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The Effect of Space Travel on Bone Metabolism: Considerations on Today’s Major Challenges and Advances in Pharmacology

机译:空间旅行对骨代谢的影响:对当今主要挑战和药理学进步的考虑

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摘要

Microgravity-induced bone loss is currently a significant and unresolved health risk for space travelers, as it raises the likelihood for irreversible changes that weaken skeletal integrity and the incremental onset of fracture injuries and renal stone formation. Another issue related to bone tissue homeostasis in microgravity is its capacity to regenerate following fractures due to weakening of the tissue and accidental events during the accomplishment of particularly dangerous tasks. Today, several pharmacological and non-pharmacological countermeasures to this problem have been proposed, including physical exercise, diet supplements and administration of antiresorptive or anabolic drugs. However, each class of pharmacological agents presents several limitations as their prolonged and repeated employment is not exempt from the onset of serious side effects, which limit their use within a well-defined range of time. In this review, we will focus on the various countermeasures currently in place or proposed to address bone loss in conditions of microgravity, analyzing in detail the advantages and disadvantages of each option from a pharmacological point of view. Finally, we take stock of the situation in the currently available literature concerning bone loss and fracture healing processes. We try to understand which are the critical points and challenges that need to be addressed to reach innovative and targeted therapies to be used both in space missions and on Earth.
机译:微重力诱导的骨质损失目前是空间旅行者的重要和未解决的健康风险,因为它提高了不可逆变化的可能性,骨骼完整性减弱和骨折损伤和肾脏地层的增量发作。与骨组织稳态有关的微生物稳态的另一个问题是由于在完成特别危险的任务过程中由于组织和意外事件而导​​致的骨折的能力。如今,已经提出了对该问题的几种药理和非药理学对策,包括体育锻炼,饮食补充剂和抗血栓药物或合成药物的给药。然而,每种药理剂都呈现出几个限制,因为它们的延长和反复就业不豁免出现严重副作用,这限制了其在明确规定的时间范围内的使用。在本综述中,我们将专注于目前到位或提出的各种对策或提出解决微匍匐条件下的骨质损失,详细分析了来自药理学观点的每个选择的优缺点。最后,我们在目前可用文献中占据了骨丢失和骨折治疗过程的情况。我们试图了解哪些是需要解决的关键点和挑战,以达到创新和有针对性的疗法,以便在太空任务和地球上使用。

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