Reactive oxygen species scavengers ameliorate mechanical allodynia in a rat model of cancer-induced bone pain
作者:Ya‐Qun Zhou, Dai-Qiang Liu, Shuping Chen, Jia Sun, Xuerong Zhou, Heike L. Rittner, Wei Mei, Yuke Tian, Huixian Zhang, Fei Chen, Dawei Ye · 发表于:Redox Biology · 年份:2017 · DOI:10.1016/j.redox.2017.10.011 · 被引用次数:99 · 研究领域:Bioactive Compounds and Antitumor Agents、Pain Mechanisms and Treatments、Biochemical effects in animals
Cancer-induced bone pain (CIBP) is a frequent complication in patients suffering from bone metastases. Previous studies have demonstrated a pivotal role of reactive oxygen species (ROS) in inflammatory and neuropathic pain, and ROS scavengers exhibited potent antinociceptive effect. However, the role of spinal ROS remains unclear. In this study, we investigated the analgesic effect of two ROS scavengers in a well-established CIBP model. Our results found that intraperitoneal injection of N-tert-Butyl-α-phenylnitrone (PBN, 50 and 100mg/kg) and 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl (Tempol, 100 and 200mg/kg) significantly suppressed the established mechanical allodynia in CIBP rats. Moreover, repeated injection of PBN and Tempol showed cumulative analgesic effect without tolerance. However, early treatment with PBN and Tempol failed to prevent the development of CIBP. Naive rats received repetitive injection of PBN and Tempol showed no significant change regarding the nociceptive responses. Finally, PBN and Tempol treatment notably suppressed the activation of spinal microglia in CIBP rats. In conclusion, ROS scavengers attenuated established CIBP by suppressing the activation of microglia in the spinal cord.