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Updated: Jan 15, 2026

Human Ex vivo Wound Model and Whole-Mount Staining Approach to Accurately Evaluate Skin Repair
Published on: February 17, 2021
Niche-specific dermal macrophage loss promotes skin capillary ageing
Kailin R Mesa1, Kevin A O'Connor2, Charles Ng3
1Department of Cell Biology, New York University School of Medicine, New York, NY, USA. kai.mesa@med.nyu.edu.
Abstract:
All mammalian organs depend on resident macrophage populations to coordinate repair and facilitate tissue-specific functions1-3. Functionally distinct macrophage populations reside in discrete tissue niches and are replenished through a combination of local proliferation and monocyte recruitment4,5. Declines in macrophage abundance and function have been linked to age-associated pathologies, including atherosclerosis, cancer and neurodegeneration6-8. However, the mechanisms that coordinate macrophage organization and replenishment within ageing tissues remain largely unclear. Here we show that capillary-associated macrophages (CAMs) are selectively lost over time, contributing to impaired vascular repair and reduced tissue perfusion in older mice. To investigate resident macrophage behaviour in vivo, we used intravital two-photon microscopy in live mice to non-invasively image the skin capillary plexus, a spatially well-defined vascular niche that undergoes rarefication and functional decline with age. We find that CAMs are lost at a rate exceeding capillary loss, resulting in macrophage-deficient vascular niches in both mice and humans. CAM phagocytic activity was locally required to repair obstructed capillary blood flow, leaving macrophage-deficient niches selectively vulnerable under homeostatic and injury conditions. Our study demonstrates that homeostatic renewal of resident macrophages is less precisely regulated than previously suggested9-11. Specifically, neighbouring macrophages do not proliferate or reorganize to compensate for macrophage loss without injury or increased growth factors, such as colony-stimulating factor 1 (CSF1). These limitations in macrophage renewal may represent early and targetable contributors to tissue ageing.
Insights
Capillary-associated macrophages (CAMs) are lost with age, impairing tissue repair and blood flow. Neighboring macrophages do not compensate for this loss, highlighting a potential contributor to aging.
Area of Science:
- Immunology
- Aging Research
- Vascular Biology
Background:
- Resident macrophages are crucial for organ repair and function.
- Macrophage decline is linked to age-related diseases.
- Mechanisms of macrophage replenishment in aging tissues are poorly understood.
Purpose of the Study:
- To investigate the behavior and replenishment of resident macrophages in aging tissues.
- To determine the role of capillary-associated macrophages (CAMs) in vascular repair and aging.
- To explore the regulation of macrophage renewal in response to aging.
Main Methods:
- Intravital two-photon microscopy in live mice to image the skin capillary plexus.
- Non-invasive imaging of vascular niches in aging mice and humans.
- Assessment of CAM phagocytic activity and its role in capillary repair.
Main Results:
- Capillary-associated macrophages (CAMs) are selectively lost with age, exceeding capillary loss.
- Macrophage-deficient vascular niches exhibit impaired repair and vulnerability.
- Neighboring macrophages do not proliferate or reorganize to compensate for CAM loss without external stimuli like CSF1.
Conclusions:
- Selective loss of CAMs contributes to impaired vascular repair and tissue perfusion in aging.
- Homeostatic renewal of resident macrophages is less regulated than previously thought.
- Limitations in macrophage renewal may be early, targetable contributors to tissue aging.
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