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. 2025 Aug;47(4):509-518.
doi: 10.3881/j.issn.1000-503X.16494.

Functional Mechanisms of Spinal Cord Fragile X Mental Retardation Protein and β-Catenin Involved in Neuropathic Pain

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Free article

Functional Mechanisms of Spinal Cord Fragile X Mental Retardation Protein and β-Catenin Involved in Neuropathic Pain

Long Zhang et al. Zhongguo Yi Xue Ke Xue Yuan Xue Bao. 2025 Aug.
Free article

Abstract

Objective To explore the functional mechanism of spinal cord fragile X mental retardation protein(FMRP)involved in neuropathic pain(NP)by using the sciatic nerve model of chronic compression injury(CCI).Methods First,to investigate the changes of spinal cord FMRP and β-catenin following the development of NP,this study compared the 50%mechanical withdrawal threshold(MWT)and thermal withdrawal latency(TWL)in CCI rats,as well as changes of FMRP and β-catenin in the spinal dorsal horn post-surgery,through random grouping.Immunofluorescence staining was performed on spinal cord tissue sections from CCI rats.Second,to further validate the alterations in pain behavior when the FMRP function was lost,we measured the 50%MWT,TWL,and FMRP and β-catenin in the spinal dorsal horn after FMRP knockdown in CCI rats.Finally,we measured the 50%MWT,TWL,and FMRP and β-catenin in the case of FMRP hyperfunction for validation.Results Compared with the baseline CCI group and the naive and sham groups after modeling,the CCI group after modeling showed decreases in 50%MWT and TWL(all P<0.001).After modeling,compared with the naive group and the sham group,the CCI group presented up-regulated expression of FMRP(P=0.027,P=0.022)and β-catenin(P<0.001,P=0.001)in the spinal dorsal horn.No co-localization of FMRP with astrocytes and microglia was observed in the spinal cord,while the co-localization with neurons was observed.Compared with the baseline,the CCI+FMRP knockdown group showed decreases in 50%MWT(P=0.015)and TWL(P=0.001)after modeling.After intrathecal injection of small interfering RNA(siRNA),the 50%MWT(P=0.020)and TWL(P=0.009)of the CCI+FMRP knockdown group were increased.Moreover,compared with the CCI group and the CCI+solvent group,the CCI+FMRP knockdown group showed increases in 50%MWT(both P<0.001)and TWL(P=0.005,P=0.006).After intrathecal injection of siRNA,the expression levels of FMRP(P=0.012,P=0.007)and β-catenin(both P<0.001)in the spinal dorsal horn of the CCI+FMRP knockdown group were lower than those of the CCI group and the CCI+solvent group.Compared with the baseline FMRP overexpression group and the naive and negative control groups after adeno-associated virus(AAV)injection,the FMRP overexpression group after AAV injection showed decreases in 50%MWT and TWL(all P<0.001).After AAV injection,compared with the naive group and the negative control group,the FMRP overexpression group demonstrated up-regulated expression of FMRP(both P<0.001)and β-catenin(P=0.006,P=0.008)in the spinal cord.Conclusions This study confirms that spinal cord FMRP and β-catenin are involved in NP induced by CCI.Spinal cord FMRP may be one of the potential therapeutic targets for NP.

目的 采用坐骨神经慢性压迫性损伤(CCI)模型,探索脊髓脆性X智力低下蛋白(FMRP)参与神经病理性疼痛(NP)的机制。方法 为探索脊髓FMRP和β-连环蛋白随NP发生的变化,通过随机分组比较CCI大鼠的50%机械刺激缩足反射阈值(MWT)、热辐射缩足反射潜伏期(TWL)和术后脊髓背角FMRP和β-连环蛋白的变化,CCI大鼠的脊髓组织切片行免疫荧光染色。为进一步验证FMRP功能缺失时CCI大鼠疼痛行为的变化,测定脊髓FMRP敲减后CCI大鼠50%MWT、TWL和脊髓背角FMRP和β-连环蛋白。验证FMRP功能亢进时,测定正常大鼠50%MWT、TWL和脊髓背角FMRP和β-连环蛋白。结果 与基线CCI组及造模后空白对照组和假手术组相比,造模后CCI组50%MWT、TWL均显著下降(P均<0.001)。造模后,与空白对照组和假手术组相比,CCI组大鼠术后脊髓背角FMRP(P=0.027,P=0.022)和β-连环蛋白(P<0.001,P=0.001)表达均显著升高。脊髓中的FMRP未观察到与星形胶质细胞和小胶质细胞的共定位,但显示出与神经元细胞的共定位。与基线相比,造模后CCI+FMRP敲减组50%MWT(P=0.015)和TWL(P=0.001)均显著下降;鞘内注射小干扰RNA后CCI+FMRP敲减组50%MWT(P=0.020)和TWL(P=0.009)均显著回升;且与CCI组和CCI+溶剂组相比,CCI+FMRP敲减组的50%MWT(P均<0.001)和TWL(P=0.005,P=0.006)均显著升高。鞘内注射小干扰RNA后,与CCI组和CCI+溶剂组相比,CCI+FMRP敲减组脊髓背角的FMRP(P=0.012,P=0.007)和β-连环蛋白(P均<0.001)的表达均显著降低。与基线FMRP过表达组及注射腺相关病毒(AAV)后空白对照组和阴性对照组相比,注射AAV后FMRP过表达组的50%MWT和TWL均显著下降(P均<0.001)。注射AAV后,与空白对照组和阴性对照组相比,FMRP过表达组的脊髓FMRP(P均<0.001)和β-连环蛋白(P=0.006,P=0.008)的表达均显著升高。结论 脊髓FMRP和β-连环蛋白参与CCI诱导的NP机制,脊髓FMRP可能是NP潜在的治疗靶点之一。.

Keywords: fragile X mental retardation protein; neuropathic pain; spinal cord; β-catenin.

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