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宋莉, 杨邦祥, 银燕, 等. 慢性吗啡注射对幼年大鼠痛行为学的影响[J]. 四川大学学报(医学版), 2013, 44(2): 209-212.
引用本文: 宋莉, 杨邦祥, 银燕, 等. 慢性吗啡注射对幼年大鼠痛行为学的影响[J]. 四川大学学报(医学版), 2013, 44(2): 209-212.
SONG Li, YANG Bang-xiang, YIN Yan, et al. Mechanical Hyperalgesia Induced by Chronic Morphine Administration in Young Rats[J]. Journal of Sichuan University (Medical Sciences), 2013, 44(2): 209-212.
Citation: SONG Li, YANG Bang-xiang, YIN Yan, et al. Mechanical Hyperalgesia Induced by Chronic Morphine Administration in Young Rats[J]. Journal of Sichuan University (Medical Sciences), 2013, 44(2): 209-212.

慢性吗啡注射对幼年大鼠痛行为学的影响

Mechanical Hyperalgesia Induced by Chronic Morphine Administration in Young Rats

  • 摘要: 目的 探讨慢性吗啡注射对幼年大鼠痛行为学的影响及其发生机制。 方法 雄性3~4周龄SD大鼠16只随机分为对照组(n=8)和吗啡组(n=8)。两组幼年大鼠分别皮下注射生理盐水1 mL/kg(对照组)和吗啡10 mg/kg(吗啡组),每天1次,连续14 d。比较两组大鼠首次注药后1、3、5、7、14 d痛行为的改变和连续注药后14 d脊髓背角谷氨酸脱羧酶65(GAD65)的变化。 结果 与对照组相比,吗啡组幼年大鼠在首次吗啡注射后第3、5、7、14 d机械痛阈下降(P<0.05),连续吗啡注射14 d后脊髓背角的GAD65表达低于对照组(P<0.05)。 结论 慢性吗啡注射可导致幼年大鼠痛觉过敏的发生,而脊髓背角GAD65表达的下降可能参与了吗啡所致痛觉过敏的发生。

     

    Abstract: Objective To investigate the effects of chronic morphine administration on pain behaviors in young rats and to explore the mechanisms involved. Methods Sixteen SD young rats of 3-4 weeks were randomly divided into control and morphine administration groups. Young rats received saline (1 mL/kg) or morphine (10 mg/kg) subcutaneously. Each regimen was given once daily for 14 days. Pain behaviors were examined on day 1, 3, 5, 7, and 14 before the daily drug administration. Western blot was used to examine the expression of glutamate decarboxylase 65 (GAD65) in the spinal cord dorsal horn on day 14 after the last drug administration. Results Following 14 days of morphine administration, mechanical hyperalgesia was induced in young rats. Compared with control group, the mechanical withdrawal threshold of morphine group significantly decreased on days 3, 5,7 and 14. Chronic administration of morphine downregulated the expression of GAD65 in the spinal cord dorsal horn of young rats. Conclusion Chronic morphine administration could induce mechanical hyperalgesia in young rats, and the downregulation of GAD65 in the spinal cord dorsal horn might play a critical role in the molecular mechanisms of morphine-induced hyperalgesia.

     

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