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Cellular activity of resident macrophages during Wallerian degeneration
1Clinic for Plastic, Hand and Reconstructive Surgery, Hannover Medical School, Hannover, Germany.
Abstract:
The resident macrophages have been accepted as an important component of the peripheral nervous system as Schwann cells. To elucidate their role during Wallerian degeneration without interference from extrinsic hematogenous macrophages, we designed a culture system to investigate the behavior of resident macrophages in vitro. A total of 75 adult male Lewis rats were used; 2. 5-cm-length sciatic nerve explants were harvested. There were three groups. In the culture groups, the nerve explants were incubated in Dulbecco's modified Eagle's medium (DMEM) only or in DMEM supplemented with 2 microm forskolin and 10 microg/ml pituitary extract (mitogenic medium for Schwann cells). In vivo predegenerated nerves and normal nerves were used as the positive and negative controls, respectively. The observation periods extended to 3 weeks. Hematoxylin and eosin (H&E) stain was employed to estimate overall cell number in nerve explants. Macrophages were labeled with ED1; S-100 immunostaining was used to evaluate the presence of Schwann cells during Wallerian degeneration. Trichrome stain and toluidine blue stain were used to visualize the fate of myelin. In the culture groups, the number of resident macrophages increased continuously, although there were significantly fewer resident macrophages than hematogenous macrophages after 3 days of Wallerian degeneration (P < 0.01). Morphologically, resident macrophages contained densely small ED1-positive granules within their cytoplasm, even at later stages of observation, whereas hematogenous macrophages contained typical large ED1-positive foam vacuoles characteristic of their mature phagocytic ability. The cellular activity of Schwann cells was well preserved in the mitogenic medium; however, myelin removal was not significantly enhanced as compared with the DMEM groups (P > 0.05). The clearance of myelin debris was shown to be incomplete in culture groups as compared with the complete removal of myelin debris in the in vivo groups. Resident macrophages were actively involved in Wallerian degeneration, but their phagocytic and proliferation ability was limited. Schwann cells played an adjunctive role during the removal of myelin debris.
Insights
Resident macrophages in the peripheral nervous system actively participate in Wallerian degeneration but show limited phagocytic and proliferation capabilities. Schwann cells support myelin debris removal but do not significantly enhance the process in vitro.
Area of Science:
- Neuroscience
- Cell Biology
- Immunology
Background:
- Resident macrophages are recognized as crucial components of the peripheral nervous system, alongside Schwann cells.
- Understanding the specific roles of resident macrophages during Wallerian degeneration is essential for regenerative medicine.
- Distinguishing resident macrophage behavior from extrinsic hematogenous macrophages is critical for accurate in vitro studies.
Purpose of the Study:
- To investigate the behavior and function of resident macrophages in vitro during Wallerian degeneration.
- To elucidate the role of resident macrophages without interference from extrinsic hematogenous macrophages.
- To compare the phagocytic and proliferative capacities of resident macrophages versus hematogenous macrophages.
Main Methods:
- Established an in vitro culture system using adult Lewis rat sciatic nerve explants.
- Utilized Dulbecco's modified Eagle's medium (DMEM) with or without forskolin and pituitary extract.
- Employed Hematoxylin and eosin (H&E), ED1 labeling, S-100 immunostaining, Trichrome, and toluidine blue stains for cellular and myelin analysis.
Main Results:
- Resident macrophage numbers increased in culture, but remained significantly lower than hematogenous macrophages after 3 days.
- Resident macrophages exhibited small ED1-positive granules, distinct from the large foam vacuoles of mature hematogenous macrophages.
- Schwann cell activity was maintained in mitogenic medium, but myelin removal was not significantly enhanced; debris clearance was incomplete compared to in vivo models.
Conclusions:
- Resident macrophages are involved in Wallerian degeneration but possess limited phagocytic and proliferative abilities in vitro.
- Schwann cells play an adjunctive role in myelin debris removal during Wallerian degeneration.
- The in vitro culture system provides insights into resident macrophage behavior, highlighting differences from hematogenous macrophages.