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产前接触可卡因会影响大鼠大脑不同区域的产后多巴胺能系统。

Prenatal cocaine exposure affects postnatal dopaminergic systems in various regions of the rat brain.

作者信息

Choi S J, Mazzio E, Kolta M G, Soliman K F

机构信息

College of Pharmacy and Pharmaceutical Sciences, Florida A & M University, Tallahassee 32307, USA.

出版信息

Ann N Y Acad Sci. 1998 May 30;844:293-302.

PMID:9668686
Abstract

Pregnant female Sprague-Dawley rats were injected once daily with either 40 mg/kg cocaine hydrochloride or 0.9% saline from gestation day (GD)12 to GD 21. On postnatal day (PND)30, male offspring were sacrificed and fresh tissue from the striatum (ST) and nucleus accumbens (NA) was dissected for assessment of dopamine (DA) receptor affinity, DA uptake and DA release. 10(-6) M cocaine inhibited [3H]-DA uptake in ST tissue, whereas 10(-4) and 10(-5) M cocaine inhibited [3H]-DA uptake in the NA tissue of postnatally exposed cocaine offspring verses saline-treated controls (p < 0.05). DA release stimulated by 10(-6) M amphetamine was significantly reduced in both the ST (p < 0.001) and NA (p < 0.01) of postnatal offspring exposed to cocaine in utero compared with saline controls. In utero cocaine exposure did not influence offspring ST or NA dopamine 1 (D1) dissociation constant (Kd) or receptor density (Bmax). However, the treatment group experienced a significant increase of binding affinity for the ST D2 receptor with no change in D2 Bmax. The treatment group also experienced no change in D2 receptor binding affinity or number of binding sites in the NA. These results show that in utero exposure to cocaine results in altered postnatal dopaminergic function.

摘要

从妊娠第12天(GD12)至21天,对怀孕的雌性斯普拉格-道利大鼠每天注射一次40mg/kg盐酸可卡因或0.9%生理盐水。在出生后第30天(PND30),处死雄性后代,并解剖纹状体(ST)和伏隔核(NA)的新鲜组织,以评估多巴胺(DA)受体亲和力、DA摄取和DA释放。10(-6)M可卡因抑制ST组织中[3H]-DA的摄取,而10(-4)M和10(-5)M可卡因抑制产后暴露于可卡因的后代与生理盐水处理的对照组相比,NA组织中[3H]-DA的摄取(p<0.05)。与生理盐水对照组相比,子宫内暴露于可卡因的产后后代的ST(p<0.001)和NA(p<0.01)中,由10(-6)M苯丙胺刺激的DA释放均显著降低。子宫内可卡因暴露不影响后代ST或NA多巴胺1(D1)解离常数(Kd)或受体密度(Bmax)。然而,治疗组对ST D2受体的结合亲和力显著增加,而D2 Bmax无变化。治疗组在NA中的D2受体结合亲和力或结合位点数量也没有变化。这些结果表明,子宫内暴露于可卡因会导致产后多巴胺能功能改变。

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