首页> 美国卫生研究院文献>Frontiers in Neuroscience >Modulation of Calcitonin Parathyroid Hormone and Thyroid Hormone Secretion by Electrical Stimulation of Sympathetic and Parasympathetic Nerves in Anesthetized Rats
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Modulation of Calcitonin Parathyroid Hormone and Thyroid Hormone Secretion by Electrical Stimulation of Sympathetic and Parasympathetic Nerves in Anesthetized Rats

机译:电刺激麻醉大鼠交感神经和副交感神经对降钙素甲状旁腺激素和甲状腺激素分泌的调节

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摘要

The thyroid and parathyroid glands are dually innervated by sympathetic (cervical sympathetic trunk [CST]) and parasympathetic (superior laryngeal nerve [SLN]) nerve fibers. We examined the effects of electrical stimulation of efferent or afferent nerve fibers innervating the thyroid and parathyroid glands on the secretion of immunoreactive calcitonin (iCT), parathyroid hormone (iPTH), 3,3′,5-triiodothyronine (iT3), and thyroxine (iT4) from the thyroid and parathyroid glands. In anesthetized and artificially ventilated rats, thyroid venous blood was collected. The rate of hormone secretion from the glands was calculated from plasma hormone levels, measured by ELISA, and the flow rate of thyroid venous plasma. SLNs or CSTs were stimulated bilaterally with rectangular pulses with a 0.5-ms width. To define the role of unmyelinated nerve fibers (typically efferent), the cut peripheral segments were stimulated at various frequencies (up to 40 Hz) with a supramaximal intensity to excite all nerve fibers. The secretion of iCT, iT3, and iT4 increased during SLN stimulation and decreased during CST stimulation. iPTH secretion increased during CST stimulation, but was not affected by SLN stimulation. To examine the effects of selective stimulation of myelinated nerve fibers (typically afferent) in the SLN, intact SLNs were stimulated with a subthreshold intensity for unmyelinated nerve fibers. iCT, iT3, and iT4 secretion increased during stimulation of intact SLNs at 40 Hz. These results suggest that excitation of myelinated afferents induced by low intensity and high frequency stimulation of intact SLNs promotes secretion of CT and thyroid hormones from the thyroid gland, potentially via reflex activation of parasympathetic efferent nerve fibers in the SLN.
机译:甲状腺和甲状旁腺被交感神经(颈交感神经干[CST])和副交感神经(喉上神经[SLN])双重支配。我们检查了电刺激支配甲状腺和甲状旁腺的传入或传入神经纤维对免疫反应性降钙素(iCT),甲状旁腺激素(iPTH),3,3',5-三碘甲甲状腺素(iT3)和甲状腺素( iT4)来自甲状腺和甲状旁腺。在麻醉和人工通气的大鼠中,收集了甲状腺静脉血。由血浆激素水平(通过ELISA测量)和甲状腺静脉血浆的流速计算出腺体分泌激素的速率。用宽度为0.5毫秒的矩形脉冲双向刺激SLN或CST。为了确定无髓神经纤维的作用(通常是传出的),以最大强度以各种频率(最高40 Hz)刺激切割的周围节段,以激发所有神经纤维。在SLN刺激期间,iCT,iT3和iT4的分泌增加,而在CST刺激期间,iCT,iT3和iT4的分泌减少。在CST刺激期间iPTH分泌增加,但不受SLN刺激影响。要检查选择性刺激SLN中有髓神经纤维(通常是传入神经)的效果,以低于阈值的强度刺激完整的SLN,以达到无髓神经纤维的作用。在以40 Hz刺激完整SLN的过程中,iCT,iT3和iT4分泌增加。这些结果表明,由低强度和高频刺激完整的SLNs引起的髓鞘传入神经的兴奋可能通过SLN中副交感神经传出神经纤维的反射激活而促进了CT和甲状腺激素从甲状腺的分泌。

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