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Updated: Jul 18, 2025

Facial Nerve Surgery in the Rat Model to Study Axonal Inhibition and Regeneration
Published on: May 5, 2020
Mechanisms of Microglia Proliferation in a Rat Model of Facial Nerve Anatomy
Takashi Ishijima1, Kazuyuki Nakajima1,2
1Graduate School of Science and Engineering, Soka University, Tokyo 192-8577, Japan.
Abstract:
Although microglia exist as a minor glial cell type in the normal state of the brain, they increase in number in response to various disorders and insults. However, it remains unclear whether microglia proliferate in the affected area, and the mechanism of the proliferation has long attracted the attention of researchers. We analyzed microglial mitosis using a facial nerve transection model in which the blood-brain barrier is left unimpaired when the nerves are axotomized. Our results showed that the levels of macrophage colony-stimulating factor (M-CSF), cFms (the receptor for M-CSF), cyclin A/D, and proliferating cell nuclear antigen (PCNA) were increased in microglia in the axotomized facial nucleus (axotFN). In vitro experiments revealed that M-CSF induced cFms, cyclin A/D, and PCNA in microglia, suggesting that microglia proliferate in response to M-CSF in vivo. In addition, M-CSF caused the activation of c-Jun N-terminal kinase (JNK) and p38, and the specific inhibitors of JNK and p38 arrested the microglial mitosis. JNK and p38 were shown to play roles in the induction of cyclins/PCNA and cFms, respectively. cFms was suggested to be induced through a signaling cascade of p38-mitogen- and stress-activated kinase-1 (MSK1)-cAMP-responsive element binding protein (CREB) and/or p38-activating transcription factor 2 (ATF2). Microglia proliferating in the axotFN are anticipated to serve as neuroprotective cells by supplying neurotrophic factors and/or scavenging excite toxins and reactive oxygen radicals.
Insights
Microglia proliferate in response to macrophage colony-stimulating factor (M-CSF) via c-Jun N-terminal kinase (JNK) and p38 signaling pathways. This microglial proliferation in the brain may offer neuroprotection.
Area of Science:
- Neuroscience
- Cell Biology
- Immunology
Background:
- Microglia are a minor glial cell type in the healthy brain but increase in number during disorders.
- The proliferation mechanism of microglia in affected brain areas remains unclear.
Purpose of the Study:
- To investigate microglial mitosis and its underlying mechanisms in response to nerve injury.
- To elucidate the role of macrophage colony-stimulating factor (M-CSF) in microglial proliferation.
Main Methods:
- Utilized a facial nerve transection model with an intact blood-brain barrier.
- Analyzed microglial mitosis, M-CSF, cFms, cyclin A/D, and proliferating cell nuclear antigen (PCNA) levels.
- Conducted in vitro experiments with M-CSF and specific kinase inhibitors (JNK, p38).
Main Results:
- M-CSF, cFms, cyclin A/D, and PCNA levels increased in microglia of the axotomized facial nucleus.
- M-CSF induced cFms, cyclin A/D, and PCNA in vitro, promoting microglial proliferation.
- M-CSF activated JNK and p38 pathways, which were essential for microglial mitosis and cyclin/PCNA induction.
Conclusions:
- Microglial proliferation in response to M-CSF is mediated by JNK and p38 signaling pathways.
- The signaling cascade involves MSK1, CREB, and ATF2 in M-CSF-induced cFms expression.
- Proliferating microglia in injured brain regions may provide neuroprotection by supplying neurotrophic factors and clearing toxins.

