Therapeutic effect of epidural dexamethasone palmitate in a rat model of lumbar spinal stenosis

医学 染色分解 地塞米松 麻醉 治疗效果 腰椎管狭窄症 痛觉过敏 痛觉超敏 硬膜外类固醇注射 背根神经节 腰椎 硬膜外给药 椎管狭窄 药理学 脊髓 内科学 腰痛 外科 吗啡 伤害 病理 替代医学 受体 精神科
作者
Meihui Li,Haiyan Zheng,Eun Joo Choi,Francis Sahngun Nahm,Gheeyoung Choe,Pyung Bok Lee
出处
期刊:Regional Anesthesia and Pain Medicine [BMJ]
卷期号:50 (8): 667-674 被引量:1
标识
DOI:10.1136/rapm-2024-105530
摘要

Background Dexamethasone palmitate (DEP), a prodrug of dexamethasone (DEX), is a synthetic corticosteroid medication distinguished by the inclusion of a fatty acid component known as palmitate. This study introduces DEP as a novel therapeutic option for spinal epidural injection, aiming to provide safer and longer-lasting pain relief as an alternative to for patients with spinal stenosis. Methods 40 rats were randomly divided into four groups: those receiving epidural administration of normal saline (NS), and DEP in the lumbar spinal stenosis (LSS) model, and non-model rats receiving epidural NS administration. Paw withdrawal thresholds to mechanical stimulation and motor function (neurogenic intermittent claudication) were observed for up to 21 days. Hematology and blood chemistry analyses were performed 1 week after drug therapy. Tissue samples were collected for steroid pathology examination to evaluate adhesion degree, perineural area inflammation, and chromatolysis in the dorsal root ganglion (DRG), and adrenal gland. Results The DEX and DEP groups demonstrated significant recovery from mechanical allodynia and motor dysfunction after 2 weeks of drug therapy (p<0.001). However, by the third week, the effect of DEX started to diminish while the effect of DEP persisted. Furthermore, the DEP group exhibited reduced fibrosis and less chromatolysis than the NS group. No steroid overdose or toxin was observed in any group. Conclusion The epidural administration of DEP demonstrated therapeutic efficacy in reducing allodynia and hyperalgesia resulting from chronic DRG compression, thus offering prolonged pain relief. These findings underscore the potential of DEP as a promising treatment alternative for pain associated with LSS, serving as a viable substitute for .

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