<p><i>In situ</i> hybridization (A–C, G–I, M–O) and immunohistochemistry (D–F, J–L, P–R) on coronal mouse brain sections at E16.5 (A–F), P5 (G–L) and in the adult (M–R). (A–I, M–O) <i>In situ</i> hybridization and immunohistochemistry reveals strong and broad expression of RGMa, RGMb and Neogenin in the cerebellum (CB). (J–L) Immunostaining shows expression of RGMa and Neogenin in all cerebellar layers at P5. RGMb is expressed in the internal granular layer (IGL), Purkinje cell layer (PCL) and external granular layer (EGL). (P–R) In the adult, RGMa, RGMb and Neogenin protein are expressed in Purkinje cells (PCs) and axons in the granular cell layer (GCL), PCL and molecular layer (ML). Neogenin strongly labels PC dendrites in the ML. DCN, de...
The proliferation and differentiation of neural progenitors during neurogenesis, and their subsequen...
<p>(A) Immunofluorescent co-staining of NeuN (green) and Ki-67 (red) on FFPE sections from P9 cerebe...
BackgroundThe central nervous system (CNS) develops from a heterogeneous pool of neural stem and pro...
<p><i>In situ</i> hybridization (A–C′) and immunohistochemistry (D–L) on coronal mouse brain section...
<p><i>In situ</i> hybridization (A–C, J–L) and immunohistochemistry (D–I, M–O) on coronal mouse brai...
<p><i>In situ</i> hybridization (A–C′) and immunohistochemistry (D–I) on coronal mouse brain section...
<p><i>In situ</i> hybridization (A–C, G–I) and immunohistochemistry (D–F) on coronal mouse brain sec...
<p>Immunohistochemistry for RGMa (A, C), glial fibrillary acidic protein (GFAP) (B–C, E–F) and Neoge...
<p><i>In situ</i> hybridization (A–F, M–P), immunohistochemistry (G–L) and RGMa-AP (Q) and AP (R) se...
<p><i>In situ</i> hybridization on coronal mouse brain sections at E16.5 (A–C′) and P5 (L–N′). Panel...
The Netrin/RGMa receptor, Neogenin, has recently been identified on neuronal and gliogenic progenito...
Neogenin has been implicated in a variety of developmental processes such as neurogenesis, neuronal ...
During neural development a series of precisely ordered cellular processes acts to establish a funct...
In the adult rodent forebrain, astrocyte-like neural stem cells reside within the subventricular zon...
The ability of the adult brain to produce neurons is well established. The molecular mechanisms cont...
The proliferation and differentiation of neural progenitors during neurogenesis, and their subsequen...
<p>(A) Immunofluorescent co-staining of NeuN (green) and Ki-67 (red) on FFPE sections from P9 cerebe...
BackgroundThe central nervous system (CNS) develops from a heterogeneous pool of neural stem and pro...
<p><i>In situ</i> hybridization (A–C′) and immunohistochemistry (D–L) on coronal mouse brain section...
<p><i>In situ</i> hybridization (A–C, J–L) and immunohistochemistry (D–I, M–O) on coronal mouse brai...
<p><i>In situ</i> hybridization (A–C′) and immunohistochemistry (D–I) on coronal mouse brain section...
<p><i>In situ</i> hybridization (A–C, G–I) and immunohistochemistry (D–F) on coronal mouse brain sec...
<p>Immunohistochemistry for RGMa (A, C), glial fibrillary acidic protein (GFAP) (B–C, E–F) and Neoge...
<p><i>In situ</i> hybridization (A–F, M–P), immunohistochemistry (G–L) and RGMa-AP (Q) and AP (R) se...
<p><i>In situ</i> hybridization on coronal mouse brain sections at E16.5 (A–C′) and P5 (L–N′). Panel...
The Netrin/RGMa receptor, Neogenin, has recently been identified on neuronal and gliogenic progenito...
Neogenin has been implicated in a variety of developmental processes such as neurogenesis, neuronal ...
During neural development a series of precisely ordered cellular processes acts to establish a funct...
In the adult rodent forebrain, astrocyte-like neural stem cells reside within the subventricular zon...
The ability of the adult brain to produce neurons is well established. The molecular mechanisms cont...
The proliferation and differentiation of neural progenitors during neurogenesis, and their subsequen...
<p>(A) Immunofluorescent co-staining of NeuN (green) and Ki-67 (red) on FFPE sections from P9 cerebe...
BackgroundThe central nervous system (CNS) develops from a heterogeneous pool of neural stem and pro...