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Hypoglycemic detection at the portal vein is mediated by capsaicin-sensitive primary sensory neurons.

机译:门静脉的低血糖检测由辣椒素敏感的初级感觉神经元介导。

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摘要

To elucidate the type of spinal afferent involved in hypoglycemic detection at the portal vein, we considered the potential role of capsaicin-sensitive primary sensory neurons. Specifically, we examined the effect of capsaicin-induced ablation of portal vein afferents on the sympathoadrenal response to hypoglycemia. Under anesthesia, the portal vein was isolated in rats and either capsaicin (CAP) or the vehicle (CON) solution applied topically. During the same surgery, the carotid artery (sampling) and jugular vein (infusion) were cannulated. One week later, all animals underwent a hyperinsulinemic hypoglycemic clamp, with glucose (variable) and insulin (25 mU x kg(-1) x min(-1)) infused via the jugular vein. Systemic hypoglycemia (2.76 +/- 0.05 mM) was induced by minute 75 and sustained until minute 105. By design, no significant differences were observed in arterial glucose or insulin concentrations between groups. When hypoglycemia was induced in CON, the plasma epinephrine concentration increased from 0.67 +/- 0.05 nM at basal to 36.15 +/- 2.32 nM by minute 105. Compared with CON, CAP animals demonstrated an 80 suppression in epinephrine levels by minute 105, 7.11 +/- 0.55 nM (P < 0.001). A similar response to hypoglycemia was observed for norepinephrine, with CAP values suppressed by 48 compared with CON. Immunohistochemical analysis of the portal vein revealed an 85 decrease in the number of calcitonin gene-related peptide-reactive nerve fibers following capsaicin-induced ablation. That the suppression in the sympathoadrenal response was comparable to our previous findings for total denervation of the portal vein indicates that hypoglycemic detection at the portal vein is mediated by capsaicin-sensitive primary sensory neurons.
机译:为了阐明参与门静脉低血糖检测的脊髓传入类型,我们考虑了辣椒素敏感的初级感觉神经元的潜在作用。具体来说,我们研究了辣椒素诱导的门静脉传入剂消融对交感肾上腺对低血糖反应的影响。在麻醉下,在大鼠中分离门静脉,局部应用辣椒素(CAP)或载体(CON)溶液。在同一次手术中,颈动脉(取样)和颈静脉(输液)管。一周后,所有动物都接受了高胰岛素降糖钳夹,葡萄糖(可变)和胰岛素(25 mU x kg(-1)x min(-1))通过颈静脉输注。第 75 分钟诱发全身性低血糖 (2.76 +/- 0.05 mM),并持续到第 105 分钟。根据设计,两组之间动脉葡萄糖或胰岛素浓度没有显着差异。当在CON中诱导低血糖时,血浆肾上腺素浓度从基础的0.67 +/- 0.05 nM增加到第105分钟的36.15 +/- 2.32 nM。与CON相比,CAP动物在第105分钟时肾上腺素水平抑制了80%,7.11 +/- 0.55 nM(P < 0.001)。去甲肾上腺素对低血糖的反应相似,与 CON 相比,CAP 值抑制了 48%。门静脉的免疫组织化学分析显示,在辣椒素诱导的消融后,降钙素基因相关肽反应性神经纤维的数量减少了 85%。交感肾上腺反应的抑制与我们之前对门静脉完全去神经支配的发现相当,这表明门静脉的低血糖检测是由辣椒素敏感的初级感觉神经元介导的。

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