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柳珊瑚骨针有机基质的化学、组织化学及显微镜观察。与阿尔新蓝染色及钙结合的关系。

Chemistry, histochemistry and microscopy of the organic matrix of spicules from a gorgonian coral. Relationship to alcian blue staining and calcium binding.

作者信息

Goldberg W M

机构信息

Department of Biological Sciences, Florida International University, Miami 33199.

出版信息

Histochemistry. 1988;89(2):163-70. doi: 10.1007/BF00489919.

DOI:10.1007/BF00489919
PMID:2899571
Abstract

Alcian blue dye normally binds to polyanionic, polymeric substances. Such structures are often associated with calcium binding portions of the organic matrix in calcifying tissues. The organic matrix of spicules prepared from the gorgonian Pseudoplexaura flagellosa (Houttuyn) is alcianophilic. The dye is very tightly bound to the lipoid portion of the insoluble spicule matrix. No acidic substances (sulfated or acidic polysaccharides or phospholipids) were demonstrable in this material, suggesting an unusual but unknown interaction between dye and substrate. On a microscopical basis, inclusion of Alcian blue (or Ruthenium red) is an essential co-requisite to glutaraldehyde fixation. Without the dye the morphological integrity of the spicule is lost on decalcification. The fragmented matrix is still alcianophilic suggesting that the dye may substitute for material solubilized by the decalcifying agents. Examination of post-decalcification supernatants demonstrate that approximately 13% of the matrix is solubilized on demineralization, releasing 93% of the carbohydrate but less than 20% of the protein. Liberated protein takes the form of peptides ranging from 1100-1500 daltons. The composition of these peptides is a function of the demineralizing agent. Acidic demineralizers produce peptides proportionately high in acidic amino acids, that do not bind calcium. Peptides produced by chelator decalcification appear to bind calcium but other evidence strongly suggests that the binding is due to adsorbed chelator rather than by soluble matrix.

摘要

阿尔新蓝染料通常与多阴离子聚合物质结合。此类结构常与钙化组织有机基质中的钙结合部分相关。由鞭状拟软珊瑚(胡特恩)制备的骨针有机基质具有嗜阿尔新蓝性。该染料与不溶性骨针基质的类脂部分紧密结合。在这种材料中未检测到酸性物质(硫酸化或酸性多糖或磷脂),这表明染料与底物之间存在一种不寻常但未知的相互作用。在显微镜下,加入阿尔新蓝(或钌红)是戊二醛固定的必要共同条件。没有这种染料,骨针在脱钙时会失去形态完整性。破碎的基质仍然具有嗜阿尔新蓝性,这表明染料可能替代了被脱钙剂溶解的物质。对脱钙后上清液的检测表明,脱矿质化过程中约13%的基质被溶解,释放出93%的碳水化合物,但释放的蛋白质不到20%。释放的蛋白质呈肽的形式,分子量在1100 - 1500道尔顿之间。这些肽的组成取决于脱钙剂。酸性脱钙剂产生的肽中酸性氨基酸比例相对较高,这些肽不结合钙。螯合剂脱钙产生的肽似乎结合钙,但其他证据有力地表明这种结合是由于吸附的螯合剂而非可溶性基质。

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