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首页> 外文期刊>Brain research >Genetic variance contributes to dopamine receptor antagonist-induced inhibition of sucrose intake in inbred and outbred mouse strains.
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Genetic variance contributes to dopamine receptor antagonist-induced inhibition of sucrose intake in inbred and outbred mouse strains.

机译:遗传变异有助于多巴胺受体拮抗剂诱导近交和近交小鼠品系中蔗糖摄入的抑制。

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摘要

Preference and intake of sucrose varies across inbred and outbred strains of mice. Pharmacological analyses revealed that the greatest sensitivity to naltrexone-induced inhibition of sucrose (10%) intake was observed in C57BL10/J and C57BL/6J strains, whereas 129P3/J, SWR/J and SJL/J strains displayed far less sensitivity to naltrexone-induced inhibition of sucrose intake. Given that dopamine D1 (SCH23390) and D2 (raclopride) receptor antagonism potently reduce sucrose intake in outbred rat and mouse strains, the present study examined the possibility of genetic variance in the dose-dependent (50-1600 nmol/kg) and time-dependent (5-120 min) effects of these antagonists upon sucrose (10%) intake in the eight inbred (BALB/cJ, C3H/HeJ, C57BL/6J, C57BL/10J, DBA/2J, SJL/J, SWR/J and 129P3/J) and one outbred (CD-1) mouse strains previously tested with naltrexone. SCH23390 significantly reduced sucrose intake across all five doses in 129P3/J and SJL/J mice, across four doses in C57BL/6J and BALB/cJ mice, across three doses in DBA/2J, SWR/J, C3H/HeJ and C57BL/10J mice, but only at the two highest doses in CD-1 mice. SCH23390 was 2-3-fold more potent in inhibiting sucrose intake in 129P3/J and SJL/J mice relative to CD-1 mice. In contrast, only the highest equimolar 1600 nmol/kg dose of raclopride significantly reduced sucrose intake in the BALB/cJ, C3H/HeJ, C57BL/6J, C57BL/10J, DBA/2J, SJL/J and 129P3/J, but not the SWR/J and CD-1 strains. The present and previous data demonstrate specific and differential patterns of genetic variability in inhibition of sucrose intake by dopamine and opioid antagonists, suggesting that distinct neurochemical mechanisms control sucrose intake across different mouse strains.
机译:蔗糖的偏好和摄入量在小鼠的近交和近交品系之间都不同。药理分析显示,在C57BL10 / J和C57BL / 6J菌株中观察到对纳曲酮诱导的蔗糖摄入抑制的最大敏感性(10%),而129P3 / J,SWR / J和SJL / J菌株对纳曲酮的敏感性低得多诱导的蔗糖摄入抑制。鉴于多巴胺D1(SCH23390)和D2(雷氯必利)受体拮抗作用可有效减少近交大鼠和小鼠品系中蔗糖的摄入,因此本研究研究了剂量依赖性(50-1600 nmol / kg)和时间依赖性的遗传变异的可能性。这些拮抗剂对八种自交系(BALB / cJ,C3H / HeJ,C57BL / 6J,C57BL / 10J,DBA / 2J,SJL / J,SWR / J)中蔗糖(10%)摄入量的依赖性(5-120分钟)作用和129P3 / J)和一种以前用纳曲酮测试的远交(CD-1)小鼠品系。 SCH23390显着降低了129P3 / J和SJL / J小鼠的所有五剂,C57BL / 6J和BALB / cJ小鼠的四剂,DBA / 2J,SWR / J,C3H / HeJ和C57BL /的三剂的蔗糖摄入量10J小鼠,但仅在CD-1小鼠中使用两次最高剂量。相对于CD-1小鼠,SCH23390在抑制129P3 / J和SJL / J小鼠的蔗糖摄入方面的功效是其2到3倍。相反,在LBLB / cJ,C3H / HeJ,C57BL / 6J,C57BL / 10J,DBA / 2J,SJL / J和129P3 / J中,只有最高等摩尔1600 nmol / kg剂量的雷洛必利会显着降低蔗糖摄入量。 SWR / J和CD-1菌株。目前和以前的数据表明,多巴胺和阿片样物质拮抗剂抑制蔗糖摄入的遗传变异具有特异性和差异性模式,表明不同的神经化学机制可控制不同小鼠品系的蔗糖摄入。

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