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'Magic bullets' for bone diseases: progress in rational design of bone-seeking medicinal agents

机译:骨骼疾病的“魔术子弹”:寻骨药物的合理设计进展

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An ideal therapeutic agent for bone diseases should act solely on bone tissue with no pharmacological activity at other anatomical sites. Current therapeutic agents, however, do not usually display a preferential affinity to bones and non-specifically distribute throughout the body after administration. Attempts to design bone-specific agents have relied on engineering a desired therapeutic agent with bone-seeking molecules so that the latter delivers the therapeutic agents specifically to bones. In this critical review, we summarize the latest attempts to engineer bone-seeking therapeutic agents based on formulating therapeutic agents with bisphosphonates, a class of compounds with high affinity to biological apatite. We first provide a relevant summary of the structure of bone mineral and bisphosphonates, highlighting the mode of interaction between these two entities. The use of bisphosphonates in the diagnosis of bone diseases is then presented, since this application helps us to understand the bone-carrier properties of bisphosphonates under physiological conditions. A summary of recent attempts to formulate bisphosphonates with traditional therapeutic agents to restrict their activities to bone tissues is then provided, with special emphasis on the structure-function relationships of the engineered compounds. Finally, attempts to use bisphosphonates to deliver macromolecular therapeutics (i.e., proteins) are summarized, based on recent data from the authors' lab. The collective research into bone-seeking medicinal agents is progressively laying the foundation for next-generation 'magic bullets' that display desirable activities at the disease sites with no undesirable activity on other organ systems.
机译:理想的骨疾病治疗剂应仅作用于骨组织,而在其他解剖部位没有药理活性。然而,当前的治疗剂通常在施用后通常不显示对骨骼的优先亲和力并且非特异性地分布在全身。设计骨特异性药剂的尝试依赖于用寻骨分子工程化期望的治疗剂,从而后者将治疗剂特异性地递送至骨骼。在这篇重要的综述中,我们总结了基于与双膦酸盐(一种对生物磷灰石具有高亲和力的化合物)配制治疗剂来设计寻骨治疗剂的最新尝试。我们首先提供有关骨矿物质和双膦酸盐结构的相关摘要,重点介绍这两个实体之间的相互作用方式。然后介绍了双膦酸盐在骨疾病诊断中的用途,因为这种应用有助于我们了解在生理条件下双膦酸盐的骨载体性质。然后提供了最近用传统治疗剂配制双膦酸盐以限制其对骨组织的活性的尝试的摘要,其中特别强调了工程化合物的结构-功能关系。最后,根据作者实验室的最新数据,总结了使用双膦酸盐来递送大分子治疗剂(即蛋白质)的尝试。寻求骨骼的药物的集体研究正在逐步为下一代“魔术子弹”奠定基础,这些“子弹”在疾病部位表现出理想的活性,而在其他器官系统上却没有不良活性。

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