Rozsa Balazs, Zelles Tibor, Vizi E Sylvester, Lendvai Balazs
Institute of Experimental Medicine, Hungarian Academy of Sciences, H-1083 Budapest, Hungary.
J Neurosci. 2004 Jan 21;24(3):661-70. doi: 10.1523/JNEUROSCI.3906-03.2004.
Although interactions between backpropagating action potentials and synaptic stimulations have been extensively studied in pyramidal neurons, dendritic propagation and the summation of these signals in interneurons are not nearly as well known. In this study, two-photon imaging was used to explore the basic properties of dendritic calcium signaling in CA1 stratum radiatum interneurons. In contrast to hippocampal pyramidal neurons, the backpropagating action potential-evoked calcium transients in dendrites of interneurons underwent a distance-dependent increment. Although, in proximal dendrites, an increment could be attributed to a smaller dendrite diameter, distal dendrites did not show such dependence. Calcium responses in interneurons had a smaller amplitude, slower rise time, and decay than in pyramidal neurons. To explore the factors underlying the difference, we compared the calcium-binding capacity in interneurons and in pyramidal neurons. Our finding that endogenous calcium buffers had a higher level in interneurons may primarily explain the different kinetics and amplitudes of calcium transients. Synaptic stimulation-evoked calcium transients were also larger at distant dendritic locations. The spread of these signals was restricted to 12-13 microm long dendritic compartments. Supporting the reported lack of long-term potentiation in these interneurons, we found only sublinear or linear summations of calcium responses to coincident synaptic inputs and backpropagating spikes.
尽管在锥体神经元中,反向传播动作电位与突触刺激之间的相互作用已得到广泛研究,但中间神经元中这些信号的树突传播和总和却鲜为人知。在本研究中,使用双光子成像来探索CA1辐射层中间神经元中树突钙信号的基本特性。与海马锥体神经元不同,中间神经元树突中由反向传播动作电位诱发的钙瞬变呈现距离依赖性增加。虽然在近端树突中,这种增加可归因于较小的树突直径,但远端树突并未表现出这种依赖性。中间神经元中的钙反应比锥体神经元具有更小的幅度、更慢的上升时间和衰减。为了探究差异背后的因素,我们比较了中间神经元和锥体神经元中的钙结合能力。我们发现中间神经元中内源性钙缓冲剂水平较高,这可能主要解释了钙瞬变的不同动力学和幅度。突触刺激诱发的钙瞬变在远离树突的位置也更大。这些信号的传播仅限于12 - 13微米长的树突节段。支持这些中间神经元中缺乏长时程增强的报道,我们发现对同时发生的突触输入和反向传播尖峰的钙反应仅呈亚线性或线性总和。