[Expression of GAP-43 in midbrain ventral tegmental area of morphine withdrawal rats].
Liangming Luo, Yu‐Feng Wu, Wei-cheng Ni, Hua Zhu
Abstract
Liangming Luo, Yu‐Feng Wu, Wei-cheng Ni, Hua Zhu
Abstract
OBJECTIVE: To observe the protein expression of growth associated protein-43 (GAP-43) in midbrain ventral tegmental area in morphine withdrawal rats at different time, and to evaluate the effect of GAP-43 on morphine withdrawal memory. METHODS: Rat models of morphine dependent 1 week, 2 weeks and 4 weeks were established by morphine hydrochloride intraperitoneal injection with increasing doses to establish natural withdrawal. The protein expression of GAP-43 in midbrain ventral tegmental area was observed by immunohistochemical staining and the results were analyzed by Image-Pro Plus 5.1 image analysis system. RESULTS: With prolongation of dependent time, the expression of GAP-43 was decreased then increased in midbrain ventral tegmental area. CONCLUSION: GAP-43 could play a role in morphine withdrawal memory in midbrain ventral tegmental area.
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OBJECTIVE: To observe the protein expression of growth associated protein-43 (GAP-43) in midbrain ventral tegmental area in morphine withdrawal rats at different time, and to evaluate the effect of GAP-43 on morphine withdrawal memory. METHODS: Rat models of morphine dependent 1 week, 2 weeks and 4 weeks were established by morphine hydrochloride intraperitoneal injection with increasing doses to establish natural withdrawal. The protein expression of GAP-43 in midbrain ventral tegmental area was observed by immunohistochemical staining and the results were analyzed by Image-Pro Plus 5.1 image analysis system. RESULTS: With prolongation of dependent time, the expression of GAP-43 was decreased then increased in midbrain ventral tegmental area. CONCLUSION: GAP-43 could play a role in morphine withdrawal memory in midbrain ventral tegmental area.
Key concepts: Ventral tegmental area, Midbrain, Morphine, Endocrinology, Internal medicine, Chemistry, Medicine, Central nervous system