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Updated: Oct 25, 2025

Author Spotlight: Exploring Cell Migration and Gene Roles in the Developing Brain
Published on: March 8, 2024
HMGB1-RAGE Pathway Contributes to the Abnormal Migration of Endogenous Subventricular Zone Neural Progenitors in an
Yi-Wen Mei1,2, Tian-Lan Huang1,2, Xin Chen2
1College of Medicine, Southwest Jiaotong University, Chengdu, China.
Abstract:
Abnormal migration of subventricular zone (SVZ)-derived neural progenitor cells (SDNPs) is involved in the pathological and epileptic processes of focal cortical dysplasias (FCDs), but the underlying mechanisms are not clear. Recent studies indicated that high mobility group box 1 (HMGB1)/receptor for advanced glycation end products (RAGE) are widely expressed in epileptic specimens of FCDs, which suggests that the HMGB1-RAGE pathway is involved in the pathological and/or epileptic processes of FCDs. The present study used Nestin-GFPtg/+ transgenic mice, and we established a model of freezing lesion (FL), as described in our previous report. A "migrating stream" composed of GFP-Nestin+ SDNPs was derived from the SVZ region and migrated to the cortical FL area. We found that translocated HMGB1 and RAGE were expressed in cortical lesion in a clustered distribution pattern, which was especially obvious in the early stage of FL compared to the sham group. Notably, the number of GFP-Nestin+ SDNPs within the "migrating stream" was significantly decreased when the HMGB1-RAGE pathway was blocked by a RAGE antagonist or deletion of the RAGE gene. The absence of RAGE also decreased the activity of pentylenetetrazol-induced cortical epileptiform discharge. In summary, this study provided experimental evidence that the levels of extranuclear HMGB1 and its receptor RAGE were increased in cortical lesion in the early stage of the FL model. Activation of the HMGB1-RAGE pathway may contribute to the abnormal migration of SDNPs and the hyperexcitability of cortical lesion in the FL model.
Insights
Abnormal neural progenitor cell migration in focal cortical dysplasia is linked to the HMGB1-RAGE pathway. Blocking this pathway reduced cell migration and cortical hyperexcitability in a mouse model.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Abnormal migration of subventricular zone (SVZ)-derived neural progenitor cells (SDNPs) contributes to focal cortical dysplasias (FCDs).
- The High Mobility Group Box 1 (HMGB1)/Receptor for Advanced Glycation End Products (RAGE) pathway is implicated in FCDs.
Purpose of the Study:
- To investigate the role of the HMGB1-RAGE pathway in SDNPs migration and cortical hyperexcitability in a focal cortical dysplasia model.
- To elucidate the mechanisms underlying abnormal cell migration in FCDs.
Main Methods:
- Established a freezing lesion (FL) mouse model using Nestin-GFP transgenic mice.
- Administered a RAGE antagonist or utilized RAGE gene deletion to block the HMGB1-RAGE pathway.
- Assessed SDNPs migration and pentylenetetrazol-induced cortical epileptiform discharge.
Main Results:
- Increased HMGB1 and RAGE expression was observed in the cortical lesion area in the early stage of FL.
- Blocking the HMGB1-RAGE pathway significantly reduced the number of migrating SDNPs.
- RAGE absence decreased the activity of cortical epileptiform discharges.
Conclusions:
- The HMGB1-RAGE pathway is activated in the early stage of the FL model.
- Activation of HMGB1-RAGE signaling contributes to abnormal SDNPs migration and cortical hyperexcitability in FCDs.
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