Larson B T, Sullivan D M, Samford M D, Kerley M S, Paterson J A, Turner J T
Department of Animal Sciences, University of Missouri, Columbia 65211.
J Anim Sci. 1994 Nov;72(11):2905-10. doi: 10.2527/1994.72112905x.
Effects on rat brain D2 dopamine receptors by endophyte-infected tall fescue seed consumption and antagonist injection were characterized. Forty-eight male Wistar rats (225 g) in three separate trials were exposed to either 22 or 32 degrees C. Diets, to maintain similar concentrations of ergovaline, contained 10% (Trial 1) or 15% (Trials 2 and 3) endophyte-infected (E+; 325 average ppb of ergovaline) or uninfected (E-; 0 ppb of ergovaline) tall fescue seed. Rats were injected i.p. daily with either placebo (PL) or an experimental D2 dopamine antagonist (DA, .0375 mg/kg BW). No effects (P > .10) on diet DM intake by E+ ingestion or DA injection were detected at 22 degrees C. However, ingestion of E+ reduced (P < .01) and injection of DA improved (P < .05) DM intake of rats housed in 32 degrees C (11.1 vs 15.4 g of DM/d for E+ vs E-, respectively). Whole brain D2 dopamine receptor density (Bmax) and mRNA were reduced (P < .05) by E+ and increased (P < .05) by DA in Trial 1. No treatment effects (P > .10) on cerebral cortex alpha 1- and alpha 2-adrenergic or striatal D2 dopamine receptor Bmax were measured in Trials 2 and 3. In summary, dietary E+ reduced whole brain D2 dopamine mRNA and Bmax, whereas injection of DA increased D2 dopamine mRNA. Thus, long-term regulation of monoamine receptors seems to be affected by E+ ingestion or DA injection.
研究了食用内生真菌感染的高羊茅种子和注射拮抗剂对大鼠脑D2多巴胺受体的影响。在三个独立试验中,将48只雄性Wistar大鼠(225克)置于22或32摄氏度环境。为保持麦角缬氨酸浓度相似,日粮中含有10%(试验1)或15%(试验2和3)的内生真菌感染(E+;麦角缬氨酸平均含量325 ppb)或未感染(E-;麦角缬氨酸含量0 ppb)的高羊茅种子。大鼠每天腹腔注射安慰剂(PL)或实验性D2多巴胺拮抗剂(DA,0.0375毫克/千克体重)。在22摄氏度时,未检测到E+摄入或DA注射对日粮干物质摄入量有影响(P>.10)。然而,在32摄氏度环境中饲养的大鼠,摄入E+会降低(P<.01)干物质摄入量,注射DA则会改善(P<.05)干物质摄入量(E+组和E-组分别为11.1克/天和15.4克/天)。在试验1中,E+使全脑D2多巴胺受体密度(Bmax)和mRNA降低(P<.05),DA则使其升高(P<.05)。在试验2和3中,未检测到对大脑皮质α1和α2肾上腺素能受体或纹状体D2多巴胺受体Bmax的处理效应(P>.10)。总之,日粮E+降低了全脑D2多巴胺mRNA和Bmax,而注射DA则增加了D2多巴胺mRNA。因此,单胺受体的长期调节似乎受到E+摄入或DA注射的影响。