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A study of the catecholaminergic inputs to the dorsal premammillary nucleus.

机译:儿茶酚胺能输入到背乳前核的研究。

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摘要

The dorsal premammillary nucleus (PMd) is one of the most responsive hypothalamic sites during exposure to a predator or its odor, and to a context previously associated with a predatory threat; and lesions or pharmacological inactivation centered therein severely reduced the anti-predatory defensive responses. Previous studies have shown that beta adrenergic transmission in the PMd seems critical to the expression of fear responses to predatory threats. In the present study, we have investigated the putative sources of catecholaminergic inputs to the PMd. To this end, we have first described the general pattern of catecholaminergic innervation of the PMd by examining the distribution and morphology of the tyrosine hydroxylase (TH) immunoreactive fibers in the nucleus; and next, combining Fluoro Gold (FG) tracing experiments and TH immunostaining, we determined the putative sources of catecholaminergic inputs to the nucleus. Our results revealed that the PMd presents a moderately dense plexus of catecholaminergic fibers that seems to encompass the rostral pole and ventral border of the nucleus. Combining the results of the FG tract-tracing and TH immunostaining, we observed that the locus coeruleus was the sole brain site that contained double FG and TH immunostained cells. In summary, the evidence suggests that the locus coeruleus is seemingly a part of the circuit responding to predatory threats, and, as shown by the present results, is the sole source of catecholaminergic inputs to the PMd, providing noradrenergic inputs to the nucleus, which, by acting via beta adrenoceptor, seems to be critical for the expression of anti-predatory responses.
机译:乳腺背侧前核(PMd)是暴露于食肉动物或其气味以及先前与掠食性威胁相关的环境中最敏感的下丘脑部位之一;并且以其为中心的病灶或药理失活严重降低了抗掠食性防御反应。先前的研究表明,PMd中的β肾上腺素传递似乎对表达对掠夺性威胁的恐惧反应至关重要。在本研究中,我们调查了儿茶酚胺能输入到PMd的推定来源。为此,我们首先通过检查核中酪氨酸羟化酶(TH)免疫反应性纤维的分布和形态来描述PMd的儿茶酚胺能神经支配的一般模式。然后,结合荧光金(FG)追踪实验和TH免疫染色,我们确定了儿茶酚胺能输入到细胞核的推定来源。我们的研究结果表明,PMd呈中等密度的儿茶酚胺能神经丛,似乎涵盖了核的鼻端和腹侧边界。结合FG跟踪和TH免疫染色的结果,我们观察到蓝斑是唯一包含双重FG和TH免疫染色细胞的大脑部位。总而言之,证据表明蓝斑基因座似乎是对掠食性威胁作出反应的回路的一部分,并且如本研究结果所示,它是PMd的儿茶酚胺能输入的唯一来源,向核提供了去甲肾上腺素能输入。通过β肾上腺素受体的作用似乎对表达抗掠食性反应至关重要。

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