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Updated: Aug 5, 2026

Ex Vivo Corneal Organ Culture Model for Wound Healing Studies
Published on: February 15, 2019
When Macrophages Heal and When They Scar: Timing in Corneal Fibrosis
Amal Yaghmour1, Zohreh Arabpour1, Hannah Al-Khudari1
1Department of Ophthalmology and Visual Science, University of Illinois, Chicago, IL 60612, USA.
Abstract:
Corneal fibrosis and scarring remain leading causes of vision impairment and blindness globally, particularly following trauma, infection, or surgical intervention. Macrophages, as central mediators of immune and repair responses, orchestrate key phases of corneal wound healing. Their functional states, ranging from pro-inflammatory to pro-resolving, are tightly regulated by environmental cues and timing. Following corneal injury, recruited macrophages undergo temporally distinct activation programs. Early inflammatory macrophage responses support debris clearance, pathogen defense, and initiation of stromal repair, whereas persistence of inflammatory and profibrotic macrophage signaling beyond the acute healing phase is associated with sustained TGF-β activity, fibroblast-to-myofibroblast differentiation, excessive extracellular matrix deposition, and stromal haze formation. Conversely, timely transition toward pro-resolving macrophage states promotes inflammation resolution, myofibroblast clearance, and restoration of corneal transparency. Recent single-cell transcriptomic profiling reveals substantial heterogeneity among macrophage populations in the cornea, highlighting the limitations of the oversimplified M1/M2 classification. This review aims to define how macrophage heterogeneity and temporal dynamics regulate corneal wound healing outcomes, with particular emphasis on the balance between fibrosis and regeneration, and to provide a conceptual framework relevant to both basic researchers and translational clinicians.
Insights
Macrophages play a critical role in corneal wound healing. Understanding their diverse functions and timing is key to preventing vision impairment from corneal scarring and promoting transparency.
Area of Science:
- Ophthalmology
- Immunology
- Regenerative Medicine
Background:
- Corneal fibrosis and scarring are major causes of global vision impairment.
- Macrophages are key regulators of corneal wound healing, with functional states influencing outcomes.
- The M1/M2 classification oversimplifies macrophage heterogeneity in the cornea.
Purpose of the Study:
- To define how macrophage heterogeneity and temporal dynamics regulate corneal wound healing.
- To emphasize the balance between corneal fibrosis and regeneration.
- To provide a framework for researchers and clinicians.
Main Methods:
- Review of current literature on macrophage function in corneal wound healing.
- Analysis of single-cell transcriptomic data revealing macrophage heterogeneity.
- Conceptual framework development based on temporal dynamics and functional states.
Main Results:
- Early macrophage responses aid debris clearance and initiate repair.
- Persistent pro-fibrotic macrophage signaling contributes to scarring and haze.
- Timely resolution-promoting macrophage states are crucial for transparency.
Conclusions:
- Macrophage heterogeneity and temporal dynamics are critical determinants of corneal wound healing outcomes.
- Targeting macrophage states offers potential therapeutic strategies for preventing corneal scarring.
- A deeper understanding is needed to shift the balance from fibrosis toward regeneration.
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