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聚环氧乙烷/聚对苯二甲酸丁二醇酯共聚物(Polyactive)在颅骨系统中的界面行为:一项体外研究。

Interfacial behavior of PEO/PBT copolymers (Polyactive) in a calvarial system: an in vitro study.

作者信息

Radder A M, Davies J E, Leenders H, van Blitterswijk C A

机构信息

Laboratory for Otobiology and Biocompatibility, University of Leiden, The Netherlands.

出版信息

J Biomed Mater Res. 1994 Feb;28(2):269-77. doi: 10.1002/jbm.820280218.

Abstract

Polyactive, a polyethylene oxide/polybutylene terephthalate (PEO/PBT) copolymer, has been reported to display bone-bonding behavior. Although a detailed description of the in vivo bone/Polyactive interface is available, the underlying bone-bonding mechanism is still largely unknown. In this in vitro study, a calvarial envelope method has been adopted to reproduce the in vivo bone-bonding phenomenon and subsequently to obtain information on the biological effect of varying PEO/PBT segment ratios. The following PEO/PBT ratios were examined: 70/30, 60/40, 55/45, 40/60, and 30/70. Light microscopy (LM) and scanning (SEM), transmission (TEM), and backscatter electron microscopy (BSE), as well as X-ray microanalysis (XRMA), were employed. Within the period of analysis (3 weeks), an intimate contact between mineralized deposition and the 70/30, 60/40, and, to a lesser extent, the 55/45 surface was observed. Calcified areas developed within the surface of these PEO/BPT proportions during the culture period. Needle-shaped crystals from the mineralized tissue compartment and from calcified areas within the materials surface were intermingled at the interface, providing a morphologic continuity. A cellular layer was interposed with the mineralization front and the noncalcified 40/60 and 30/70 substrates. Apparently, the percentage of PEO is important for calcification within the near surface of the polymer. This relation is such that the higher the PEO content in PEO/PBT ratios, the more rapid the calcification. The occurrence of material calcification is considered to be largely responsible for the subsequent interfacial interactions. The calvarial envelope culture method allows not only reproduction of the in vivo bone/Polyactive interface, but also a relatively rapid differentiation within the range of PEO/PBT ratios.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

聚活性物质,一种聚环氧乙烷/聚对苯二甲酸丁二醇酯(PEO/PBT)共聚物,已被报道具有骨结合行为。尽管已有关于体内骨/聚活性物质界面的详细描述,但潜在的骨结合机制仍很大程度上未知。在这项体外研究中,采用了颅盖包囊法来重现体内骨结合现象,并随后获取有关不同PEO/PBT链段比例的生物学效应的信息。研究了以下PEO/PBT比例:70/30、60/40、55/45、40/60和30/70。使用了光学显微镜(LM)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、背散射电子显微镜(BSE)以及X射线微分析(XRMA)。在分析期(3周)内,观察到矿化沉积物与70/30、60/40以及在较小程度上与55/45表面之间有紧密接触。在培养期间,这些PEO/BPT比例的表面形成了钙化区域。来自矿化组织隔室和材料表面钙化区域的针状晶体在界面处相互交织,提供了形态学上的连续性。在矿化前沿与未钙化的40/60和30/70底物之间有一层细胞。显然,PEO的百分比对于聚合物近表面的钙化很重要。这种关系是,PEO/PBT比例中PEO含量越高,钙化越快。材料钙化的发生被认为在很大程度上导致了随后的界面相互作用。颅盖包囊培养法不仅可以重现体内骨/聚活性物质界面,还能在PEO/PBT比例范围内实现相对快速的分化。(摘要截短于250字)

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