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孔雀石绿和酞菁银反应揭示了大鼠皮下模型中酸性磷脂参与猪主动脉瓣钙化过程。

Malachite green and phthalocyanine-silver reactions reveal acidic phospholipid involvement in calcification of porcine aortic valves in rat subdermal model.

作者信息

Ortolani F, Petrelli L, Nori S L, Gerosa G, Spina M, Marchini M

机构信息

Department of Medical and Morphological Research, University of Udine, Udine, Italy.

出版信息

Histol Histopathol. 2003 Oct;18(4):1131-40. doi: 10.14670/HH-18.1131.

Abstract

Subdermal implant models are helpful in the study of calcification "in vivo" and for testing anticalcific treatments. After implantation of porcine aortic valve leaflets in rat subcutis, we previously found that glutaraldehyde-Cuprolinic blue reactions (GA-CB) at low pH induce favourable tissue unmasking from mineral deposits, and visualize peculiar, electrondense layers that outline the calcifying cells and matrix vesicle-like structures. The layer-forming material seemed to consist of acidic phospholipids because of its anionic nature and differential susceptibility to chemical/enzymatic extractivity. In the present investigation, pre-embedding glutaraldehyde-Malachite green (GA-MG) reactions and subsequent osmium post-fixation were compared with pre-embedding GA-CB reactions, combined with post-embedding von Kossa silver staining (GA-CB-S), to assess whether the layer-forming material is actually composed of acidic phospholipids and exhibits calcium-binding properties. After lowering standard pH, GA-MG reactions also caused sample demineralization and the appearance of pericellular osmium-MG-reactive layers comparable to CB-reactive ones. Moreover, GA-CB-S reactions showed that major silver precipitation was superimposed to the CB-reactive layers, whereas minor metal extra-precipitation occurred at three distinct, additional sites. These results demonstrate that a unique process of cell degeneration occurs in this calcification model, in which acidic phospholipids accumulate at cell surface, replacing cell membrane and acting as major apatite nucleator. However, the overall observations are consistent with the hypothesis that certain phases are common to the various types of normal and/or abnormal calcification.

摘要

皮下植入模型有助于“体内”钙化研究及抗钙化治疗测试。在将猪主动脉瓣叶植入大鼠皮下后,我们之前发现低pH值下的戊二醛-铜试剂蓝反应(GA-CB)能使组织从矿物质沉积中良好地显露出来,并使勾勒钙化细胞和基质小泡样结构的特殊电子致密层可视化。由于其阴离子性质以及对化学/酶提取的不同敏感性,形成层的物质似乎由酸性磷脂组成。在本研究中,将预包埋的戊二醛-孔雀绿(GA-MG)反应及随后的锇后固定与预包埋的GA-CB反应相结合,并进行包埋后冯·科萨银染色(GA-CB-S),以评估形成层的物质是否实际上由酸性磷脂组成并具有钙结合特性。降低标准pH值后,GA-MG反应也导致样品脱矿,并出现与CB反应层相当的细胞周围锇-MG反应层。此外,GA-CB-S反应表明主要的银沉淀叠加在CB反应层上,而少量金属额外沉淀发生在三个不同的额外位点。这些结果表明,在这个钙化模型中发生了一个独特的细胞退化过程,其中酸性磷脂在细胞表面积累,取代细胞膜并作为主要的磷灰石成核剂。然而,总体观察结果与各种正常和/或异常钙化类型存在某些共同阶段的假设一致。

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