Related Experiment Video
Updated: May 26, 2026

Assessing Microglial Phagocytosis of Myelin Debris in vitro Under Repeated Magnetic Stimulation
Published on: June 17, 2025
Phagocytosis of neuronal debris by microglia is associated with neuronal damage in multiple sclerosis
Ruth Huizinga1, Baukje J van der Star, Markus Kipp
1Department of Immunology, Erasmus MC, University Medical Centre, Rotterdam, The Netherlands.
Abstract:
Neuroaxonal degeneration is a pathological hallmark of multiple sclerosis (MS) contributing to irreversible neurological disability. Pathological mechanisms leading to axonal damage include autoimmunity to neuronal antigens. In actively demyelinating lesions, myelin is phagocytosed by microglia and blood-borne macrophages, whereas the fate of degenerating or damaged axons is unclear. Phagocytosis is essential for clearing neuronal debris to allow repair and regeneration. However, phagocytosis may lead to antigen presentation and autoimmunity, as has been described for neuroaxonal antigens. Despite this notion, it is unknown whether phagocytosis of neuronal antigens occurs in MS. Here, we show using novel, well-characterized antibodies to axonal antigens, that axonal damage is associated with HLA-DR expressing microglia/macrophages engulfing axonal bulbs, indicative of axonal damage. Neuronal proteins were frequently observed inside HLA-DR(+) cells in areas of axonal damage. In vitro, phagocytosis of neurofilament light (NF-L), present in white and gray matter, was observed in human microglia. The number of NF-L or myelin basic protein (MBP) positive cells was quantified using the mouse macrophage cell line J774.2. Intracellular colocalization of NF-L with the lysosomal membrane protein LAMP1 was observed using confocal microscopy confirming that NF-L is taken up and degraded by the cell. In vivo, NF-L and MBP was observed in cerebrospinal fluid cells from patients with MS, suggesting neuronal debris is drained by this route after axonal damage. In summary, neuroaxonal debris is engulfed, phagocytosed, and degraded by HLA-DR(+) cells. Although uptake is essential for clearing neuronal debris, phagocytic cells could also play a role in augmenting autoimmunity to neuronal antigens.
Insights
In multiple sclerosis (MS), microglia and macrophages engulf and degrade neuroaxonal debris. This phagocytosis, while clearing damage, may also fuel autoimmunity to neuronal antigens.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Neuroaxonal degeneration is a key feature of multiple sclerosis (MS), leading to permanent neurological deficits.
- The mechanisms of axonal damage and the fate of degenerating axons in MS lesions are not fully understood.
- While phagocytosis clears debris, it can also promote autoimmunity by presenting self-antigens.
Purpose of the Study:
- To investigate whether phagocytosis of neuronal antigens occurs in multiple sclerosis (MS) lesions.
- To determine the role of microglia and macrophages in clearing axonal debris in MS.
- To explore the potential link between phagocytosis of neuronal debris and autoimmunity in MS.
Main Methods:
- Utilized novel antibodies to detect axonal antigens in MS lesions.
- Employed confocal microscopy and cell line studies (J774.2) to assess phagocytosis of neurofilament light (NF-L) and myelin basic protein (MBP).
- Analyzed cerebrospinal fluid cells from MS patients for the presence of NF-L and MBP.
Main Results:
- HLA-DR expressing microglia/macrophages were observed engulfing axonal bulbs in MS lesions.
- Neuronal proteins, including NF-L, were found within HLA-DR positive cells in areas of axonal damage.
- In vitro studies confirmed human microglia phagocytose and degrade NF-L.
- NF-L and MBP were detected in cerebrospinal fluid cells of MS patients.
Conclusions:
- Neuroaxonal debris is actively engulfed, phagocytosed, and degraded by HLA-DR positive cells in MS.
- Phagocytosis is crucial for clearing neuronal debris, but may also contribute to autoimmunity against neuronal antigens.
- These findings highlight a dual role for phagocytic cells in MS pathogenesis.
Related Concept Videos
Phagocytosis of Apoptotic Cells
Normal cells contain receptors that prevent them from being recognized by phagocytes.
Neurogenesis and Regeneration of Nervous Tissue
Glial Cells
Multiple Sclerosis l: Introduction

