首页> 美国卫生研究院文献>British Journal of Experimental Pathology >Lipid extraction attenuates the calcific degeneration of bovine pericardium used in cardiac valve bioprostheses.
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Lipid extraction attenuates the calcific degeneration of bovine pericardium used in cardiac valve bioprostheses.

机译:脂质提取可减轻用于心脏瓣膜生物假体的牛心包的钙化变性。

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摘要

Bovine pericardial bioprostheses frequently fail due to dystrophic calcification. Since (a) recent studies indicate that membrane-associated complexed acidic phospholipids play an important role in the process of both physiologic and pathologic calcification, and (b) cytoplasmic organelles and plasma membrane of interstitial cells seem to serve as initial sites of calcific degeneration of bioprosthetic bovine pericardial tissue, this investigation was undertaken to evaluate whether, and if so, to what extent, the mineralization of valve tissue could be attenuated by previous lipid extraction. Pretreatment of glutaraldehyde-preserved bovine pericardium with acidified sulphuric ether (pH 3.0-4.0) attenuated calcification significantly: 28 days after subcutaneous implantation in young rats the degree of mineral deposition was approximately equal to typical 7 days implants in this model. The mechanism of this beneficial effect is suggested to be due to partial extraction of tissue phospholipids, as demonstrated by electron microscopy, thus reducing the number of available sites for deposition of hydroxyapatite crystals. In addition, and importantly, the present results indicate that any attempt to reduce cardiac valve bioprosthesis mineralization will have to take into account the role of lipids and, particularly, the membranous phospholipids in the calcification mechanism.
机译:牛心包生物假体经常由于营养不良性钙化而失败。由于(a)最近的研究表明,膜相关的复合酸性磷脂在生理和病理钙化过程中都起着重要作用,并且(b)间质细胞的细胞质细胞器和质膜似乎是钙化性钙变性的初始位点。生物修复的牛心包组织,进行了这项研究,以评估先前的脂质提取是否可以减轻瓣膜组织的矿化作用,如果可以的话,可以减轻到何种程度。用酸化的硫醚(pH 3.0-4.0)预处理戊二醛保存的牛心包,钙化作用显着减弱:皮下植入幼鼠后28天,矿物质沉积程度大约等于该模型中典型的7天植入物。据认为,这种有益作用的机理是由于组织磷脂的部分提取,如电子显微镜所证明的,从而减少了羟基磷灰石晶体沉积的可用位点的数量。另外,重要的是,目前的结果表明,任何减少心脏瓣膜生物假体矿化的尝试都必须考虑脂质,尤其是膜性磷脂在钙化机制中的作用。

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