Departamento de Fisiología, Biofísica y Neurociencias, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Cinvestav del IPN, Av. IPN 2508, San Pedro Zacatenco, 07360, Ciudad de México, Mexico.
Physiology Department, Emory University, Atlanta, GA, USA.
Exp Brain Res. 2020 May;238(5):1293-1303. doi: 10.1007/s00221-020-05805-y. Epub 2020 Apr 22.
Somatosensory afferent transmission strength is controlled by several presynaptic mechanisms that reduce transmitter release at the spinal cord level. We focused this investigation on the role of α-adrenoceptors in modulating sensory transmission in low-threshold myelinated afferents and in pathways mediating primary afferent depolarization (PAD) of neonatal mouse spinal cord. We hypothesized that the activation of α-adrenoceptors depresses low threshold-evoked synaptic transmission and inhibits pathways mediating PAD. Extracellular field potentials (EFPs) recorded in the deep dorsal horn assessed adrenergic modulation of population monosynaptic transmission, while dorsal root potentials (DRPs) recorded at root entry zone assessed adrenergic modulation of PAD. We found that noradrenaline (NA) and the α-adrenoceptor agonists phenylephrine and cirazoline depressed synaptic transmission (by 15, 14 and 22%, respectively). DRPs were also depressed by NA, phenylephrine and cirazoline (by 62, 30, and 64%, respectively), and by the α-adrenoceptor agonist clonidine, although to a lower extent (20%). We conclude that NA depresses monosynaptic transmission of myelinated afferents onto deep dorsal horn neurons via α-adrenoceptors and inhibits interneuronal pathways mediating PAD through the activation of α- and α-adrenoceptors. The functional significance of these modulatory actions in shaping cutaneous and muscle sensory information during motor behaviors requires further study.
躯体感觉传入的传递强度受几种突触前机制控制,这些机制可减少脊髓水平的递质释放。我们将这项研究的重点放在α-肾上腺素能受体在调节低阈值有髓传入纤维的感觉传递以及介导初级传入去极化(PAD)的途径中的作用上。我们假设α-肾上腺素能受体的激活可抑制低阈值诱发的突触传递,并抑制介导 PAD 的途径。在深部背角记录的细胞外场电位(EFPs)评估了肾上腺素能对群体单突触传递的调制,而在根入口区记录的背根电位(DRPs)评估了肾上腺素能对 PAD 的调制。我们发现,去甲肾上腺素(NA)和 α-肾上腺素能受体激动剂苯肾上腺素和可乐定抑制了突触传递(分别抑制 15%、14%和 22%)。NA、苯肾上腺素和可乐定也抑制了 DRPs(分别抑制 62%、30%和 64%),α-肾上腺素能受体激动剂可乐定的抑制作用虽然较低(20%)。我们得出结论,NA 通过α-肾上腺素能受体抑制深背角神经元上有髓传入纤维的单突触传递,并通过激活α-和α-肾上腺素能受体抑制介导 PAD 的中间神经元途径。在运动行为过程中,这些调节作用对塑造皮肤和肌肉感觉信息的功能意义需要进一步研究。