Electronic Vaporization of Nicotine Salt or Freebase produces differential effects on metabolism, neuronal activity and behavior in male and female C57BL/6J mice

Maria Echeveste Sanchez , ManHua Zhu , Sarah Magee , Shyenne Grady , Hayley Guerry , Tara N. Guhr-Lee , Charles R. Esther Jr , Melissa A Herman
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引用次数: 2

Abstract

The use of Electronic Nicotine Delivery Systems (ENDS) is increasing in prevalence and popularity. ENDS are a rapidly evolving technology as devices and e-liquid formulations adapt to policy restrictions and market demand. To identify the impacts of nicotine formulation and concentration, we exposed female and male C57BL/6J mice to passive electronic vaporization of different nicotine formulations (freebase or salt) and concentrations (1% or 3%) and measured serum nicotine metabolite levels, brain activity by cFos expression, and anxiety-like and motivated behavior using the novelty suppressed feeding test. We found that the 3% freebase nicotine vapor group displayed significantly higher serum nicotine levels than either 1% or 3% nicotine salt formulations, and female mice displayed higher serum nicotine and cotinine levels compared to males. Central amygdala (CeA) activity was significantly elevated in male mice following nicotine vapor exposure, but the increase was not significantly different between nicotine vapor groups. CeA activity in female mice was unaffected. In contrast, increased activity in the ventral tegmental area (VTA) was only observed in female mice exposed to 3% nicotine freebase and specifically in the dopaminergic population. Anxiety-like behavior in female mice was relatively unaffected by nicotine vapor exposure, however male mice displayed increased anxiety-like behavior and reduced motivation to feed after vapor exposure, specifically in the 3% freebase group. These results identify important sex differences in the impact of nicotine formulation and concentration on nicotine metabolism, brain region-specific activity and anxiety-like behavior, which may have significant relevance for different consequences of vaping in men and women.

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电子汽化烟碱盐或Freebase对雄性和雌性C57BL/6J小鼠的代谢、神经元活动和行为产生不同的影响
电子尼古丁输送系统(ENDS)的使用越来越普遍和普及。随着设备和电子烟液配方适应政策限制和市场需求,终端是一项迅速发展的技术。为了确定尼古丁配方和浓度的影响,我们将雌性和雄性C57BL/6J小鼠暴露于不同尼古丁配方(freebase或salt)和浓度(1%或3%)的被动电子蒸发中,并通过cFos表达测量血清尼古丁代谢物水平,大脑活动以及使用新奇抑制喂养试验测量焦虑样和动机行为。我们发现,3% freebase尼古丁蒸汽组的血清尼古丁水平明显高于1%或3%尼古丁盐配方,雌性小鼠的血清尼古丁和可替宁水平高于雄性小鼠。暴露于尼古丁蒸气后,雄性小鼠中央杏仁核(CeA)活性显著升高,但各组间差异不显著。雌性小鼠的CeA活性未受影响。相比之下,腹侧被盖区(VTA)的活动增加仅在暴露于3%尼古丁游离碱的雌性小鼠中观察到,特别是在多巴胺能群体中。雌性小鼠的焦虑样行为相对不受尼古丁蒸气暴露的影响,然而雄性小鼠在尼古丁蒸气暴露后表现出增加的焦虑样行为和减少的进食动机,特别是在3% freebase组。这些结果确定了尼古丁配方和浓度对尼古丁代谢、大脑特定区域活动和焦虑样行为的影响存在重要的性别差异,这可能与男性和女性吸电子烟的不同后果有重要关联。
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来源期刊
Addiction neuroscience
Addiction neuroscience Neuroscience (General)
CiteScore
1.30
自引率
0.00%
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0
审稿时长
118 days
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