The retinal environment induces microglia-like properties in recruited myeloid cells

Scott W McPherson1, Neal D Heuss2, Ute Lehmann2

  • 1Department of Ophthalmology and Visual Neurosciences, University of Minnesota, 2001 6th Street SE, LRB Room 314, Minneapolis, MN, 55455, USA. mcphe003@umn.edu.

Abstract

Insights

Newly recruited myeloid cells in the retina adopt characteristics of endogenous microglia, regardless of their origin. The retinal environment strongly influences myeloid cell function and morphology.

Area of Science:

  • Neuroscience
  • Immunology
  • Ophthalmology

Background:

  • Microglia are crucial for central nervous system (CNS) development and homeostasis.
  • Previous research proposed a niche model for retinal microglia behavior.
  • This study investigates if recruited myeloid cells in the retina acquire microglial traits.

Purpose of the Study:

  • To determine if new myeloid cells recruited to the retina resemble endogenous microglia morphologically and functionally.
  • To explore the origin and fate of myeloid cells repopulating the retina under different conditions.

Main Methods:

  • Utilized CD11cDTR/GFP and CX3CR1+ YFP transgenic mice.
  • Employed ablation and injury protocols to study myeloid cell repopulation.
  • Analyzed retinal myeloid cells using microscopy, flow cytometry, and qRT-PCR.

Main Results:

  • Retinal myeloid cell origin (recruited vs. local) depended on experimental protocols.
  • Regardless of origin, new myeloid cells exhibited microglial markers (CD45medCD11b+Ly6G-Ly6CloIba1+F4/80+).
  • Recruited myeloid cells repopulated the retina differently than in the brain or optic nerve, with enhanced response after injury.

Conclusions:

  • GFPhi cells in CD11cDTR/GFP mice represent a distinct niche of activated retinal myeloid cells.
  • The retinal environment significantly shapes the function, morphology, and proliferation of myeloid cells.
  • Recruited myeloid cells become equivalent to endogenous microglia within the retinal niche.

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