AI Article Synopsis

  • * PAM and DAM, while sharing certain core gene characteristics, exhibit differences influenced by context, which is challenging to fully understand due to the lack of specific research tools.
  • * The researchers developed a new tool, called Clec7a-CreER, to study PAM and DAM more effectively; their findings revealed that these microglial states can change significantly over time and play important roles in disease progression and recovery.

Article Abstract

Recent single-cell RNA sequencing studies have revealed distinct microglial states in development and disease. These include proliferative region-associated microglia (PAM) in developing white matter and disease-associated microglia (DAM) prevalent in various neurodegenerative conditions. PAM and DAM share a similar core gene signature and other functional properties. However, the extent of the dynamism and plasticity of these microglial states, as well as their functional significance, remains elusive, partly due to the lack of specific tools. Here, we report the generation of an inducible Cre driver line, Clec7a-CreER, designed to target PAM and DAM in the brain parenchyma. Utilizing this tool, we profile labeled cells during development and in several disease models, uncovering convergence and context-dependent differences in PAM/DAM gene expression. Through long-term tracking, we demonstrate surprising levels of plasticity in these microglial states. Lastly, we specifically depleted DAM in cuprizone-induced demyelination, revealing their roles in disease progression and recovery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10723357PMC
http://dx.doi.org/10.1101/2023.12.01.569597DOI Listing

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