Related Experiment Video
Updated: Aug 7, 2026

Detection of MicroRNAs in Microglia by Real-time PCR in Normal CNS and During Neuroinflammation
Published on: July 23, 2012
CD11a expression distinguishes infiltrating myeloid cells from plaque-associated microglia in Alzheimer's disease
Ankita K Shukla1,2, Laura L McIntyre1,2, Samuel E Marsh1,3
1Sue and Bill Gross Stem Cell Research Center, University of California Irvine, Irvine, California.
Abstract:
Alzheimer's disease (AD) is the leading cause of age-related neurodegeneration and is characterized neuropathologically by the accumulation of insoluble beta-amyloid (Aβ) peptides. In AD brains, plaque-associated myeloid (PAM) cells cluster around Aβ plaques but fail to effectively clear Aβ by phagocytosis. PAM cells were originally thought to be brain-resident microglia. However, several studies have also suggested that Aβ-induced inflammation causes peripheral monocytes to enter the otherwise immune-privileged brain. The relationship between AD progression and inflammation in the brain remains ambiguous because microglia and monocyte-derived macrophages are extremely difficult to distinguish from one another in an inflamed brain. Whether PAM cells are microglia, peripheral macrophages, or a mixture of both remains unclear. CD11a is a component of the β2 integrin LFA1. We have determined that CD11a is highly expressed on peripheral immune cells, including macrophages, but is not expressed by mouse microglia. These expression patterns remain consistent in LPS-treated inflamed mice, as well as in two mouse models of AD. Thus, CD11a can be used as a marker to distinguish murine microglia from infiltrating peripheral immune cells. Using CD11a, we show that PAM cells in AD transgenic brains are comprised entirely of microglia. We also demonstrate a novel fluorescence-assisted quantification technique (FAQT), which reveals a significant increase in T lymphocytes, especially in the brains of female AD mice. Our findings support the notion that microglia are the lead myeloid players in AD and that rejuvenating their phagocytic potential may be an important therapeutic strategy.
Insights
In Alzheimer's disease (AD), plaque-associated myeloid cells are microglia, not peripheral macrophages. Targeting microglia may be a key therapeutic strategy for AD.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Alzheimer's disease (AD) involves beta-amyloid (Aβ) plaque accumulation.
- Plaque-associated myeloid (PAM) cells fail to clear Aβ via phagocytosis.
- The origin of PAM cells (microglia vs. peripheral macrophages) in AD is unclear due to inflammation-induced infiltration.
Purpose of the Study:
- To differentiate between microglia and infiltrating macrophages in AD brains.
- To identify a reliable marker for distinguishing these myeloid cell populations.
- To determine the cellular composition of PAM cells in AD.
Main Methods:
- Utilized CD11a expression to distinguish murine microglia from peripheral immune cells.
- Analyzed CD11a expression in normal, LPS-treated, and AD mouse models.
- Developed a fluorescence-assisted quantification technique (FAQT).
Main Results:
- CD11a is expressed on peripheral immune cells (macrophages) but not on mouse microglia.
- CD11a expression patterns were consistent in inflamed and AD mouse models.
- PAM cells in AD brains were exclusively microglia.
- FAQT revealed increased T lymphocytes, particularly in female AD mice.
Conclusions:
- CD11a serves as a reliable marker to distinguish microglia from infiltrating macrophages in mice.
- Microglia are the primary myeloid cells involved in AD pathogenesis.
- Therapeutic strategies aimed at enhancing microglial phagocytosis may be beneficial for AD treatment.
More Related Videos
07:54Rapid and Refined CD11b Magnetic Isolation of Primary Microglia with Enhanced Purity and Versatility
Published on: April 13, 2017
10:40Immunofluorescence Staining Using IBA1 and TMEM119 for Microglial Density, Morphology and Peripheral Myeloid Cell Infiltration Analysis in Mouse Brain
Published on: October 27, 2019