Iba-1 (A-C), CD68 (D-F) and MHCII (G-I) protein expression within the control, NAWM and DSCL cases. Control WM showed a regular distribution of Iba-1 positive ramified microglia (A) in contrast to the little CD68 and MHCII immunostaining in control WM (D & G). Within NAWM an increase in immunoreactivity was evident across all three microglial markers (B,E,H). Within DSCL, Iba-1 and MHCII immunostaining highlighted both ramified and amoeboid microglia (C & I). In contrast CD68 immunostaining highlighted amoeboid microglia (F). Scale bar = 100μm. NAWM: normal appearing white matter, DSCL: deep subcortical lesion, WM: white matter, MHCII: major histocompatibility complex II.</p
<p>Real Time PCR analysis of the Aif1 gene expression showed that there is approximately four fold u...
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
Microglia are the resident immune cells of the brain. Their main functions in the adult brain are to...
Iba-1 labelled microglial increase in size and roundness (M-score) throughout the three groups, indi...
HLA-DR, Iba1 and CD68 are widely used microglia markers in human tissue. However, due to differences...
Distinct microglial cell populations are evident within the deep subcortical lesion (DSCL). CD68+ am...
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
The immunoreactive mean area of Iba-1 (A), CD68 (B) and MHCII (C) across the cohort. *P<0.05, **P<0....
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
<p>Brain and spinal cord sections were immuno-stained at 7 days post MOG immunization with the anti-...
<p>Immunolabeling for Iba1 (brown) demonstrates microglia in CA1 (A, B), CA3 (C, D) and CC (E, F). T...
<p><b>Fluorescence labeling of the immune cell markers CD68 and Iba combined with GFAP-immunodetecti...
<p>Above: IBA-1 positive cell counts in each experimental group. Below: Representative coronal sect...
<p><b>A)</b> CD68 staining of the microglia in the temporal cortex of NDC case #21. <b>B)</b> CD68 s...
<p>(<b>A–H</b>) Brain sections taken from the cerebral cortex and probed by an antibody to Iba-1, in...
<p>Real Time PCR analysis of the Aif1 gene expression showed that there is approximately four fold u...
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
Microglia are the resident immune cells of the brain. Their main functions in the adult brain are to...
Iba-1 labelled microglial increase in size and roundness (M-score) throughout the three groups, indi...
HLA-DR, Iba1 and CD68 are widely used microglia markers in human tissue. However, due to differences...
Distinct microglial cell populations are evident within the deep subcortical lesion (DSCL). CD68+ am...
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
The immunoreactive mean area of Iba-1 (A), CD68 (B) and MHCII (C) across the cohort. *P<0.05, **P<0....
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
<p>Brain and spinal cord sections were immuno-stained at 7 days post MOG immunization with the anti-...
<p>Immunolabeling for Iba1 (brown) demonstrates microglia in CA1 (A, B), CA3 (C, D) and CC (E, F). T...
<p><b>Fluorescence labeling of the immune cell markers CD68 and Iba combined with GFAP-immunodetecti...
<p>Above: IBA-1 positive cell counts in each experimental group. Below: Representative coronal sect...
<p><b>A)</b> CD68 staining of the microglia in the temporal cortex of NDC case #21. <b>B)</b> CD68 s...
<p>(<b>A–H</b>) Brain sections taken from the cerebral cortex and probed by an antibody to Iba-1, in...
<p>Real Time PCR analysis of the Aif1 gene expression showed that there is approximately four fold u...
Deep subcortical lesions (DSCL) of the brain, are present in ~60% of the ageing population, and are ...
Microglia are the resident immune cells of the brain. Their main functions in the adult brain are to...