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皮质-丘脑连接在出生后早期的尼古丁暴露中易受影响,这是通过α4/β2/α5 型烟碱型乙酰胆碱受体实现的。

Cortico-thalamic connectivity is vulnerable to nicotine exposure during early postnatal development through α4/β2/α5 nicotinic acetylcholine receptors.

机构信息

Department of Psychiatry, Yale University School of Medicine, New Haven, CT 06508, USA.

出版信息

Neuropsychopharmacology. 2010 Nov;35(12):2324-38. doi: 10.1038/npp.2010.130. Epub 2010 Aug 25.

Abstract

Tobacco smoke exposure during development can result in lasting alterations in sensory processing and attention. This suggests that some constituent of smoke, such as the primary addictive component, nicotine, alters neurodevelopment. Although many effects of developmental nicotine exposure have been identified in humans and animal models, very few mechanistic studies have identified the molecular and anatomical basis for a defined behavioral consequence of developmental exposure. We show in this study that a mouse model of developmental nicotine exposure results in hypersensitive passive avoidance in adulthood. We have used transgenic mice in which β2 subunit containing nicotinic acetylcholine receptors (β2* nAChRs) are expressed exclusively on corticothalamic neurons (β2 tr(CT) mice) to identify the receptor subtypes involved and also to define the circuit level site of action responsible for this persistent, nicotine-induced behavioral phenotype. Further characterization of the native nAChRs expressed in this circuit indicates that both (α4)(2)(β2)(3) and (α4)(2)(β2)(2)α5 nAChR subtypes are present in corticothalamic projections. Consistent with a role for (α4)(2)(β2)(2)α5 nAChRs in mediating the effect of developmental nicotine exposure on adult passive avoidance behavior, constitutive deletion of the α5 nAChR subunit also alters this behavior. A critical period for this developmental consequence of nicotine exposure was defined by limiting exposure to the early post-natal period. Taken together, these studies identify a novel consequence of developmental nicotine exposure in the mouse, define the nAChR subtypes and neural circuit involved in this behavioral change and delimit the neurodevelopmental period critical for vulnerability to a behavioral alteration that persists into adulthood.

摘要

发育过程中接触烟草烟雾会导致感觉处理和注意力的持久改变。这表明烟雾中的某些成分,如主要成瘾成分尼古丁,改变了神经发育。尽管在人类和动物模型中已经确定了发育性尼古丁暴露的许多影响,但很少有机制研究确定了发育性暴露导致特定行为后果的分子和解剖学基础。我们在这项研究中表明,发育性尼古丁暴露的小鼠模型会导致成年期被动回避反应过度。我们使用了一种转基因小鼠,其中包含β2 亚基的烟碱型乙酰胆碱受体(β2* nAChRs)仅在皮质丘脑神经元上表达(β2 tr(CT) 小鼠),以确定涉及的受体亚型,并确定负责这种持久的、由尼古丁引起的行为表型的回路水平作用部位。对该回路中表达的天然 nAChRs 的进一步特征表明,(α4)(2)(β2)(3)和(α4)(2)(β2)(2)α5 nAChR 亚型都存在于皮质丘脑投射中。与(α4)(2)(β2)(2)α5 nAChRs 在介导发育性尼古丁暴露对成年被动回避行为的影响的作用一致,α5 nAChR 亚基的组成性缺失也改变了这种行为。通过限制早期产后期暴露,确定了这种尼古丁暴露对发育的影响的关键时期。综上所述,这些研究在小鼠中确定了发育性尼古丁暴露的一种新后果,定义了参与这种行为改变的 nAChR 亚型和神经回路,并限定了对持续到成年期的行为改变易感性的神经发育时期。

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Emerging views of corticothalamic function.皮质丘脑功能的新观点。
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