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一种诱导大鼠可逆性类似冬眠状态和低温的药理学组合物。

A pharmacological composition for induction of a reversible torpor-like state and hypothermia in rats.

机构信息

Institute of Cell Biophysics, RAS, Pushchino, Moscow Region 142290, Russia.

Institute of Cell Biophysics, RAS, Pushchino, Moscow Region 142290, Russia; Institute of Theoretical and Experimental Biophysics, RAS, Pushchino, Moscow Region 142290, Russia.

出版信息

Life Sci. 2019 Feb 15;219:190-198. doi: 10.1016/j.lfs.2019.01.023. Epub 2019 Jan 16.

Abstract

AIMS

To initiate a state of artificial torpor we suggested a pharmacological multi-targeting strategy for simulation of the physiological pattern of natural hibernation including a significant reduction in heart rate, respiratory rate, body temperature and oxygen consumption as well as a decline in brain activity known as torpor.

MATERIALS AND METHODS

We have developed a composition which initiates a pharmacologically induced torpor-like state (PITS-composition), made up of eight therapeutic agents, inert gas xenon and lipid emulsion served as a drug vehicle.

KEY FINDINGS

After a single intravenous injection to rats, PITS-composition causes a rapid decline in heart rate followed by a steady decrease in body temperature from about 38.5 °C to 31.5 °C, at ambient temperature of 22 °C-23 °C. The hypothermic state may continue on average for 16-17 h with the subsequent spontaneous return of heart rate and body temperature to the initial values. In the open field test at torpor the motility, rearing and grooming were suppressed but 4-8 days later they were restored.

SIGNIFICANCE

Suspended animation states, including natural hibernation or pharmacologically induced synthetic torpor are of special attention of medicine, since it may improve survival rate after cardiac arrest, brain hemorrhage and ischemia, and during long-term space traveling. The suggested here multi-targeting strategy made possible to develop the pharmacological composition able, after a single intravenous injection, to initiate long, stable and reversible hypothermia and torpor at room temperature. After the torpor, animals were able to spontaneously restore both physiological parameters, and behavioral reactions.

摘要

目的

为了引发人工休眠状态,我们提出了一种药理学多靶点策略,模拟自然冬眠的生理模式,包括显著降低心率、呼吸率、体温和耗氧量,以及被称为休眠的大脑活动下降。

材料和方法

我们开发了一种引发药理学诱导的休眠样状态(PITS 组合物)的组合物,由八种治疗剂、惰性气体氙气和脂质乳液组成,作为药物载体。

主要发现

在大鼠单次静脉注射后,PITS 组合物会导致心率迅速下降,随后体温从约 38.5°C 稳定下降到 31.5°C,环境温度为 22°C-23°C。在平均持续 16-17 小时的低温状态下,随后心率和体温会自发恢复到初始值。在休眠时的旷场试验中,运动、竖起和梳理行为受到抑制,但在 4-8 天后恢复。

意义

休眠状态,包括自然冬眠或药理学诱导的合成休眠,受到医学的特别关注,因为它可能提高心脏骤停、脑出血和缺血以及长期太空旅行后的存活率。这里提出的多靶点策略使得有可能开发出一种药理学组合物,在单次静脉注射后,能够在室温下引发长时间、稳定和可逆的低温和休眠。在休眠后,动物能够自发地恢复生理参数和行为反应。

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