褪黑素对干热季节驴(Equus asinus)呼吸和心率及其昼夜节律的调节作用

IF 2.1 Q3 PHYSIOLOGY Current research in physiology Pub Date : 2022-01-01 DOI:10.1016/j.crphys.2022.09.002
Joseph Olusegun Ayo, Ayodele Stephen Ake
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引用次数: 0

摘要

哺乳动物的中央生物钟位于下丘脑的视交叉上核,它根据周围的24小时光暗循环调节先天生理节律。褪黑素是昼夜节律的重要组成部分。本研究旨在评估在干热季节,给药褪黑素对驴的呼吸速率(RR)和心率(HR)及其昼夜节律的影响。选取2 ~ 3岁、平均体重93±2.7 kg的健康驮驴20头,随机分为两组进行试验。第1组驴(用褪黑激素包装)在研究期间给予褪黑激素7天并进行包装,而第2组驴不给予褪黑激素。两组驴在一周内被打包三次,间隔一天,每个实验日的总距离为20公里。在研究期间记录了气象参数。在包装前和包装后立即(15分钟)测量RR和HR。最后一次包装后,每隔3小时连续测量27小时,16小时后开始连续测量参数。预包装温湿指数(THI)(73.67±0.7)较低(P <0.05)比包装后(80.33±1.2)高。在连续测量中记录的THI在15:00 h(86)达到峰值,表明下午时间对驴来说是热应激的。与有褪黑素的驴子相比,没有褪黑素的驴子的THI与记录的HR密切相关。两组驴的RR和HR值差异均显著(P <0.05),包装后立即升高。然而,参数的包装后值并没有不同(P >0.05)。未加褪黑素的包装驴的RR和HR的中频(校正算术平均值)和振幅显著(P <0.05)高于(褪黑素)驴的记录。综上所述,褪黑素通过发挥其抗应激和抗氧化作用,减轻了对驴体内RR和HR昼夜节律性的负面影响。该研究表明,褪黑素的有益作用及其施用可以减轻过度的呼吸和心脏活动,这些活动可能会减少驴在炎热干燥季节的工作输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Modulatory roles of melatonin on respiratory and heart rates and their circadian rhythmicity in donkeys (Equus asinus) subjected to packing during the hot-dry season

In mammals a central circadian clock is located in the suprachiasmatic nuclei of the hypothalamus, which regulates the innate physiological rhythms to the ambient 24-h light-dark cycle. Melatonin is an essential component of circadian rhythm. The study aimed to evaluate the effects of melatonin administration on the respiratory rate (RR) and heart rate (HR) and their circadian rhythmicity in donkeys subjected to packing (load carrying) during the hot-dry season. Twenty healthy pack donkeys, aged 2–3 years with average weight of 93 ± 2.7 kg were divided into two groups randomly for the experiment. Group 1 donkeys (packing with melatonin) were administered melatonin for seven days during the study and subjected to packing, while group 2 were packed without melatonin administration. Both groups of donkeys were packed three times within the week, one day apart, covering a total distance of 20 km on each experimental day. Meteorological parameters were recorded during the study period. RR and HR were measured pre- and immediately (15 min) post-packing. Continuous measurement of the parameters started 16 h later, after the last packing procedures for a period of 27 h at intervals of 3 h. Temperature-humidity index (THI) pre-packing (73.67 ± 0.7) was lower (P < 0.05) than that obtained post-packing (80.33 ± 1.2). The THI recorded during the continuous measurement was at its peak at 15:00 h (86), indicating that the afternoon hours were thermally stressful to the donkeys. The THI was strongly correlated with HR recorded in packing (without melatonin) compared to packing (with melatonin) donkeys. The RR and HR values in both groups of donkeys were significantly (P < 0.05) higher immediately after packing. However, the post-packing values of the parameters were not different (P > 0.05) between the two groups of donkeys. The mesor (adjusted arithmetic mean) and amplitude of RR and HR in packing (without melatonin) donkeys were significantly (P < 0.05) higher than that recorded in packing (with melatonin) donkeys. In conclusion, melatonin reduced negative influence on the circadian rhythmicity (mesor and amplitude) of RR and HR in donkeys by exerting its anti-stress and antioxidant effects. The study has demonstrated the beneficial effect of melatonin and its administration may mitigate excessive respiratory and cardiac activities that may reduce the work output of donkeys during the hot-dry season.

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