The effect of autonomic nervous system tone on the content of cyclic and acyclic aminoacids in the serum of chickens

A. Studenok
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Abstract

Regulation of metabolic and physiological functions of the whole organismis a complex neurohumoral process. Its functioning is supported by many organs and systems. One of the main roles here is performed by the autonomic nervous system. The mutual influence of its departments – sympathetic and parasympathetic, provide stable homeostasis and balanced work of all organs and structures. The sympathetic department is responsible for energy resource mobilization and adaptation. Without its influence, a rapid response of the cardiovascular and endocrine systems to the body's needs arising from changes in the internal or external environment is impossible. Dominant sympathetic tone provides activation of gluconeogenes is and glycogenolysis, lipolysis, etc. In contrast, the parasympathetic division is responsible for energy conservation and nutrient accumulation. Its dominant activity causes a decrease in heart rate, increase in pupil diameter depending on light flux, secretion of saliva and digestive juices, acceleration of motility of the gastrointestinal tract. However, to date, the existence of the influence of the tone of the autonomic nervous system on the content of proteins and their derivatives in the serum has not been studied enough. Proteins and their main components – aminoacids are indispensable in the construction and functioning of the whole organism of all living beings. Deficiency or absence of at least one essential amino acid can lead to disruption of various functional systems of the body, adverse health effects, and in the case of long-term deficiency and death. Studies to determine the content of amino acids in the serum of chickens with different dominant tone of the autonomic nervous system revealed different contents of individual cyclic and acyclic amino acids. The content of phenylalanine in sympathicotonic chickens differed significantly compared with the bird, which had a balanced tone (P˂0.05). In contrast, the tyrosine content was almost the same in all groups of animals. The amino acids leucine/ isoleucine and alanine were not significantly predominant in the different samples, but tended to be higher in sympathetic and vagotonic chickens. The study suggests that the dominance of the sympathetic and parasympathetic divisions of the autonomic nervous system or their balanced tone on the content of amino acids in the serum of chickens. Key words: sympathicotonia, vagotonia, normotony, phenylalanine, alanine, leucine/isoleucine, tyrosine.
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自主神经系统张力对鸡血清中环、无环氨基酸含量的影响
整个生物体的代谢和生理功能的调节是一个复杂的神经体液过程。它的功能是由许多器官和系统支持的。其中一个主要的作用是由自主神经系统完成的。其各部门-交感神经和副交感神经的相互影响,为所有器官和结构提供稳定的内稳态和平衡的工作。交感神经部门负责能源的调动和适应。没有它的影响,心血管和内分泌系统对体内或外部环境变化引起的身体需求的快速反应是不可能的。主导交感神经张力提供糖异原的激活和糖原分解、脂肪分解等。相反,副交感神经分裂负责能量保存和营养积累。它的主要活动导致心率下降,瞳孔直径根据光通量增加,唾液和消化液分泌,胃肠道运动加速。然而,迄今为止,自主神经系统的张力对血清中蛋白质及其衍生物含量的影响尚未得到足够的研究。蛋白质及其主要成分——氨基酸在所有生物的整个有机体的构造和功能中是不可缺少的。缺乏或缺乏至少一种必需氨基酸可导致人体各种功能系统的破坏,对健康产生不利影响,并在长期缺乏的情况下导致死亡。通过对不同自主神经系统优势调鸡血清中氨基酸含量的测定,发现单个环和非环氨基酸含量存在差异。交感神经紧张型鸡的苯丙氨酸含量与肉鸡差异显著(P小于0.05)。相反,各组动物的酪氨酸含量几乎相同。氨基酸亮氨酸/异亮氨酸和丙氨酸在不同样品中均不明显占优势,但在交感和迷走紧张性鸡中有较高的趋势。本研究提示自主神经系统交感神经和副交感神经分裂的支配地位或其平衡音调对鸡血清中氨基酸含量的影响。关键词:交感张力,迷走张力,正常张力,苯丙氨酸,丙氨酸,亮氨酸/异亮氨酸,酪氨酸。
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