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前额叶基因表达预测雄性大鼠隔离饲养后感觉运动门控缺陷。

Forebrain gene expression predicts deficits in sensorimotor gating after isolation rearing in male rats.

机构信息

Department of Psychiatry, UCSD School of Medicine, 9500 Gilman Dr., La Jolla, CA 92093-0804, USA.

出版信息

Behav Brain Res. 2013 Nov 15;257:118-28. doi: 10.1016/j.bbr.2013.09.005. Epub 2013 Sep 25.

Abstract

Compared to socially housed (SH) rats, adult isolation-reared (IR) rats exhibit phenotypes relevant to schizophrenia (SZ), including reduced prepulse inhibition (PPI) of startle. PPI is normally regulated by the medial prefrontal cortex (mPFC) and nucleus accumbens (NAC). We assessed PPI, auditory-evoked local field potentials (LFPs) and expression of seven PPI- and SZ-related genes in the mPFC and NAC, in IR and SH rats. Buffalo (BUF) rats were raised in same-sex groups of 2-3 (SH) or in isolation (IR). PPI was measured early (d53) and later in adulthood (d74); LFPs were measured approximately on d66. Brains were processed for RT-PCR measures of mPFC and NAC expression of Comt, Erbb4, Grid2, Ncam1, Slc1a2, Nrg1 and Reln. Male IR rats exhibited PPI deficits, most pronounced at d53; male and female IR rats had significantly elevated startle magnitude on both test days. Gene expression levels were not significantly altered by IR. PPI levels (d53) were positively correlated with mPFC expression of several genes, and negatively correlated with NAC expression of several genes, in male IR but not SH rats. Late (P90) LFP amplitudes correlated significantly with expression levels of 6/7 mPFC genes in male rats, independent of rearing. After IR that disrupts early adult PPI in male BUF rats, expression levels of PPI- and SZ-associated genes in the mPFC correlate positively with PPI, and levels in the NAC correlate negatively with PPI. These results support the model that specific gene-behavior relationships moderate the impact of early-life experience on SZ-linked behavioral and neurophysiological markers.

摘要

与社交饲养 (SH) 的大鼠相比,成年隔离饲养 (IR) 的大鼠表现出与精神分裂症 (SZ) 相关的表型,包括惊吓反射的前脉冲抑制 (PPI) 降低。PPI 通常由前额叶皮层 (mPFC) 和伏隔核 (NAC) 调节。我们评估了 PPI、听觉诱发的局部场电位 (LFPs) 以及 mPFC 和 NAC 中七种与 PPI 和 SZ 相关的基因在 IR 和 SH 大鼠中的表达。水牛 (BUF) 大鼠在 2-3 只同性别的群体中 (SH) 或单独饲养 (IR)。在早期 (d53) 和成年后期 (d74) 测量 PPI;大约在 d66 测量 LFPs。对大脑进行实时聚合酶链反应 (RT-PCR) 测量,以测量 mPFC 和 NAC 中 Comt、Erbb4、Grid2、Ncam1、Slc1a2、Nrg1 和 Reln 的表达。雄性 IR 大鼠表现出 PPI 缺陷,在 d53 时最为明显;雄性和雌性 IR 大鼠在两天的测试中都有明显较高的惊吓幅度。IR 没有显著改变基因表达水平。在雄性 IR 但不是 SH 大鼠中,PPI 水平 (d53) 与 mPFC 中几个基因的表达呈正相关,与 NAC 中几个基因的表达呈负相关。晚期 (P90) LFPs 幅度与雄性大鼠 mPFC 中 6/7 个基因的表达水平显著相关,与饲养方式无关。在雄性 BUF 大鼠中,IR 破坏了成年早期的 PPI 后,mPFC 中与 PPI 相关的基因和与 NAC 相关的基因的表达水平呈正相关,与 PPI 呈负相关。这些结果支持了这样的模型,即特定的基因-行为关系调节了早期生活经历对 SZ 相关行为和神经生理标志物的影响。

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