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Published on: January 26, 2024
Early postnatal development of the visual cortex in mice with retinal degeneration
D K Himmelhan1, O Rawashdeh2, H H A Oelschläger1
1Department of Anatomy III (Dr. Senckenbergische Anatomie), Johann Wolfgang Goethe University, Frankfurt am Main, Germany.
Insights
This study tracked visual cortex development in mice with retinal degeneration. Early development proceeded normally, suggesting retinal issues may not impact visual cortex maturation in young mice.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- The visual neocortex undergoes significant development in early postnatal life.
- Understanding this development is crucial for identifying potential impacts of early-life sensory impairments.
- The Pde6brd1 mutation in C3H/HeNRj mice leads to progressive retinal degeneration from postnatal day 7.
Purpose of the Study:
- To characterize the early postnatal development of the visual neocortex in C3H/HeNRj mice.
- To investigate whether early retinal degeneration influences visual cortex maturation.
- To establish a timeline of key developmental marker expression in the developing visual cortex.
Main Methods:
- Utilized semiquantitative analysis of immunohistochemical staining.
- Examined eight developmental antigens (Nestin, tau3, β3-Tubulin, Calbindin, Doublecortin, MAP2, Parvalbumin, NeuN) in cortical tissue sections.
- Analyzed visual cortex development from postnatal day 3 (P3) to P28.
Main Results:
- Early postnatal weeks (P3-P6) showed expression of neural progenitor cell markers (Nestin, tau3, β3-Tubulin, Calbindin).
- By eye-opening (P14), markers of neuronal differentiation (Doublecortin, MAP2, NeuN) were present.
- Nestin and Calbindin decreased while NeuN and Parvalbumin increased between P9 and P21, consistent with normal maturation.
Conclusions:
- The study provides a detailed temporal profile of visual neocortex development in mice.
- Early retinal degeneration in C3H/HeNRj mice did not appear to disrupt visual cortex maturation up to P28.
- Visual neocortex development in these mice mirrored that of control strains (C57BL/6) lacking retinal degeneration during the observed period.
Abstract:
This study characterizes the early postnatal development of the visual neocortex in C3H/HeNRj mice. These mice are homozygous for the Pde6brd1 mutation, which causes retinal degeneration starting from postnatal day 7 (P7). To monitor the development of the visual cortex between P3 and P28 we used eight antigens known to be expressed at different developmental stages (Nestin, tau3, β3- Tubulin, Calbindin, Doublecortin, MAP2, Parvalbumin and NeuN). Using semiquantitative analysis we traced the expression and localization of different developmental markers throughout the layers of the visual cortex. Cortical tissue sections corresponding to the first postnatal week (P3-P6) stained positively for Nestin, tau3, β3-Tubulin and Calbindin. These proteins are known to be involved in the migration of neural progenitor cells (NPCs) within the cortical plate. At the time of eye-opening (P14), Doublecortin, MAP2 and NeuN, markers for developing and maturing neurons involved in NPC differentiation are present. Between P9 and P21 Nestin and Calbindin disappear while NeuN and Parvalbumin expression increases in the course of visual neocortex development. The findings of this study provide a snapshot of the dynamic changes in cortex formation during early postnatal development. So far, it is the first investigation on the postnatal development of the mouse visual cortex. Our results indicate that in C3H/HeNRj mice retinal degeneration during these early stages may not influence the maturation of the visual cortex. Until P28 in this mouse strain, the development of the visual neocortex is in accordance with data from other mice (C57BL/6) without retinal degeneration. Whether in older individuals of the C3H/HeNRj strain the visual neocortex will show signs of functional impairment has to be shown by future work.
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