isolated from bone tissue, namely human bone fibroblast (HBF) by proliferation, and cell adhesion assays. Cell-material interaction with the surface of the composite samples was examined by scanning electron microscopy (SEM). The effect of beta-TCP/HDPE on the behavior of osteoblast and fibroblast cells was compared with those of composite and negative control samples; polyethylene (PE) and tissue culture polystyrene (TPS), respectively. In general, the results showed that the composite samples containing beta-TCP as reinforcement supported a higher rate of proliferation by various bone cells after 3, 7, and 14 days of incubation compared to the composite control sample. Furthermore, more osteoblast cells were attached to the surface of the composite samples when compared to the composite control samples after the above incubation periods (p < 0.05), while in the case of HBF an equal or even higher number of cells adhered to PE was observed. The number of adhered osteoblast cells was almost equal and in some days even higher than the number of adhered cells on negative control sample, while in the case of fibroblast this difference was significantly higher than TPS (p < 0.05). Adhered cells presented a normal morphology by SEM and many of the cells were observed to be undergoing cell division. These findings indicate that beta-TCP/HDPE composites are biocompatible, nontoxic, and act to stimulate proliferation and adhesion of the cells, whether osteoblast or fibroblast.

摘要

制备了β-磷酸三钙增强高密度聚乙烯(β-TCP/HDPE)以模拟骨成分并研究其作为骨组织的能力。该材料是通过分别用β-TCP和HDPE替代骨的矿物质成分和胶原软组织而制成的。使用两种成骨细胞系G-292和Saos-2,以及从骨组织分离的一种成纤维细胞系,即人骨成纤维细胞(HBF),通过增殖和细胞粘附试验,在体外检测了不同体积分数TCP(20、30和40体积%)的复合样品的生物相容性。通过扫描电子显微镜(SEM)检查细胞与复合样品表面的相互作用。将β-TCP/HDPE对成骨细胞和成纤维细胞行为的影响分别与复合对照样品、阴性对照样品(聚乙烯(PE)和组织培养聚苯乙烯(TPS))进行了比较。总体而言,结果表明,与复合对照样品相比,含有β-TCP作为增强剂的复合样品在孵育3、7和14天后,各种骨细胞的增殖率更高。此外,在上述孵育期后,与复合对照样品相比,更多的成骨细胞附着在复合样品表面(p<0.05),而在HBF的情况下,观察到附着在PE上的细胞数量相等甚至更多。附着的成骨细胞数量几乎相等,在某些天甚至高于附着在阴性对照样品上的细胞数量,而在成纤维细胞的情况下,这种差异明显高于TPS(p<0.05)。通过SEM观察,附着的细胞呈现正常形态,并且观察到许多细胞正在进行细胞分裂。这些发现表明,β-TCP/HDPE复合材料具有生物相容性、无毒,并且能够刺激成骨细胞或成纤维细胞的增殖和粘附。

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