首页> 外文期刊>日本セラミックス協会学術論文誌 >Bioactive PMMA-Based Bone Cement Modified with Methacryloxypropyltrimethoxysilane and Calcium Salts-Effects of Calcium Salts on Apatite-Forming Ability-
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Bioactive PMMA-Based Bone Cement Modified with Methacryloxypropyltrimethoxysilane and Calcium Salts-Effects of Calcium Salts on Apatite-Forming Ability-

机译:甲基丙烯酰氧基丙基三甲氧基硅烷和钙盐改性的基于生物活性PMMA的骨水泥-钙盐对磷灰石形成能力的影响-

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摘要

Bone cement consisting of polymethylmethacrylate (PMMA) powder and methylmethacrylate (MMA) liquid is clinically used for fixation of implants such as artificial hip joints.However,it does not show bone-bond-ing abili,i.e.bioactivity.The essential prerequisite for an artificialmaterial to bond to bone is the fomation of an apatite layer on its surface when implanted in a bony defect.This apatite layer can be,for example,formed in a simulated body fluid (Kokubo solution) with ion concentrations similar to those of human extracellular fluid.The present authors recently showed the potential of bioactive PMMA-baed bone cement through modification with gamma-methacryloxypropyltrimethoxysilane (MPS) and calcium chlorides.In this study,the effects of the kinds of calcium salts on apatite-forming ability were examined bgy exposure to Kokubo solution.PMMA powder (molecular weight of 100000 and 14 mum in average particle size) was mixed with 20 mass% of calcium salts consisting of calcium chloride (CaCl_2),calcium acetate (Ca(CH_3COO)_2),calcium hydroxide (Ca(OH)_2),calcium lactate (Ca(CH_3CHOHCOO)_2,calcium acetate (Ca(CH_3COO)_2),calcium lactate (Ca(CH_3CHOHCOO)_2),calcium benzonate (Ca(C_6H_5COO)_2) and calcium methacrylate (Ca(CH_2=C(CH_3)COO)_2),while 20 mass% of MPS was added in the MMA liquid.The appropriate setting time was obtained by the usage of calcium acetate or calcium lactate,although the modification with MPS and calcium salts leads to an elongation of the setting time of the cement.Apatite formation could be detected after soaking in Kokubo solution for 1 d when the cements were modified with calcium chloride,calcium acetate,or calcium methacrylate.Apatite formation could be observed on the modification with MPS and calcium salts leads to an elongation of the setting time of the cement.Apatite formation could be detected after soaking in Kokubo solution for 1 d when the cements were modified with calcium chloride,calcium acetate,or calcium methacrylate.Apatite formation could be observed on the modified cement with calcium hydroxide after 7 d of soaking in Kokubo solution.The higher solubility of calcium salts allows for a higher rate of apatite formation in Kokubo solution.Furthermore,changes in pH after exposure of the cement are related to the apatite-forming ability,because the addition of calcium hydroxide also gives the cement the abiity of apatite formation,even if the cement relases a small amount of calcium ions into the surrounding fluid.Smaller dissolution of calcium salts results in less decrease in compressive strength after exposure to a body environment.The release of calcium ions,followed by changes in pH,must be controlled to achieve a successful design of bioactive PMMA bone cement by modificaiton with MPS and calcium salts.
机译:由聚甲基丙烯酸甲酯(PMMA)粉末和甲基丙烯酸甲酯(MMA)液体组成的骨水泥在临床上用于固定植入物,例如人造髋关节。但是,它不表现出骨结合能力,即生物活性。人造材料的必要前提与骨粘合的是植入骨缺损时表面磷灰石层的形成。例如,这种磷灰石层可以在离子液浓度类似于人体细胞外液的模拟体液(小久保溶液)中形成。本作者最近显示了通过用γ-甲基丙烯酰氧基丙基三甲氧基硅烷(MPS)和氯化钙进行改性来制造具有生物活性的PMMA骨水泥的潜力。在这项研究中,研究了各种钙盐对磷灰石形成能力的影响。小久保溶液。将PMMA粉末(分子量为100000,平均粒径为14微米)与20质量%的由氯化钙组成的钙盐混合de(CaCl_2),醋酸钙(Ca(CH_3COO)_2),氢氧化钙(Ca(OH)_2),乳酸钙(Ca(CH_3CHOHCOO)_2,醋酸钙(Ca(CH_3COO)_2),乳酸钙(Ca(CH_3CHOHCOO) )_2),苯甲酸钙(Ca(C_6H_5COO)_2)和甲基丙烯酸钙(Ca(CH_2 = C(CH_3)COO)_2),同时在MMA液体中添加20质量%的MPS。使用乙酸钙或乳酸钙,尽管用MPS和钙盐进行改性会延长水泥的凝固时间。将水泥浸泡在小久保溶液中1 d后可以检测到磷灰石的形成。 ,醋酸钙或甲基丙烯酸钙。MPS改性后会观察到磷灰石的形成,钙盐会延长水泥的凝固时间。将水泥在久久保溶液中浸泡1 d后可以检测到磷灰石的形成。用氯化钙,醋酸钙或甲基丙烯酸钙改性。在Kokubo溶液中浸泡7 d后,可以观察到改性水泥与氢氧化钙的形成。钙盐的溶解度越高,在Kokubo溶液中形成磷灰石的速率越高。此外,水泥暴露后pH的变化是与磷灰石的形成能力有关,因为加入氢氧化钙也使水泥具有磷灰石形成的亲和力,即使水泥将少量钙离子释放到周围流体中。在pH值变化之后,必须控制钙离子的释放,以通过MPS和钙盐修饰来成功设计出具有生物活性的PMMA骨水泥。

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