Considering the scarce information on occurrences of Toxoplasma gondii
and Neospora caninum in domestic animals from Turkey, the aim of this
study was to investigate the seroprevalence of these parasite infections in cattle,
horses, sheep, goats and dogs in Turkey. The specific antibodies against T.
gondii and N. caninum were detected by iELISAs based on the
recombinant TgSAG2 or NcSAG1 in a total of 2,039 serum samples from eleven provinces. The
seroprevalence of T. gondii infections was 46.3%, 4.0%, 20.0%, 12.9% and
19.8%, that of N. caninum infections was 0.3%, 7.4%, 2.1%, 3.2% and 16.6%
in the horses, cattle, sheep, goats and dogs, respectively. These results indicated that
T. gondii and N. caninum infections are prevalent in
Turkish domestic animals.
The Merkel cell-neurite (MCN) complex generates slowly adapting type 1 (SA1) response when mechanically stimulated. Both serotonin (5-HT) and glutamate have been implicated in the generation of normal SA1 responses, but previous studies have been inconclusive as to what their roles are or how synaptic transmission occurs. In this study, excised dorsal skin patches from common water frogs (Rana ridibunda) were stimulated by von Frey hairs during perfusion in a tissue bath, and single-unit spike activity was recorded from SA1 fibres. Serotonin had no significant effect on the SA1 response at low (10 µM) concentration, significantly increased activity in a force-independent manner at 100 µM, but decreased activity with reduced responsiveness to force at 1 mM. Glutamate showed no effect on the responsiveness to force at 100 µM. MDL 72222 (100 µM), an ionotropic 5-HT3 receptor antagonist, completely abolished the responsiveness to force, suggesting that serotonin is released from Merkel cells as a result of mechanical stimulation, and activated 5-HT3 receptors on the neurite. The metabotropic 5-HT2 receptor antagonist, ketanserin, greatly reduced the SA1 fibre's responsiveness to force, as did the non-specific glutamate receptor antagonist, kynurenic acid. This supports a role for serotonin and glutamate as neuromodulators in the MCN complex, possibly by activation and/or inhibition of signalling cascades in the Merkel cell associated with vesicle release. Additionally, it was observed that SA1 responses contained a force-independent component, similar to a dynamic response observed during mechanical vibrations.
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