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Structural Requirements for Bisphosphonate Bindingon Hydroxyapatite: NMR Study of Bisphosphonate Partial Esters

机译:双膦酸酯结合的结构要求磷灰石的合成:双膦酸酯部分酯的NMR研究

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摘要

Eighteen different bisphosphonates, including four clinically used bisphosphonate acids and their phosphoesters, were studied to evaluate how the bisphosphonate structure affects binding to bone. Bisphosphonates with weak bone affinity, such as clodronate, could not bind to hydroxyapatite after the addition of one ester group. Medronate retained its ability to bind after the addition of one ester group, and hydroxy-bisphosphonates could bind even after the addition of two ester groups. Thus, several bisphosphonate esters are clearly bone binding compounds. The following conclusions about bisphosphonate binding emerge: (1) a hydroxyl group in the geminal carbon takes part in the binding process and increases the bisphosphonate’s ability to bind to bone; (2) the bisphosphonate’s ability to bind decreases when the amount of ester groups increases; and (3) the location of the ester groups affects the bisphosphonate’s binding ability.
机译:研究了18种不同的双膦酸酯,包括四种临床上使用的双膦酸酯酸及其磷酸酯,以评估双膦酸酯结构如何影响与骨骼的结合。加入一个酯基后,具有弱骨亲和力的双膦酸盐(例如氯膦酸盐)不能与羟基磷灰石结合。甲磺酸盐在添加一个酯基后仍保持其结合能力,羟基双膦酸酯甚至在加入两个酯基后也可以结合。因此,几种双膦酸酯显然是骨结合化合物。关于双膦酸酯结合的结论如下:(1)双子碳的羟基参与结合过程,并增强了双膦酸酯与骨骼的结合能力; (2)当酯基的数量增加时,双膦酸酯的结合能力降低; (3)酯基的位置会影响双膦酸酯的结合能力。

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