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骨信号通路与骨质疏松症的治疗

Bone signaling pathways and treatment of osteoporosis.

作者信息

Gogakos Apostolos I, Cheung Moira S, Bassett Jh Duncan, Williams Graham R

机构信息

a Molecular Endocrinology Group, Imperial College London, MRC Clinical Sciences Centre, Room 7N2, 7th Floor Commonwealth Building, Hammersmith Hospital, Du Cane Road, London, W12 0NN, UK.

b Molecular Endocrinology Group, Imperial College London, MRC Clinical Sciences Centre, Room 7N2, 7th Floor Commonwealth Building, Hammersmith Hospital, Du Cane Road, London, W12 0NN, UK.

出版信息

Expert Rev Endocrinol Metab. 2009 Nov;4(6):639-650. doi: 10.1586/eem.09.38.

Abstract

Osteoporotic fractures are a major healthcare burden costing over US$50 billion/per year. Bone turnover is a continuous process regulated by the coupled activities of osteocytes, osteoclasts and osteoblasts that maintain bone mass and strength. Osteoclastic bone resorption is regulated by the RANKL/osteoprotegerin/RANK pathway, while osteoblastic bone formation is controlled by canonical Wnt signaling. Antiresorptive bisphosphonates remain the mainstay of treatment but recombinant parathyroid hormone is increasingly being used as an anabolic agent. Nevertheless, these drugs are limited by patient compliance, efficacy and cost. Cathepsin K inhibitors and RANKL antibodies have been developed as new antiresorptive drugs, while short-acting calcilytics and antibodies to Dickkopf-1 and sclerostin are promising anabolics. The recent identification of adipocytes and duodenal enterochromaffin cells as novel regulators of bone mass represent exciting opportunities for future drug development.

摘要

骨质疏松性骨折是一项重大的医疗负担,每年花费超过500亿美元。骨转换是一个由骨细胞、破骨细胞和成骨细胞的协同活动调节的持续过程,这些细胞维持骨量和骨强度。破骨细胞的骨吸收由RANKL/骨保护素/RANK通路调节,而成骨细胞的骨形成由经典Wnt信号通路控制。抗吸收双膦酸盐仍然是治疗的主要手段,但重组甲状旁腺激素越来越多地被用作合成代谢药物。然而,这些药物受到患者依从性、疗效和成本的限制。组织蛋白酶K抑制剂和RANKL抗体已被开发为新的抗吸收药物,而短效钙敏感受体激动剂以及针对Dickkopf-1和硬化蛋白的抗体是有前景的合成代谢药物。最近将脂肪细胞和十二指肠肠嗜铬细胞鉴定为骨量的新型调节因子,为未来药物开发带来了令人兴奋的机会。

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