Related Experiment Video
Updated: Jun 16, 2026

Biomarker Identification for Gender Specificity of Alzheimer's Disease Based on the Glial Transcriptome Profiles
Published on: May 20, 2024
Expression of GPR34 in microglia remains stable in human Alzheimer's disease
Sophie Seiffer1, Jonas Rotter2, Jana Brendler2
1Institute of Anatomy, Faculty of Medicine, Leipzig University, Liebigstraße 13, 04103, Leipzig, Germany. sophie.seiffer@medizin.uni-leipzig.de.
Abstract:
Microglia are the resident immune cells of the human central nervous system and play key roles in development, homeostasis, and disease. These functions are mediated by a broad repertoire of cell-surface receptors, including G protein-coupled receptors such as the ADP receptor P2Y12 and GPR34, a receptor for lysophosphatidylserine. While GPR34 deficiency has been linked to impaired microglial phagocytosis, its regulation in relation to amyloid-β (Aβ) and tau pathology in Alzheimer's disease (AD) remains unclear. We performed a quantitative analysis of microglial density, morphology, and GPR34 expression in the medial temporal lobe cortex (MTLC) of elderly human body and tissue donors across the AD spectrum. Using fluorescence in situ hybridization and immunolabeling, we analyzed 187,670 microglial cells and correlated microglial parameters with the severity and spatial proximity of Aβ plaques and tau inclusions. In parallel, we analyzed human single-nucleus RNA sequencing data from 236,002 cells to assess GPR34 expression across microglial subtypes, brain regions, and neuropathological stages. Microglial density and overall morphology in the MTLC were largely preserved, independent of local Aβ or hyperphosphorylated tau burdens. Apart from a moderate shortening of microglial processes in the immediate vicinity of Aβ plaques, no consistent pathology-associated morphological changes were detected. GPR34 expression showed pronounced cell-to-cell variability and differed across microglial subtypes and brain regions, but neither expression intensity nor the proportion of GPR34-positive microglia correlated consistently with Braak stage or Thal phase. These findings suggest that GPR34 regulation in human microglia is highly context-dependent and shaped by regional and cellular heterogeneity rather than AD-associated pathology alone.
Insights
Alzheimer's disease pathology does not significantly alter microglial density or morphology. GPR34 expression in microglia is highly variable and not directly linked to Alzheimer's disease severity.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia, the brain's immune cells, express G protein-coupled receptors like GPR34, crucial for their functions.
- GPR34's role in Alzheimer's disease (AD) pathology, particularly concerning amyloid-β (Aβ) and tau, is not well understood.
- Previous studies link GPR34 deficiency to impaired microglial phagocytosis.
Purpose of the Study:
- To investigate the regulation of GPR34 in human microglia within the context of Alzheimer's disease.
- To analyze microglial density, morphology, and GPR34 expression in relation to Aβ plaques and tau pathology.
- To assess GPR34 expression across different microglial subtypes and brain regions in human AD samples.
Main Methods:
- Quantitative analysis of microglial density, morphology, and GPR34 expression in the medial temporal lobe cortex (MTLC) of human donors.
- Fluorescence in situ hybridization and immunolabeling of 187,670 microglial cells.
- Analysis of human single-nucleus RNA sequencing data from 236,002 cells.
Main Results:
- Microglial density and morphology in the MTLC remained largely unchanged, irrespective of Aβ or tau burden.
- A slight shortening of microglial processes near Aβ plaques was observed, but no widespread morphological changes were detected.
- GPR34 expression exhibited significant cell-to-cell variability and regional differences, but did not consistently correlate with AD neuropathological stages (Braak or Thal).
Conclusions:
- GPR34 regulation in human microglia is complex and influenced by regional and cellular heterogeneity.
- Alzheimer's disease pathology alone does not appear to be the primary driver of GPR34 expression changes in microglia.
- Further research is needed to elucidate the precise role of GPR34 in AD pathogenesis.
Related Concept Videos
Alzheimer Disease ll: Pathophysiology
Alzheimer Disease l: Introduction

