治疗骨质疏松症的新靶点。

Werner E G Müller, Xiaohong Wang, Heinz C Schröder
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引用次数: 6

摘要

骨质疏松症是公共卫生系统面临的主要挑战之一,近年来,在治疗骨质疏松症的新药靶点发现方面取得了很大进展。在这些促进骨形成的新药物中,将骨合成代谢和骨分解代谢之间受损的平衡向骨合成方向转变的是无机聚合物,特别是无机多磷酸盐,它们对骨合成代谢标记蛋白的表达和羟基磷灰石的形成具有强烈的刺激作用。这些聚合物的成骨活性甚至可以通过与某些小分子(如槲皮素)结合来增强,或者如果与某些二价阳离子(如锶离子)结合,甚至可以显示其自身的生物活性。本章总结了新型抗骨质疏松药物的研究和开发的最新进展,特别关注基于无机聚合物和组合的潜在应用的治疗方法。
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New Target Sites for Treatment of Osteoporosis.

In the last few years, much progress has been achieved in the discovery of new drug target sites for treatment of osteoporotic disorders, one of the main challenging diseases with a large burden for the public health systems. Among these new agents promoting bone formation, shifting the impaired equilibrium between bone anabolism and bone catabolism in the direction of bone synthesis are inorganic polymers, in particular inorganic polyphosphates that show strong stimulatory effects on the expression of bone anabolic marker proteins and hydroxyapatite formation. The bone-forming activity of these polymers can even be enhanced by combination with certain small molecules like quercetin, or if given as functionally active particles with certain divalent cations like strontium ions even showing by itself biological activity. This chapter summarizes recent developments in the search and development of novel anti-osteoporotic agents, with a particular focus on therapeutic approaches based on the potential application of inorganic polymers and combinations.

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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
7
期刊介绍: Molecular biology has been providing an overwhelming amount of data on the structural components and molecular machineries of the cell and its organelles and the complexity of intra- and intercellular communication. The molecular basis of hereditary and acquired diseases is beginning to be unravelled, and profound new insights into development and evolutionary biology have been gained from molecular approaches. Progress in Molecular and Subcellular Biology summarises the most recent developments in this fascinating area of biology.
期刊最新文献
Inorganic Polyphosphate and F0F1-ATP Synthase of Mammalian Mitochondria. Inorganic Polyphosphate in Mitochondrial Energy Metabolism and Pathology. Inorganic Polyphosphate, Mitochondria, and Neurodegeneration. Polyphosphate in Chronic Wound Healing: Restoration of Impaired Metabolic Energy State. Biomimetic Polyphosphate Materials: Toward Application in Regenerative Medicine.
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