Bilirubin Alleviates Spinal Cord Injury by Enhancing SOCS3 ‐Mediated Anti‐Inflammatory Effects via Gas6‐Axl Signaling
作者:Kunmao Jiang, Yaqi Luan, Na Shen, Xiuting Qi, Liang Hu, Yu Wang, Wentao Liu, Rong Wang, Tong‐Tong Lin, Da‐Yong Peng · 发表于:CNS Neuroscience & Therapeutics · 年份:2025 · DOI:10.1111/cns.70538 · 被引用次数:4 · 研究领域:Phagocytosis and Immune Regulation、Neuroinflammation and Neurodegeneration Mechanisms、Heme Oxygenase-1 and Carbon Monoxide
BACKGROUND: Many studies have emphasized the role of microglia-mediated neuroinflammation in spinal cord injury (SCI); however, effective clinical targets remain elusive. The growth arrest-specific 6 (Gas6)/Axl receptor tyrosine kinase (Axl) signaling pathway has been implicated in reducing inflammation, promoting tissue repair, and functional recovery. Here, we elucidate the importance of the Gas6-Axl signaling pathway in SCI repair and evaluate the role of bilirubin in modulating Gas6-Axl signaling after SCI. METHODS: ) mice and wild-type (WT) mice were employed to examine the role of Gas6-Axl signaling in SCI recovery. Microglial cells were cultured to assess the effects of bilirubin on the activation of the Gas6-Axl-SOCS3 signaling pathway. RESULTS: mice exhibited increased mortality, severe locomotor deficits, and impaired neuromuscular activity compared to WT mice. Bilirubin treatment in SCI models facilitated recovery by upregulating Gas6-Axl signaling, which in turn enhanced SOCS3 expression and suppressed the expression of pro-inflammatory mediators such as IL-1β and MMP-9. Furthermore, bilirubin treatment reduced microglial activation, highlighting its neuroprotective and anti-inflammatory properties. CONCLUSIONS: This study underscores the importance of the Gas6-Axl-SOCS3 axis in regulating functional recovery and inflammation after SCI. Activation of the Gas6-Axl pathway, particularly when combined with bilirubin treatment, represents a promising therapeutic strat...