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灵长类动物子宫内海马体神经元活动的早期发育。

Early development of neuronal activity in the primate hippocampus in utero.

作者信息

Khazipov R, Esclapez M, Caillard O, Bernard C, Khalilov I, Tyzio R, Hirsch J, Dzhala V, Berger B, Ben-Ari Y

机构信息

Institut de Neurobiologie de la Méditerranée/Institut National de la Santé et de la Recherche Médicale (INSERM) U29, Luminy, 13273 Marseille, France.

出版信息

J Neurosci. 2001 Dec 15;21(24):9770-81. doi: 10.1523/JNEUROSCI.21-24-09770.2001.

Abstract

Morphological studies suggest that the primate hippocampus develops extensively before birth, but little is known about its functional development. Patch-clamp recordings of hippocampal neurons and reconstruction of biocytin-filled pyramidal cells were performed in slices of macaque cynomolgus fetuses delivered by cesarean section. We found that during the second half of gestation, axons and dendrites of pyramidal cells grow intensively by hundreds of micrometers per day to attain a high level of maturity near term. Synaptic currents appear around midgestation and are correlated with the level of morphological differentiation of pyramidal cells: the first synapses are GABAergic, and their emergence correlates with the growth of apical dendrite into stratum radiatum. A later occurrence of glutamatergic synaptic currents correlates with a further differentiation of the axodendritic tree and the appearance of spines. Relying on the number of dendritic spines, we estimated that hundreds of new glutamatergic synapses are established every day on a pyramidal neuron during the last third of gestation. Most of the synaptic activity is synchronized in spontaneous slow ( approximately 0.1 Hz) network oscillations reminiscent of the giant depolarizing potentials in neonatal rodents. Epileptiform discharges can be evoked by the GABA(A) receptor antagonist bicuculline by the last third of gestation, and postsynaptic GABA(B) receptors contribute to the termination of epileptiform discharges. Comparing the results obtained in primates and rodents, we conclude that the template of early hippocampal network development is conserved across the mammalian evolution but that it is shifted toward fetal life in primate.

摘要

形态学研究表明,灵长类动物的海马体在出生前就已广泛发育,但其功能发育却鲜为人知。我们对通过剖腹产分娩的食蟹猕猴胎儿的海马体切片进行了海马神经元的膜片钳记录以及生物素填充的锥体细胞的重建。我们发现,在妊娠后半期,锥体细胞的轴突和树突每天以数百微米的速度快速生长,在足月时达到高度成熟。突触电流在妊娠中期左右出现,并与锥体细胞的形态分化程度相关:最早出现的突触是γ-氨基丁酸(GABA)能突触,它们的出现与顶树突向辐射层的生长相关。谷氨酸能突触电流的较晚出现与轴突树的进一步分化和棘突的出现相关。根据树突棘的数量,我们估计在妊娠最后三分之一期间,每个锥体细胞每天会形成数百个新的谷氨酸能突触。大多数突触活动在自发的缓慢(约0.1赫兹)网络振荡中同步,这类似于新生啮齿动物中的巨大去极化电位。在妊娠最后三分之一期间,γ-氨基丁酸A(GABA(A))受体拮抗剂荷包牡丹碱可诱发癫痫样放电,且突触后GABA(B)受体有助于癫痫样放电的终止。比较在灵长类动物和啮齿动物中获得的结果,我们得出结论,早期海马体网络发育的模板在整个哺乳动物进化过程中是保守的,但在灵长类动物中它向胎儿期转移。

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