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Pharmacokinetic profile of bisphosphonates in the treatment of metabolic bone disorders

机译:双膦酸盐在代谢性骨疾病治疗中的药代动力学

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摘要

The pharmacokinetic profile of bisphosphonates is complex and depends on their potency in inhibiting bone resorption through their cellular effects and on the physicochemical action related to the interaction of these compounds with bone matrix. Amino-substituted bisphosphonates exert a more potent cellular effect on osteoclast via the inhibition of the mevalonate pathway, whereas non-nitrogen containing compounds exert a weaker effect deriving from the induction of intracellular metabolites in osteoclasts. For nitrogen-containing bisphosphonates there is a correlation between in vitro potency of inhibition of a specific enzyme, farnesyl pyrophosphate synthase, and their antiresorptive potency in vivo. Besides these effects on osteoclasts, bisphosphonates may in part mediate indirectly their antiresoprtive activity through several effects on osteoblasts and osteocytes. Different binding affinities of bisphopshonates to hydroxyapatite depend on both side chains structures and may explain how these drugs reach bone cells and exert their prolonged action in terms of adsorption and desorption processes. Clinical and animal-models derived data indicate that agents with high anti-resorptive potency, favourable bone binding characteristics and good tolerability can be used with long between-dose intervals to optimize therapeutic outcomes.
机译:双膦酸盐的药代动力学特征很复杂,取决于它们通过细胞作用抑制骨吸收的能力以及与这些化合物与骨基质相互作用有关的理化作用。氨基取代的双膦酸酯通过抑制甲羟戊酸途径对破骨细胞发挥更有效的细胞作用,而不含氮的化合物则由于在破骨细胞中诱导细胞内代谢产物而产生较弱的作用。对于含氮的双膦酸盐,在体外对特定酶,法呢基焦磷酸合酶的抑制能力与其在体内的抗吸收能力之间存在相关性。除了对破骨细胞的这些作用外,双膦酸盐还可能通过对成骨细胞和骨细胞的多种作用而间接地间接介导其抗再吸收活性。双膦酸酯与羟基磷灰石的不同结合亲和力取决于两个侧链结构,并可以解释这些药物如何到达骨细胞并在吸附和解吸过程中发挥其延长的作用。临床和动物模型得出的数据表明,可以在较长的剂量间隔内使用具有高抗吸收效力,良好的骨结合特性和良好的耐受性的药物来优化治疗效果。

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