首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Inhibition of mineralization of glutaraldehyde-pretreated bovine pericardium by AlCl3. Mechanisms and comparisons with FeCl3 LaCl3 and Ga(NO3)3 in rat subdermal model studies.
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Inhibition of mineralization of glutaraldehyde-pretreated bovine pericardium by AlCl3. Mechanisms and comparisons with FeCl3 LaCl3 and Ga(NO3)3 in rat subdermal model studies.

机译:AlCl3抑制戊二醛预处理的牛心包的矿化作用。在大鼠皮下模型研究中与FeCl3LaCl3和Ga(NO3)3的机理与比较。

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摘要

In the present study, the authors investigated the mechanism by which Al3+ preincubations inhibited the pathologic calcification of glutaraldehyde-pretreated bovine pericardium (GPBP) implanted subdermally in rats. The concentration dependency of the Al3+ anticalcification effect was compared with that of other trivalent metal ions (Fe3+, Ga3+, La3+) known to interact with calcium phosphates. In vitro incubations of GPBP were carried out in AlCl3 (10(-3) mol/l [molar] to 10(-1) mol/l) to ascertain both the optimal conditions for uptake of Al3+ and the time course of Al3+ dissociation. Al3+ uptake by GPBP was concentration dependent and occurred rapidly, with tissue levels after 1 hour not differing significantly from those after 72 hours of incubation. Analyses of GPBP samples preincubated in AlCl3 (0.1 mol/l, 24 hours) showed that more than 75% of the Al3+ remained tightly bound after 60 days' in vitro release at 37 degrees C, pH 7.4. Preincubations of GPBP in AlCl3 significantly inhibited calcification after subdermal implantation in rats for 60 days (Ca++ = 5.1 +/- 0.9 microgram/mg, 11.5 +/- 4.6 micrograms/mg, 70.3 +/- 23.0 micrograms/mg, mean +/- standard error [SE], for 10(-1) mol/l, 10(-2) mol/l, 10(-3) mol/l AlCl3, respectively), compared with controls (Ca++ = 110.0 +/- 9.3 micrograms/mg). All animals were free of Al3(+)-mediated adverse effects on bone, as determined by light microscopic evaluation of femoral epiphyseal growth plates. Transmission electron microscopy coupled with electron energy loss spectroscopy (EELS) of GPBP incubated in 10(-1) mol l AlCl3 for 24 hours demonstrated discrete Al3+ localization in the sarcolemma and cytoplasmic and nuclear membranes of devitalized pericardial connective tissue cells at intracellular sites coincident with phosphorus loci. Similar intracellular localization remained prominent in explants removed after 60 days; no calcific deposits were noted in these specimens. Preincubations in Fe3+ but not Ga3+ and La3+ solutions yielded significant inhibition of GPBP calcification, which did not differ significantly from that provided by Al3- and had a comparable concentration dependency. Light microscopic examination (Prussian blue staining) and EELS of FeCl3-preincubated explants demonstrated Fe3+ localization within devitalized GPBP connective tissue cells. The authors conclude that Al3+ and Fe3+ significantly inhibit the pathologic mineralization of glutaraldehyde-pretreated bovine pericardium by mechanisms that are likely related to the high affinity of these cations for membrane associated and other intracellular phosphorus loci.
机译:在本研究中,作者研究了Al3 +预孵育抑制大鼠皮下植入戊二醛预处理的牛心包(GPBP)的病理性钙化的机制。将Al3 +抗钙化作用的浓度依赖性与已知与磷酸钙相互作用的其他三价金属离子(Fe3 +,Ga3 +,La3 +)的浓度依赖性进行了比较。 GPBP的体外温育是在AlCl3(10(-3)mol / l [molar]至10(-1)mol / l)中进行的,以确定摄取Al3 +的最佳条件和Al3 +解离的时间过程。 GPBP对Al3 +的吸收是浓度依赖性的,并且迅速发生,1小时后的组织水平与温育72小时后的组织水平没有显着差异。在AlCl3中预温育的GPBP样品的分析(0.1 mol / l,24小时)显示,在37℃,pH 7.4的体外释放60天后,超过75%的Al3 +保持紧密结合。在皮下植入大鼠60天后,AlCl3中GPBP的预培养显着抑制了钙化(Ca ++ = 5.1 +/- 0.9微克/毫克,11.5 +/- 4.6微克/毫克,70.3 +/- 23.0微克/毫克,平均值+/-标准误差[SE],分别为10(-1)mol / l,10(-2)mol / l,10(-3)mol / l AlCl3),与对照组相比(Ca ++ = 110.0 +/- 9.3微克/ mg)。所有动物都没有Al3(+)介导的对骨骼的不良影响,这是通过股骨骨phy生长板的光学显微镜评估确定的。在10(-1)mol l AlCl3中孵育24小时的GPBP的透射电子显微镜与电子能量损失谱(EELS)结合显示,Al3 +在失活的心包结缔组织细胞的胞膜内,与磷基因座。 60天后移出的外植体中,类似的细胞内定位仍然很明显。这些标本中未发现钙化沉积物。 Fe3 +溶液中的未孵育,但Ga3 +和La3 +溶液中的未孵育产生了对GPBP钙化的明显抑制作用,与​​Al3-所提供的没有明显差异,并且具有可比的浓度依赖性。 FeCl3预孵育的外植体的光学显微镜检查(普鲁士蓝染色)和EELS表明,Fe3 +在失活的GPBP结缔组织细胞内定位。作者得出结论,Al3 +和Fe3 +通过可能与这些阳离子对膜相关和其他细胞内磷基因座的高亲和力有关的机制,显着抑制了戊二醛预处理的牛心包的病理矿化。

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