Related Experiment Video
Updated: Feb 25, 2026

Rapid and Refined CD11b Magnetic Isolation of Primary Microglia with Enhanced Purity and Versatility
Published on: April 13, 2017
Microglia Responses in Acute and Chronic Neurological Diseases: What Microglia-Specific Transcriptomic Studies Taught
Hélène E Hirbec1,2, Harun N Noristani3,4, Florence E Perrin3,4
1Institute for Functional Genomics, CNRS UMR5203, INSERM U1191, University of MontpellierMontpellier, France.
Abstract:
Over the last decade, microglia have been acknowledged to be key players in central nervous system (CNS) under both physiological and pathological conditions. They constantly survey the CNS environment and as immune cells, in pathological contexts, they provide the first host defense and orchestrate the immune response. It is well recognized that under pathological conditions microglia have both sequential and simultaneous, beneficial and detrimental effects. Cell-specific transcriptomics recently became popular in Neuroscience field allowing concurrent monitoring of the expression of numerous genes in a given cell population. Moreover, by comparing two or more conditions, these approaches permit to unbiasedly identify deregulated genes and pathways. A growing number of studies have thus investigated microglial transcriptome remodeling over the course of neuropathological conditions and highlighted the molecular diversity of microglial response to different diseases. In the present work, we restrict our review to microglia obtained directly from in vivo samples and not cell culture, and to studies using whole-genome strategies. We first critically review the different methods developed to decipher microglia transcriptome. In particular, we compare advantages and drawbacks of flow cytometry and laser microdissection to isolate pure microglia population as well as identification of deregulated microglial genes obtained via RNA sequencing (RNA-Seq) vs. microarrays approaches. Second, we summarize insights obtained from microglia transcriptomes in traumatic brain and spinal cord injuries, pain and more chronic neurological conditions including Amyotrophic lateral sclerosis (ALS), Alzheimer disease (AD) and Multiple sclerosis (MS). Transcriptomic responses of microglia in other non-neurodegenerative CNS disorders such as gliomas and sepsis are also addressed. Third, we present a comparison of the most activated pathways in each neuropathological condition using Gene ontology (GO) classification and highlight the diversity of microglia response to insults focusing on their pro- and anti-inflammatory signatures. Finally, we discuss the potential of the latest technological advances, in particular, single cell RNA-Seq to unravel the individual microglial response diversity in neuropathological contexts.
Insights
Microglia, the immune cells of the central nervous system (CNS), exhibit diverse transcriptomic responses in various neuropathological conditions. Understanding these gene expression changes is crucial for developing targeted therapies for brain and spinal cord injuries, neurodegenerative diseases, and other CNS disorders.
Area of Science:
- Neuroscience
- Immunology
- Genomics
Background:
- Microglia are key immune cells in the central nervous system (CNS), playing critical roles in both health and disease.
- Their response to pathology can be both beneficial and detrimental, highlighting the complexity of their function.
- Cell-specific transcriptomics has emerged as a powerful tool to study gene expression in microglia.
Purpose of the Study:
- To critically review methods for deciphering microglia transcriptomes from in vivo samples.
- To summarize insights from microglia transcriptomic studies in various neuropathological conditions.
- To compare activated pathways and discuss future directions in microglial transcriptomics.
Main Methods:
- Review of studies using whole-genome transcriptomic strategies on in vivo microglia.
- Comparison of isolation techniques: flow cytometry vs. laser microdissection.
- Comparison of gene identification methods: RNA sequencing (RNA-Seq) vs. microarrays.
- Gene Ontology (GO) classification for pathway analysis.
Main Results:
- Microglial transcriptomes reveal diverse molecular responses across conditions like traumatic brain injury, pain, ALS, AD, MS, gliomas, and sepsis.
- Comparison of methods highlights advantages and disadvantages of different transcriptomic approaches.
- Analysis of activated pathways reveals distinct pro- and anti-inflammatory signatures in microglia depending on the disease context.
Conclusions:
- Microglia exhibit a wide spectrum of transcriptomic adaptations to different CNS insults.
- Understanding these diverse responses is essential for targeted therapeutic strategies.
- Emerging technologies like single-cell RNA-Seq promise to further unravel individual microglial response heterogeneity.
More Related Videos
12:48In Vivo Dynamics of Retinal Microglial Activation During Neurodegeneration: Confocal Ophthalmoscopic Imaging and Cell Morphometry in Mouse Glaucoma
Published on: May 11, 2015
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