中国神经再生研究(英文版) ›› 2014, Vol. 9 ›› Issue (12): 1204-1209.doi: 10.4103/1673-5374.135326

• 原著:周围神经损伤修复保护与再生 • 上一篇    下一篇

大鼠背根神经节植入碘125粒子治疗神经病理性痛:微损伤节内细胞但不影响后肢功

  

  • 收稿日期:2014-04-22 出版日期:2014-06-24 发布日期:2014-06-24

Implanting iodine-125 seeds into rat dorsal root ganglion for neuropathic pain: neuronal microdamage without impacting hind limb motion

Ling Jiao 1, Tengda Zhang 1, Huixing Wang 2, Wenyi Zhang 1, Saijun Fan 1, Xiaodong Huo 2, Baosen Zheng 2, Wenting Ma 2   

  1. 1 Institute of Radiation Medicine, Chinese Academy of Medical Sciences, Tianjin, China
    2 Second Affiliated Hospital of Tianjin Medical University, Tianjin, China
  • Received:2014-04-22 Online:2014-06-24 Published:2014-06-24
  • Contact: Wenting Ma, Second Affiliated Hospital of Tianjin Medical University, Tianjin 300211, China, md518880@163.com.

摘要:

以往研究表明,碘125放射治疗可降低癌症患者的痛感。考虑到脊髓背根神经节在外周感觉传导中起着重要作用,实验设计了以放射性粒子碘125植入减轻神经病理性疼痛的实验。我们将放射活度为0,14.8 MBq,29.6 MBq的125I粒子分别植入到大鼠L5背根神经节处,为低、高放射性活度组。von Frey hair测量结果发现,高放射性活度组的大鼠后肢机械刺激收缩阈值显著提高。透射电镜结果表明,低放射性活度组植入后1,440 h和高放射性活度组植入后336 h背根神经节细胞核膜有皱折,核仁边集,线粒体普遍肿胀,空泡样变, 溶酶体增多,部分内质网肿胀。高放射性活度组植入后1,440 h大量背根神经节出现核膜皱缩,部分核膜模糊,内质网坏死,低、高剂量放射性粒子植入大鼠的后肢联合行为评分与植入前比较差异无显著性意义。结果证明,植入碘125至L5背根神经节后疼痛的阈值升高,尽管可出现背根神经节细胞的微损伤,但并未影响后肢的运动功能。

关键词: 神经再生, 碘125, 镇痛, 放射性粒子, 超微结构, 疼痛阈值, 背根神经节损伤, 神经病理性疼痛

Abstract:

The use of iodine-125 (125I) in cancer treatment has been shown to relieve patients’ pain. Considering dorsal root ganglia are critical for neural transmission between the peripheral and central nervous systems, we assumed that 125I could be implanted into rat dorsal root ganglia to provide relief for neuropathic pain. 125I seeds with different radioactivity (0, 14.8, 29.6 MBq) were implanted separately through L4–5 and L5–6 intervertebral foramen into the vicinity of the L5 dorsal root ganglion. von Frey hair results demonstrated the mechanical pain threshold was elevated after implanting 125I seeds from the high radioactivity group. Transmission electron microscopy revealed that nuclear membrane shrinkage, nucleolar margination, widespread mitochondrial swelling, partial vacuolization, lysosome increase, and partial endoplasmic reticulum dilation were visible at 1,440 hours in the low radioactivity group and at 336 hours in the high radioactivity group. Abundant nuclear membrane shrinkage, partial fuzzy nuclear membrane and endoplasmic reticulum necrosis were observed at 1,440 hours in the high radioactivity group. No significant difference in combined behavioral scores was detected between preoperation and postoperation in the low and high radioactivity groups. These results suggested that the mechanical pain threshold was elevated after implanting 125I seeds without influencing motor functions of the hind limb, although cell injury was present.

Key words: nerve regeneration, iodine-125, analgesia, radioactive seeds, ultrastructure, pain threshold, dorsal root ganglion injury, neuropathic pain, neural regeneration

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