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Stability of Antimicrobial Drug Molecules in Different Gravitational and Radiation Conditions in View of Applications during Outer Space Missions

机译:在外层空间任务期间应用不同引力和辐射条件下抗菌药物分子的稳定性

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摘要

The evolution of different antimicrobial drugs in terrestrial, microgravity and hypergravity conditions is presented within this review, in connection with their implementation during human space exploration. Drug stability is of utmost importance for applications in outer space. Instabilities may be radiation-induced or micro-/hypergravity produced. The antimicrobial agents used in space may have diminished effects not only due to the microgravity-induced weakened immune response of astronauts, but also due to the gravity and radiation-altered pathogens. In this context, the paper provides schemes and procedures to find reliable ways of fighting multiple drug resistance acquired by microorganisms. It shows that the role of multipurpose medicines modified at the molecular scale by optical methods in long-term space missions should be considered in more detail. Solutions to maintain drug stability, even in extreme environmental conditions, are also discussed, such as those that would be encountered during long-duration space exploratory missions. While the microgravity conditions may not be avoided in space, the suggested approaches deal with the radiation-induced modifications in humans, bacteria and medicines onboard, which may be fought by novel pharmaceutical formulation strategies along with radioprotective packaging and storage.
机译:在本综述中,在人类空间探索期间,在本综述中介绍了陆地,微重力和超高刻条件中不同抗菌药物的演变。药物稳定性对于外层空间的应用至关重要。不稳定性可以是产生的辐射诱导或微/超高图。太空中使用的抗菌剂可能不仅由于宇航员的微匍匐诱导的免疫应答而减少了效果,而且由于引力和辐射改变的病原体。在这种情况下,本文提供了方案和程序,以找到通过微生物获得的多种耐药性的可靠方式。它表明,通过光学方法在长期空间任务中修饰的多功能药物的作用应更详细地考虑。也讨论了维持药物稳定性的解决方案,即使在极端的环境条件下也是如此,例如在长期空间探索性任务期间遇到的解决方案。虽然在太空中可能无法避免微匍匐条件,但建议的方法处理船上的人,细菌和药物中的辐射诱导的修饰,这些方法可以通过新的药物制剂策略以及放射防护包装和储存来争夺。

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