Activation of mediodorsal thalamic dopamine receptors inhibited nicotine-induced anxiety in rats: A possible role of corticolimbic NMDA neurotransmission and BDNF expression

IF 3.3 3区 心理学 Q1 BEHAVIORAL SCIENCES Pharmacology Biochemistry and Behavior Pub Date : 2023-09-29 DOI:10.1016/j.pbb.2023.173650
Seyedeh Leila Mousavi , Ameneh Rezayof , Sakineh Alijanpour , Ladan Delphi , Oveis Hosseinzadeh Sahafi
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Abstract

The present study aimed to evaluate the functional interaction between the dopaminergic and glutamatergic systems of the mediodorsal thalamus (MD), the ventral hippocampus (VH), and the prefrontal cortex (PFC) in nicotine-induced anxiogenic-like behaviors. Brain-derived neurotrophic factor (BDNF) level changes were measured in the targeted brain areas following the drug treatments. The percentage of time spent in the open arm (% OAT) and open arm entry (% OAE) were calculated in the elevated plus maze (EPM) to measure anxiety-related behaviors in adult male Wistar rats. Systemic administration of nicotine at a dose of 0.5 mg/kg induced an anxiogenic-like response associated with decreased BDNF levels in the hippocampus and the PFC. Intra-MD microinjection of apomorphine (0.1–0.3 μg/rat) induced an anxiogenic-like response, while apomorphine inhibited nicotine-induced anxiogenic-like behaviors associated with increased hippocampal and PFC BDNF expression levels. Interestingly, the blockade of the VH or the PFC NMDA receptors via the microinjection of D-AP5 (0.3–0.5 μg/rat) into the targeted sites reversed the inhibitory effect of apomorphine (0.5 μg/rat, intra-MD) on the nicotine response and led to the decrease of BDNF levels in the hippocampus and the PFC. Also, the microinjection of a higher dose of D-AP5 (0.5 μg/rat, intra-PFC) alone produced an anxiogenic effect. These findings suggest that the functional interaction between the MD dopaminergic D1/D2-like and the VH/PFC glutamatergic NMDA receptors may be partially involved in the anxiogenic-like effects of nicotine, likely via the alteration of BDNF levels in the hippocampus and the PFC.

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丘脑中背侧多巴胺受体的激活抑制了大鼠尼古丁诱导的焦虑:皮质边缘NMDA神经传递和BDNF表达的可能作用。
本研究旨在评估在尼古丁诱导的焦虑样行为中,背中丘脑(MD)、腹侧海马(VH)和前额叶皮层(PFC)的多巴胺能和谷氨酸能系统之间的功能相互作用。药物治疗后,在靶向脑区域测量脑源性神经营养因子(BDNF)水平的变化。在高架+迷宫(EPM)中计算在开放臂(%OAT)和开放臂进入(%OAE)中花费的时间百分比,以测量成年雄性Wistar大鼠的焦虑相关行为。0.5 mg/kg剂量的尼古丁全身给药诱导了与海马和PFC中BDNF水平降低相关的焦虑样反应。MD内微量注射阿扑吗啡(0.1-0.3μg/大鼠)诱导了焦虑样反应,而阿扑吗啡抑制与海马和PFC BDNF表达水平增加相关的尼古丁诱导的焦虑样行为。有趣的是,通过向靶位点微量注射D-AP5(0.3-0.5μg/只大鼠)阻断VH或PFC NMDA受体,逆转了阿扑吗啡(0.5μg/只,MD内)对尼古丁反应的抑制作用,并导致海马和PFC中BDNF水平的降低,单独微量注射更高剂量的D-AP5(0.5μg/只大鼠,PFC内)产生了抗焦虑作用。这些发现表明,MD多巴胺能D1/D2样和VH/PFC谷氨酸能NMDA受体之间的功能相互作用可能部分参与尼古丁的焦虑样作用,可能是通过海马和PFC中BDNF水平的改变。
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来源期刊
CiteScore
6.40
自引率
2.80%
发文量
122
审稿时长
38 days
期刊介绍: Pharmacology Biochemistry & Behavior publishes original reports in the areas of pharmacology and biochemistry in which the primary emphasis and theoretical context are behavioral. Contributions may involve clinical, preclinical, or basic research. Purely biochemical or toxicology studies will not be published. Papers describing the behavioral effects of novel drugs in models of psychiatric, neurological and cognitive disorders, and central pain must include a positive control unless the paper is on a disease where such a drug is not available yet. Papers focusing on physiological processes (e.g., peripheral pain mechanisms, body temperature regulation, seizure activity) are not accepted as we would like to retain the focus of Pharmacology Biochemistry & Behavior on behavior and its interaction with the biochemistry and neurochemistry of the central nervous system. Papers describing the effects of plant materials are generally not considered, unless the active ingredients are studied, the extraction method is well described, the doses tested are known, and clear and definite experimental evidence on the mechanism of action of the active ingredients is provided.
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