南方医科大学学报 ›› 2016, Vol. 36 ›› Issue (11): 1449-.

• •    下一篇

携带靶向抑制囊泡谷氨酸转运体3干扰RNA的单纯疱疹病毒载体可减弱小鼠触诱发痛

刘洁琼,李臣鸿,罗琼,尹平平,雷涛,罗放   

  • 出版日期:2016-11-20 发布日期:2016-11-20

Herpes simplex virus-mediated RNA interference targeting vesicular glutamate transporter 3 attenuates tactile allodynia in mice

LIU Jieqiong, LI Chenhong, LUO Qiong, YIN Pingping, LEI Tao, LUO Fang   

  • Online:2016-11-20 Published:2016-11-20

摘要: 目的构建含靶向囊泡谷氨转运体3(Vglut 3)的特异性RNA干扰序列的1型单纯疱疹病毒载体,并观察其经坐骨神经接 种后缓解小鼠触诱发痛的作用。方法首先构建携带Vglut3特异性短发卡RNA(shRNA)的重组1型单纯疱疹病毒载体。将重 组载体通过坐骨神经接种,检测其在小鼠触诱发痛模型中的镇痛效果。分别用von Frey丝和Hargreaves’实验测试小鼠的机械 性触诱发痛和热痛敏,通过免疫组织化学和免疫印迹法评估背根神经节中VGLUT3的表达。结果成功构建了重组1型单纯疱 疹病毒载体HSV-1-shvglut3。经坐骨神经接种后,该载体可将Vglut3特异性shRNA逆行运输至背根神经节。触诱发性疼痛模 型小鼠接种HSV-1-shvglut3载体2周后,背根神经节中VGLUT3表达下调,小鼠的机械性缩爪阈值回升至大致基础水平。这种 镇痛效应持续超过两个星期,未出现明显的系统副作用,且小鼠热痛阈没有明显变化。结论表达于背根神经节中的Vglut3是 一个针对触诱发痛极具前景的干扰靶点。我们构建的HSV-1-shvglut3载体通过外周接种,对触诱发痛有特异、安全、高效、持久 的镇痛作用。

Abstract: Objective To construct a replication-deficient herpes simplex virus (HSV-1) for delivering a short hairpin RNA (shRNA) targeting vesicular glutamate transporter 3 (VGLUT3) and observe its effect in alleviating allodynia in mice. Methods The recombinant HSV-1 vector carrying the shRNA targeting Vglut3 (HSV-1-shvglut3) was constructed and inoculated in the sciatic nerve in a mouse model of mechanical allodynia to test its analgesia effect. Mechanical allodynia and heat hypersensitivity of the mice were tested by von Frey filaments and Hargreaves’ test, respectively. VGLUT3 expression in the dorsal root ganglion (DRG) was evaluated by immunohistochemistry and Western blotting. Results Following inoculation in the sciatic nerve, the HSV vector HSV-1-shvglut3 was retrogradely transported to the DRG. Mechanical withdraw thresholds of the mouse models receiving HSV-1-shvglut3 inoculation were reversed to nearly the baseline level, and VGLUT3 expression in the DRG was down-regulated 2 weeks after vector inoculation. The analgesic effect lasted for over 2 weeks in these mice without obvious systematic side effects or changes in heat hypersensitivity threshold. Conclusion Vglut3 in the DRG is a promising therapeutic target for alleviating mechanical allodynia, and HSV-1 vector-mediated RNA interference is safe and efficient for inducing long-lasting analgesia after peripheral inoculation of the vector.