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Activity of Neurochemically Heterogeneous Dopaminergic Neurons in the Substantia Nigra during Spontaneous and Driven Changes in Brain State

机译:在大脑状态的自发性和驱动性变化期间黑质神经化学异质性多巴胺能神经元的活动

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摘要

Dopaminergic neurons of the substantia nigra (SN) and ventral tegmental area (VTA) are collectively implicated in motor- and reward-related behaviors. However, dopaminergic SN and VTA neurons differ on several functional levels, and dopaminergic SN neurons themselves vary in their intrinsic electrical properties, neurochemical characteristics and connections. This heterogeneity is not only important for normal function; calbindin (CB) expression by some dopaminergic SN neurons has been linked with their increased survival in Parkinson's disease. To test whether the activity of CB-negative and CB-positive dopaminergic SN neurons differs during distinct spontaneous and driven brain states, we recorded single units in anesthetized rats before, during and after aversive somatosensory stimuli. Recorded neurons were juxtacellularly labeled, confirmed to be dopaminergic, and tested for CB immunoreactivity. During cortical slow-wave activity, the firing of most dopaminergic neurons was slow and regular/irregular and unrelated to cortical slow oscillations. During spontaneous cortical activation, dopaminergic SN neurons fired in a more regular manner, with fewer bursts, but did not change their firing rate. Regardless of brain state, CB-negative dopaminergic neurons fired significantly faster than CB-positive dopaminergic neurons. This difference in firing rate was not mirrored by different firing patterns. Most CB-negative and CB-positive dopaminergic neurons did not respond to the aversive stimuli; of those that did respond, most were inhibited. We conclude that CB-negative and CB-positive dopaminergic neurons exhibit different activities in vivo. Furthermore, the firing of dopaminergic SN neurons is brain state-dependent, and, unlike dopaminergic VTA neurons, they are not commonly recruited or inhibited by aversive stimuli.
机译:黑质(SN)和腹侧被盖区(VTA)的多巴胺能神经元共同参与与运动和奖赏相关的行为。但是,多巴胺能SN和VTA神经元在几个功能水平上有所不同,而多巴胺能SN神经元本身的内在电特性,神经化学特征和连接方式也有所不同。这种异质性不仅对于正常功能很重要;一些多巴胺能SN神经元的calbindin(CB)表达与其在帕金森氏病中的存活率增加有关。为了测试CB阴性和CB阳性多巴胺能SN神经元的活动在不同的自发性和驱动性大脑状态下是否有所不同,我们在厌恶的体感刺激之前,期间和之后在麻醉的大鼠中记录了单个单位。对记录的神经元进行近细胞标记,确认为多巴胺能,并测试其CB免疫反应性。在皮层慢波活动期间,大多数多巴胺能神经元的放电缓慢且规则/不规则,与皮层慢振荡无关。在自发性皮质激活过程中,多巴胺能SN神经元以更规则的方式发射,但爆发次数较少,但未改变其发射速率。无论大脑状态如何,CB阴性的多巴胺能神经元的放电速度都比CB阳性的多巴胺能神经元快得多。点火速率的这种差异并未通过不同的点火方式反映出来。大多数CB阴性和CB阳性的多巴胺能神经元对厌恶性刺激均无反应。在那些确实有反应的人中,大多数被抑制了。我们得出结论,CB阴性和CB阳性多巴胺能神经元在体内表现出不同的活性。此外,多巴胺能SN神经元的发射是依赖于大脑的状态,并且与多巴胺能VTA神经元不同,它们通常不被厌恶性刺激所招募或抑制。

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