水族鱼类与温度神经药理学。更新。

Alexander L. Urakov, Evgeny L. Fisher, Andrey А. Lebedev, P. Shabanov
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引用次数: 0

摘要

研究表明,20 世纪末,俄罗斯开始研究在实验和临床条件下,各种生物对象在常温和低温条件下,抗缺氧药物和一些神经刺激药物的特定药理活性对温度的依赖性。21 世纪初,一个水族鱼类急性缺氧的原始生物模型被开发出来。通过该模型,可以开始研究鱼类对缺氧的抵抗力,筛选生物活性物质,并评估正常体温和低体温条件下抗缺氧剂的活性。使用该模型的第一批结果得出结论,鱼类在急性缺氧条件下的运动活动动态与子宫内胎儿在孕妇自主呼吸暂停造成的诊断性宫内缺氧条件下的运动活动动态相似。研究发现,鱼类和胎儿在缺氧条件下不动状态的持续时间值与其对缺氧的抵抗力值成正比。研究发现,在急性缺氧条件下,将浮在水中的鱼的水温降低到 10 °C,可使鱼的不动期和存活期延长 2 倍以上。研究还发现,乙醇、局部麻醉剂和全身麻醉剂等神经刺激药物可完全消除正常人在局部低体温时出现的疼痛综合征。此外,研究还表明,将酒精中毒和/或手术麻醉者的手浸泡在融化的冰水中 2 分钟,可消除手部的疼痛感,并使手部皮肤随后出现的充血现象比正常情况下加快 2 倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aquarium fish and temperature neuropharmacology. Update.
It is shown that at the end of the 20th century in Russia studies of temperature dependence of specific pharmacological activity of antihypoxants and some neurotropic drugs under normo- and hypothermia of various biological objects in experimental and clinical conditions were started. At the beginning of the 21st century, an original biological model of acute hypoxia in aquarium fish was developed. This model made it possible to start the study of fish resistance to hypoxia, to screen biologically active substances and to evaluate the activity of antihypoxants under normo- and hypothermia. The first results of using this model allowed to conclude that the dynamics of motor activity of fish under conditions of acute hypoxia is similar to the dynamics of motor activity of fetuses inside the uterus under diagnostic intrauterine hypoxia created by voluntary apnea in a pregnant woman. It was found that the value of the duration of the period of immobile state of fish and fetuses under hypoxia is directly proportional to the value of their resistance to hypoxia. It was found that the reduction in conditions of acute hypoxia water temperature with floating fish in it on 10 °C lengthens the duration of the period of immobile state of fish and the period of preservation of their viability more than 2 times, and the preliminary introduction of hydrogen peroxide in the water in the therapeutic dose in combination with hypothermia lengthens the corresponding periods by 4 times. It has also been found that such neurotropic drugs as ethyl alcohol, local and general anesthetics will completely eliminate the pain syndrome that develops during local hypothermia in normal. In addition, it has been shown that immersing the hands of people under alcohol intoxication and/or surgical anesthesia in water with melting ice for 2 minutes eliminates the feeling of pain in the hands and accelerates the development of subsequent hyperemia in the skin of the hands by 2 times compared to the norm.
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