Chronic but not acute nicotine treatment ameliorates acute inflammation‐induced working memory impairment by increasing CRTC1 and HCN2 in adult male mice

Author:

Wang Xiaona12,Wang Qian3,Song Min4,Wang Yihui3,Shen Xianzhi4,Sun Yanyun4,Guo Chun5ORCID,Geng Panpan3,Ma Chaolin12,Jin Xinchun34ORCID

Affiliation:

1. School of Life Science Nanchang University Nanchang China

2. Institute of Biomedical Innovation, Jiangxi Medical College Nanchang University Nanchang China

3. Department of Histology and Embryology, School of Basic Medical Sciences, Advanced Innovation Center for Human Brain Protection, Beijing Key Laboratory of Cancer Invasion and Metastasis Research Capital Medical University Beijing China

4. Institute of Neuroscience The Second The Second Affiliated Hospital of Soochow University Suzhou China

5. School of Biosciences University of Sheffield Sheffield UK

Abstract

AbstractBackgroundSystemic inflammation in which lipopolysaccharide (LPS) is released into circulation can cause cognitive dysfunction and we have previously shown that LPS impaired working memory (WM) which refers to the ability to guide incoming behavior by retrieving recently acquired information. However, the mechanism is not very clear, and currently, there is no approved strategy to improve inflammation‐induced WM deficit. Notably, epidemiological studies have demonstrated a lower occurrence rate of inflammatory‐related diseases in smoking patients, suggesting that inflammation‐induced WM impairment may be improved by nicotine treatment. Here, our object is to investigate the effect and potential mechanisms of acute and chronic nicotine treatment on LPS‐produced WM deficiency.MethodsDelayed alternation T‐maze task (DAT) was applied for evaluating WM which includes both the short‐term information storage and the ability to correct errors in adult male mice. Immunofluorescence staining and immunoblotting were used for assessing the levels and distribution of CREB‐regulated transcription coactivator 1 (CRTC1) and hyperpolarization‐activated cation channels 2 (HCN2) in the medial prefrontal cortex (mPFC) and hippocampus. Quantitative PCR and ELISA were employed for analyzing the mRNA and protein levels of TNF‐α and IL‐1β.ResultsOur results revealed that administration of LPS (i.p.) at a dose of 0.5 mg/kg significantly produced WM impairment in the DAT task accompanied by an increase in IL‐1β and TNF‐α expression in the mPFC. Moreover, intra‐mPFC infusion of IL‐1Ra, an IL‐1 antagonist, markedly alleviated LPS‐induced WM deficiency. More important, chronic (2 weeks) but not acute nicotine (0.2 mg/kg, subcutaneous) treatment significantly alleviated LPS‐induced WM deficiency by upregulating CRTC1 and HCN2. Of note, intra‐mPFC infusion of HCN blocker ZD7288 produced significant WM deficiency.ConclusionsIn summary, in this study, we show that chronic nicotine treatment ameliorates acute inflammation‐induced working memory deficiency by increasing CRTC1 and HCN2 in adult male mice.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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