Department of Biomedical Sciences, University of Guelph, Guelph, Ontario, Canada, N1G 2W1.
Dev Neurobiol. 2019 Feb;79(2):110-130. doi: 10.1002/dneu.22646. Epub 2018 Dec 14.
The hippocampal formation (HF) plays an important role to facilitate higher order cognitive functions. Cholinergic activation of heteromeric nicotinic acetylcholine receptors (nAChRs) within the HF is critical for the normal development of principal neurons within this brain region. However, previous research investigating the expression and function of heteromeric nAChRs in principal neurons of the HF is limited to males or does not differentiate between the sexes. We used whole-cell electrophysiology to show that principal neurons in the CA1 region of the female mouse HF are excited by heteromeric nAChRs throughout postnatal development, with the greatest response occurring during the first two weeks of postnatal life. Excitability responses to heteromeric nAChR stimulation were also found in principal neurons in the CA3, dentate gyrus, subiculum, and entorhinal cortex layer VI (ECVI) of young postnatal female HF. A direct comparison between male and female mice found that principal neurons in ECVI display greater heteromeric nicotinic passive and active excitability responses in females. This sex difference is likely influenced by the generally more excitable nature of ECVI neurons from female mice, which display a higher resting membrane potential, greater input resistance, and smaller afterhyperpolarization potential of medium duration (mAHP). These findings demonstrate that heteromeric nicotinic excitation of ECVI neurons differs between male and female mice during a period of major circuitry development within the HF, which may have mechanistic implications for known sex differences in the development and function of this cognitive brain region.
海马结构(HF)在促进更高阶认知功能方面发挥着重要作用。HF 内杂合型烟碱型乙酰胆碱受体(nAChRs)的胆碱能激活对于该脑区主要神经元的正常发育至关重要。然而,先前研究杂合型 nAChRs 在 HF 主要神经元中的表达和功能的研究仅限于雄性或不区分性别。我们使用全细胞膜片钳电生理学方法表明,雌性小鼠 HF 的 CA1 区的主要神经元在整个出生后发育过程中被杂合型 nAChRs 兴奋,最大反应发生在出生后前两周。在年轻雌性 HF 的 CA3、齿状回、下托和内嗅皮质层 VI(ECVI)中的主要神经元中也发现了对杂合型 nAChR 刺激的兴奋性反应。对雄性和雌性小鼠的直接比较发现,ECVI 中的主要神经元在雌性中表现出更大的杂合型烟碱被动和主动兴奋性反应。这种性别差异可能受到雌性 ECVI 神经元普遍更兴奋的性质的影响,这些神经元具有更高的静息膜电位、更大的输入电阻和更小的中时长时后超极化电位(mAHP)。这些发现表明,在 HF 内主要电路发育期间,ECVI 神经元的杂合型烟碱兴奋在雄性和雌性小鼠之间存在差异,这可能对该认知脑区的发育和功能中的已知性别差异具有机制意义。