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The pharmacology and molecular mechanisms underlying temperature regulation and torpor

机译:温度调节和to的基础的药理和分子机理

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摘要

The ability to enter a hypometabolic state upon restriction of caloric intake is pivotal for animal survival: balancing the energy budget in endotherms can be a real struggle when food is not available and/or the demand for heat production to maintain homeothermy becomes excessive. Bouts of torpor, characterized by metabolic rates well below a basal metabolic rate and core body temperatures that may be just a few degrees above the ambient temperature, are utilized among many organisms across the animal kingdom, including those that could be described as typical laboratory animals, like the mouse or hamster. Daily heterotherms, which are the focus of this commentary, enter shallow torpor bouts and do so usually under acute food shortage conditions and a relatively cool environment. Due to their small size, the body temperature of these animals is very responsive to food deprivation, pharmacological inhibition of metabolic rate, and cardiovascular depressants. This commentary examines recent developments concerning the neuroendocrine mechanisms in place that may mediate fasting-induced torpor in daily heterotherms. Further this commentary highlights pharmacological induction of hypothermia in small mammals.
机译:限制热量摄入后进入低代谢状态的能力对于动物的生存至关重要:在没有食物和/或维持体温过高的热量生产需求过多的情况下,平衡吸热中的能量预算可能是一场真正的斗争。整个动物界都在许多生物中利用to打,其代谢速率远低于基本代谢速率,核心体温可能仅比环境温度高几度。 ,例如鼠标或仓鼠。这是本评论的重点,每天的异温热进入浅火炬爆发,通常在严重的食物短缺条件和相对凉爽的环境中发生。由于它们的体积小,这些动物的体温对食物匮乏,代谢率的药理学抑制和心血管抑制剂非常敏感。这篇评论探讨了有关神经内分泌机制的最新进展,这些机制可能介导禁食诱导的每日异体热中的torpor。此评论进一步强调了小哺乳动物低温的药理学诱导作用。

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  • 作者

    Steven J. Swoap;

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  • 年(卷),期 -1(76),7
  • 年度 -1
  • 页码 817–824
  • 总页数 14
  • 原文格式 PDF
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