Activity-dependent suppression of spontaneous spike generation in the Retzius neurons of the leech Hirudo medicinalis L.
Research article published in Invertebrate neuroscience : IN (2006)
Abstract
We report on factors affecting the spontaneous firing pattern of the identified serotonin-containing Retzius neurons of the medicinal leech. Increased firing activity induced by intracellular current injection is followed by a 'post-stimulus-depression' (PSD) without spiking for up to 23 s. PSD duration depends both on the duration and the amplitude of the injected current and correlates inversely with the spontaneous spiking activity. In contrast to serotonin-containing neurons in mammals, serotonin release from the Retzius cells presumably does not mediate the observed spike suppression in a self-inhibitory manner since robust PSD persists after synaptic isolation. Moreover, single additional spikes elicited at specific delays after spontaneously occurring action potentials are sufficient to significantly alter the firing pattern. Since sub-threshold current injections do not affect the ongoing spiking pattern and PSD persists in synaptically isolated preparations our data suggest that PSD reflects an endogenous and 'spike-dependent' mechanism controlling the spiking activity of Retzius cells in a use-dependent way.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
We report on factors affecting the spontaneous firing pattern of the identified serotonin-containing Retzius neurons of the medicinal leech. Increased firing activity induced by intracellular current injection is followed by a 'post-stimulus-depression' (PSD) without spiking for up to 23 s.
Warum dies für die Hirudotherapie relevant ist
This study characterized a 'post-stimulus-depression' (PSD) in identified serotonin-containing Retzius neurons of the medicinal leech, in which increased firing activity induced by intracellular current injection was followed by spike suppression lasting up to 23 seconds. PSD persisted after synaptic isolation, suggesting it reflects an endogenous, spike-dependent mechanism rather than serotonin self-inhibition, controlling spiking activity in a use-dependent way. This study concerns the neurophysiology of the medicinal leech. Caveat: This is a basic electrophysiology study with no connection to therapeutic applications or bioactive secretome components; the abstract contains no mention of hirudotherapy, and its relevance to ASH's domain is limited to fundamental leech biology.
Zitation
Activity-dependent suppression of spontaneous spike generation in the Retzius neurons of the leech Hirudo medicinalis L.
Rose et al. · Invertebrate neuroscience : IN, 2006
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