首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Chronic cannabinoid administration to periadolescent rats modulates the metabolic response to acute cocaine in the adult brain.
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Chronic cannabinoid administration to periadolescent rats modulates the metabolic response to acute cocaine in the adult brain.

机译:青春期大鼠长期服用大麻素可调节成年大脑对急性可卡因的代谢反应。

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PURPOSE: To analyze brain metabolic response to acute cocaine in male and female Wistar rats with or without a history of cannabinoid exposure during periadolescence. PROCEDURES: The synthetic cannabinoid agonist CP 55,940 (CP) or its vehicle (VH), were administered to male and female rats during periadolescence. When these animals reached adulthood, saline and cocaine-induced changes in 2-deoxy-2-[(1)F]fluoro-D-: glucose (FDG) uptake were studied by positron emission tomography. RESULTS: The baseline (post-saline) metabolism in the septal nuclei was higher in CP-females than in VH-females, although septal metabolism was lower in CP-females after cocaine, reaching similar values to those of VH-females at baseline. Cocaine did not affect metabolism in VH-females. Periadolescent cannabinoid treatment did not influence baseline metabolism in males although cocaine reduced the FDG uptake in the dorsal striatum of males that received the VH but not CP. CONCLUSIONS: These results suggest that cannabinoids during periadolescence modify baseline and cocaine-evoked brain metabolism in a sex-dependent manner. In the case of CP-females, the involvement of septal metabolic alterations in their susceptibility to the rewarding effects of cocaine should be further investigated.
机译:目的:分析在青春期期间有或没有大麻素暴露史的雄性和雌性Wistar大鼠的大脑对急性可卡因的代谢反应。程序:在青春期期间,对雄性和雌性大鼠施用了合成的大麻素激动剂CP 55,940(CP)或它的媒介物(VH)。当这些动物成年后,通过正电子发射断层摄影术研究了盐水和可卡因诱导的2-脱氧-2-[((1)F]氟-D-:葡萄糖(FDG)摄取)的变化。结果:尽管可卡因后CP女性中的间隔代谢较低,但CP女性中隔隔核的基线(生理盐水后)代谢水平高于VH女性,尽管在基线时与VH女性相近。可卡因不影响VH女性的新陈代谢。尽管可卡因降低了接受VH但未接受CP的男性背侧纹状体中FDG的摄取,但青春期前的大麻素治疗并未影响男性的基线代谢。结论:这些结果表明,大麻在青春期期间以性别依赖性方式改变了基线和可卡因诱发的脑代谢。对于CP女性,应进一步研究间隔代谢改变对他们对可卡因奖励作用的敏感性的影响。

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