Involvement of persistent Na+ current in spike initiation in primary sensory neurons of the rat mesencephalic trigeminal nucleus.
نویسندگان
چکیده
It was recently shown that the persistent Na(+) current (I(NaP)) is generated in the proximal axon in response to somatic depolarization in neocortical pyramidal neurons, although the involvement of I(NaP) in spike initiation is still unclear. Here we show a potential role of I(NaP) in spike initiation of primary sensory neurons in the mesencephalic trigeminal nucleus (MTN) that display a backpropagation of the spike initiated in the stem axon toward the soma in response to soma depolarization. Riluzole (10 muM) and tetrodotoxin (TTX, 10 nM) caused an activation delay or a stepwise increase in the threshold for evoking soma spikes (S-spikes) without affecting the spike itself. Simultaneous patch-clamp recordings from the soma and axon hillock (AH) revealed that bath application of 50 nM TTX increased the delay in spike activation in response to soma depolarization, leaving the spike-backpropagation time from the AH to soma unchanged. This indicates that the increase in activation delay occurred in the stem axon. Furthermore, under a decreasing intracellular concentration gradient of QX-314 from the soma to AH created by QX-314-containing and QX-314-free patch pipettes, the amplitude and maximum rate of rise (MRR) of AH-spikes decreased with an increase in the activation delay following repetition of current-pulse injections, whereas S-spikes displayed decreases of considerably lesser degree in amplitude and MRR. This suggests that compared to S-spikes, AH-spikes more accurately reflect the attenuation of axonal spike by QX-314, consistent with the nature of spike backpropagation. These observations strongly suggest that low-voltage-activated I(NaP) is involved in spike initiation in the stem axon of MTN neurons.
منابع مشابه
The involvement of persistent Na current in spike-initiation in primary sensory neurons of the rat mesencephalic trigeminal nucleus
It has recently been shown that the persistent Na current (INaP) is generated in the proximal axon in response to somatic depolarization in neocortical pyramidal neurons, while the involvement of INaP in spike-initiation is still unclear. Here we show a potential role of INaP in spike-initiation of primary sensory neurons in the mesencephalic trigeminal nucleus (MTN) that display a backpropagat...
متن کاملTwo opposing roles of 4-AP-sensitive K+ current in initiation and invasion of spikes in rat mesencephalic trigeminal neurons.
The axon initial segment plays important roles in spike initiation and invasion of axonal spikes into the soma. Among primary sensory neurons, those in the mesencephalic trigeminal nucleus (MTN) are exceptional in their ability to initiate soma spikes (S-spikes) in response to synaptic inputs, consequently displaying two kinds of S-spikes, one caused by invasion of an axonal spike arising from ...
متن کاملSodium currents in mesencephalic trigeminal neurons from Nav1.6 null mice.
Previous studies using pharmacological methods suggest that subthreshold sodium currents are critical for rhythmical burst generation in mesencephalic trigeminal neurons (Mes V). In this study, we characterized transient (I(NaT)), persistent (I(N)(aP)), and resurgent (I(res)) sodium currents in Na(v)1.6-null mice (med mouse, Na(v)1.6(-/-)) lacking expression of the sodium channel gene Scn8a. We...
متن کاملResponse characteristics of primary periodontal mechanoreceptive neurons simultaneously recorded in the trigeminal ganglion and mesencephalic trigeminal nucleus of the rat in response to trapezoidal and rectangular mechanical stimulation of a single tooth
Periodontal mechanoreceptors are dually innervated by primary neurons whose cell bodies exist in the trigeminal ganglion (TG) and the mesencephalic trigeminal nucleus (MTN). We obtained simultaneous recordings of singleunit responses of primary periodontal mechanoreceptive neurons located in the TG and MTN of the same animal to controlled experimental forces applied to a single tooth. Simultane...
متن کاملThe Effects of Buthotus schach Scorpion Venom on Electrophysiological Properties of Magnocellular Neurons of Rat Supraoptic Nucleus
Potassium channels are trans-membrane proteins, which selectively transport K+ ions across cell membranes and play a key role in regulating the physiology of excitability cells and signal transduction pathways. Bothutous Schach (BS) scorpion venom consists of several polypeptides that could modulate ion channels. In this study, the effects of BS crude venom on passive and active electrophysiolo...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- Journal of neurophysiology
دوره 97 3 شماره
صفحات -
تاریخ انتشار 2007