Postnatal development of the gerbil ventral cochlear nucleus (VCN) was studied quantitatively under the light microscope in Nissl-stained serial sections at postnatal day 0 (P0), P5, P7, P10, P12, P15, and P140. VCN boundaries were unambiguous at all ages, and nucleus volume was calculated planimetr
Postnatal development of NT3 and TrkC in mouse ventral cochlear nucleus
โ Scribed by J. Feng; J. Bendiske; D.K. Morest
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 424 KB
- Volume
- 88
- Category
- Article
- ISSN
- 0360-4012
No coin nor oath required. For personal study only.
โฆ Synopsis
Abstract
In the developing nervous system, neurotrophin 3 (NT3) and brainโderived neurotrophic factor (BDNF) have been shown to interact with each other and with different parts of a neuron or glia and over considerable distances in time and space. The auditory system provides a useful model for analyzing these events, insofar as it is subdivided into wellโdefined groups of specific neuronal types that are readily related to each other at each stage of development. Previous work in our laboratory suggested that NT3 and its receptor TrkC in the mouse cochlear nucleus (CN) may be involved in directing neuronal migration and initial targeting of inputs from cochlear nerve axons in the embryo. NT3 is hard to detect soon after birth, but TrkC lingers longer. Here we found NT3 and TrkC around P8 and the peak around P30. Prominent in ventral CN, associated with globular bushy cells and stellate cells, they were localized to different subcellular sites. The TrkC immunostain was cytoplasmic, and that of NT3 was axonal and perisomatic. TrkC may be made by CN neurons, whereas NT3 has a cochlear origin. The temporal pattern of their development and the likelihood of activityโdependent release of NT3 from cochlear axons suggest that it may not be critical in early synaptogenesis; it may provide longโterm trophic effects, including stabilization of synapses once established. Activityโrelated regulation could coordinate the supply of NT3 with inner ear activity. This may require interaction with other neurotrophins, such as BDNF. ยฉ 2009 WileyโLiss, Inc.
๐ SIMILAR VOLUMES
A fundamenntal organizational principle of the central auditory system is that virtually all areas are tonotopically organized. However, we know very little about the timing or mechanisms that are responsible for the development of this organization. When cats are born, their auditory nervous system
The purpose of the experiment was to determine the connections of the three regions of the anterior vcntral cochlear nucleus in the rat. Lesions were placed in the regions of the nucleus in 11 rats. After 25 days each animal was sacrificed and its brain impregnated by the protargol method of Bodian.
The ventral cochlear nucleus was examined in 31 rats' brains prepared according to the protargol method of Bodian. The following regions were delimited on the basis of synaptic, cellular and axonal criteria. Region 11, which occupies the central part of the nucleus, consists principally of cells (t