6533b820fe1ef96bd12790b9

RESEARCH PRODUCT

Neurochemistry of olivocochlear neurons in the hamster.

Elke RiemannRandolf RiemannUrsula Disque-kaiserMaryam Najaf GholiPatricia Antoniou-lipfertStefan Reuss

subject

Maleendocrine systemmedicine.medical_specialtyHistologyAuditory PathwaysPhodopusStilbamidinesVasoactive intestinal peptideHamsterNitric Oxide Synthase Type IOlivary NucleusNitric OxideOxytocinEfferent Pathwayschemistry.chemical_compoundInternal medicineCricetinaeNitrergic NeuronsPonsotorhinolaryngologic diseasesmedicineAnimalsNeurotransmitterEcology Evolution Behavior and SystematicsbiologyStaining and LabelingOlivocochlear systembiology.organism_classificationRetrograde tracingImmunohistochemistryCochleaNeuronal tracingPhodopusArginine VasopressinEndocrinologynervous systemchemistrySuperior olivary complexPituitary Adenylate Cyclase-Activating Polypeptidesense organsAnatomyhormones hormone substitutes and hormone antagonistsBiotechnology

description

The present study was conducted to characterize the superior olivary complex (SOC) of the lower brain stem in the pigmented Djungarian hamster Phodopus sungorus. Using Nissl-stained serial cryostat sections from fresh-frozen brains, we determined the borders of the SOC nuclei. We also identified olivocochlear (OC) neurons by retrograde neuronal tracing upon injection of Fluoro-Gold into the scala tympani. To evaluate the SOC as a putative source of neuronal nitric oxide synthase (nNOS), arginine-vasopressin (AVP), oxytocin (OT), vasoactive intestinal polypeptide (VIP), or pituitary adenylate cyclase-activating polypeptide (PACAP) that were all found in the cochlea, we conducted immunohistochemistry on sections exhibiting retrogradely labeled neurons. We did not observe AVP-, OT-, or VIP-immunoreactivity, neither in OC neurons nor in the SOC at all, revealing that cochlear AVP, OT, and VIP are of nonolivary origin. However, we found nNOS, the enzyme responsible for nitric oxide synthesis in neurons, and PACAP in neuronal perikarya of the SOC. Retrogradely labeled neurons of the lateral olivocochlear (LOC) system in the lateral superior olive did not contain PACAP and were only infrequently nNOS-immunoreactive. In contrast, some shell neurons and some of the medial OC (MOC) system exhibited immunofluorescence for either substance. Our data obtained from the dwarf hamster Phodopus sungorus confirm previous observations that a part of the LOC system is nitrergic. They further demonstrate that the medial olivocochlear system is partly nitrergic and use PACAP as neurotransmitter or modulator.

10.1002/ar.20881https://pubmed.ncbi.nlm.nih.gov/19301282