MFG-E8 Ameliorates Nerve Injury-Induced Neuropathic Pain by Regulating Microglial Polarization and Neuroinflammation via Integrin β3/SOCS3/STAT3 Pathway in Mice.

IF 6.2
Longqing Zhang, Xinyi Dai, Danyang Li, Jiayi Wu, Shaojie Gao, Fanhe Song, Lin Liu, Yaqun Zhou, Daiqiang Liu, Wei Mei
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Abstract

Spinal microglial polarization plays a crucial role in the pathological processes of neuropathic pain following peripheral nerve injury. Accumulating evidence suggests that milk fat globule epidermal growth factor-8 (MFG-E8) exhibits anti-inflammatory effect and regulates microglial polarization through the integrin β3 receptor. However, the impact of MFG-E8 on microglial polarization in the context of neuropathic pain has not yet been investigated. In this study, we evaluated the effect of MFG-E8 on pain hypersensitivity and spinal microglial polarization following spared nerve injury (SNI) of the sciatic nerve in mice. We determined the molecular mechanisms underlying the effects of MFG-E8 on pain hypersensitivity and spinal microglial polarization using pain behavior assessment, western blot (WB) analysis, immunofluorescence (IF) staining, quantitative polymerase chain reaction (qPCR), enzyme-linked immunosorbent assay (ELISA), and small interfering RNA (siRNA) transfection. Our findings indicate that SNI significantly increased the levels of MFG-E8 and integrin β3 expressed in microglia within the spinal cord of mice. Additionally, we observed that intrathecal injection of recombinant human MFG-E8 (rhMFG-E8) alleviated SNI induced-mechanical allodynia and thermal hyperalgesia. Furthermore, the results suggested that rhMFG-E8 facilitated M2 microglial polarization and ameliorated neuroinflammation via integrin β3/SOCS3/STAT3 pathway in the spinal cord of mice with SNI. Importantly, these effects were negated by integrin β3 siRNA, or SOCS3 siRNA. These results demonstrate that MFG-E8 ameliorates peripheral nerve injury induced-mechanical allodynia and thermal hyperalgesia by driving M2 microglial polarization and mitigating neuroinflammation mediated by integrin β3/SOCS3/STAT3 pathway in the spinal cord of mice. MFG-E8 may serve as a promising target for the treatment of neuropathic pain.

MFG-E8通过整合素β3/SOCS3/STAT3通路调节小鼠的微胶质细胞极化和神经炎症,从而改善神经损伤诱发的神经病理性疼痛
脊髓小胶质细胞极化在周围神经损伤后神经病理性疼痛的病理过程中起着至关重要的作用。越来越多的证据表明,乳脂球表皮生长因子-8(MFG-E8)具有抗炎作用,并通过整合素β3受体调节小胶质细胞极化。然而,MFG-E8 在神经病理性疼痛中对小胶质细胞极化的影响尚未得到研究。在这项研究中,我们评估了 MFG-E8 对小鼠坐骨神经损伤(SNI)后痛觉过敏性和脊髓小胶质细胞极化的影响。我们使用疼痛行为评估、Western 印迹(WB)分析、免疫荧光(IF)染色、定量聚合酶链反应(qPCR)、酶联免疫吸附试验(ELISA)和小干扰 RNA(siRNA)转染等方法确定了 MFG-E8 对痛觉过敏和脊髓小胶质细胞极化的影响的分子机制。我们的研究结果表明,SNI 能明显提高小鼠脊髓内小胶质细胞中 MFG-E8 和整合素 β3 的表达水平。此外,我们还观察到,鞘内注射重组人 MFG-E8(rhMFG-E8)可减轻 SNI 诱导的机械异感和热痛。此外,研究结果表明,rhMFG-E8 可促进 M2 小胶质细胞极化,并通过整合素 β3/SOCS3/STAT3 通路改善 SNI 小鼠脊髓中的神经炎症。重要的是,这些作用被整合素β3 siRNA 或 SOCS3 siRNA 所抵消。这些结果表明,MFG-E8 可通过驱动小鼠脊髓中 M2 微神经胶质细胞极化和减轻整合素 β3/SOCS3/STAT3 通路介导的神经炎症,从而改善外周神经损伤引起的机械异感和热痛。MFG-E8可能是治疗神经病理性疼痛的一个有前途的靶点。
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