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凝血因子吸附剂的扫描电子显微镜及电泳研究

Scanning electron microscopic and electrophoretic studies on clotting factor adsorbents.

作者信息

Deacon S L, Howell R M

出版信息

Thromb Haemost. 1976 Aug 31;36(1):60-70.

PMID:12591
Abstract

Physical studies carried out on a range of protein and clotting factor adsorbents revealed marked morphological and charge differences. Their appearance in the scanning electron microscope could be used to classify the insoluble precipitates, calcijm phosphate, barium sulphate and citrate, as either amorphorous or crystalline. Surface charge is difficult to define but the present studies on the sparingly-soluble salts, based on calcium and barium, have revealed that they can be subdivided on the basis of the presence or absence of a charge reversal point in the pH-mobility curve. The anion component appeared to determine this characteristic; it was noted that phosphate and citrate ions had a marked effect and gave a biased negative potential at all pH values. We concluded that where a divalent cation is cohabiting with a trivalent anion, the greater potential-determining ability of the latter will dominate the overall charge at the surface of a particle, even below pH7 and the absence of a positive potential gives a monophasic pH-mobility curve. Differences in both the physical appearance and electrophoretic mobility of the adsorbents studied reflect the wide variation in their chemical composition, especially among the various forms of calcium phosphate which, unlike barium sulphate, can include substituted ions such as hydroxyl, in their crystal lattice. The definition of these characteristics allows their behaviour towards clotting factors to be more easily predicted.

摘要

对一系列蛋白质和凝血因子吸附剂进行的物理研究揭示了明显的形态和电荷差异。它们在扫描电子显微镜下的外观可用于将不溶性沉淀物、磷酸钙、硫酸钡和柠檬酸盐分类为无定形或结晶形。表面电荷难以定义,但目前基于钙和钡的微溶性盐的研究表明,它们可以根据pH-迁移率曲线中是否存在电荷反转点进行细分。阴离子成分似乎决定了这一特性;值得注意的是,磷酸根离子和柠檬酸根离子有显著影响,并且在所有pH值下都产生偏向性的负电位。我们得出结论,当二价阳离子与三价阴离子共存时,后者更强的电位决定能力将主导颗粒表面的整体电荷,即使在pH7以下且不存在正电位时也会产生单相pH-迁移率曲线。所研究的吸附剂在物理外观和电泳迁移率方面的差异反映了它们化学成分的广泛变化,尤其是在各种形式的磷酸钙之间,与硫酸钡不同,磷酸钙在其晶格中可以包含诸如羟基等取代离子。这些特性的定义使得它们对凝血因子的行为更容易预测。

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