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Appraisal of ozone as biologically active molecule and experimental tool in biomedical sciences

机译:评估作为生物活性分子的臭氧和生物医学科学的实验工具

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Ozone (O3) (CAS 10028-15-6) is a major air industrial pollutant and is well known for its very strong oxidative actions which affords the molecule its useful antimicrobial and deodorizing properties, but also its potential toxic effects. Knowledge of the activity and safety of ozone is important if its potential for use as a biologically active agent is to be realized, especially in view of the numerous unsubstantiated medicinal claims that are being made. To investigate ozone-induced oxidative stress as a model for investigating the neurobiology and treatment of certain central nervous system disorders, an experimental ozone inhalation model was developed to administer ozone to intact test animals following acute or chronic exposure. The model was successfully utilized to investigate the effect of dose and duration of exposure to ozone and its resultant effect on oxidative stress markers, depressive-like behaviours and response to antidepressant treatment. These studies demonstrate that the model not only is useful for studying the biological activity of ozone, but also for studying disorders of the brain associated with increased oxidative stress as well as the effects of altered redox status on drug treatment and response.
机译:臭氧(O 3 )(CAS 10028-15-6)是一种主要的空气工业污染物,以其非常强的氧化作用而闻名,该分子不仅具有有效的抗菌和除臭性能,而且潜在的毒性作用。如果要实现臭氧作为生物活性剂的潜力,那么了解臭氧的活性和安全性就很重要,尤其是考虑到正在提出的许多未经证实的医学要求。为了研究臭氧诱导的氧化应激作为研究某些中枢神经系统疾病的神经生物学和治疗的模型,开发了一种实验性的臭氧吸入模型,用于在急性或慢性暴露后对完整的测试动物施用臭氧。该模型已成功地用于研究剂量和暴露于臭氧的持续时间的影响及其对氧化应激标志物,抑郁样行为和抗抑郁药治疗反应的影响。这些研究表明,该模型不仅可用于研究臭氧的生物活性,而且可用于研究与氧化应激增加有关的大脑疾病以及氧化还原状态改变对药物治疗和反应的影响。

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    《Medicinal Chemistry Research》 |2011年第9期|p.1687-1695|共9页
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