尼古丁
有机阳离子转运蛋白
四乙基铵
化学
尼日利亚霉素
生物碱
细胞外
生物物理学
流出
药理学
细胞培养
布美他尼
缬霉素
离子运输机
生物化学
膜电位
内科学
钾
生物
运输机
立体化学
医学
膜
遗传学
有机化学
基因
作者
Mikihisa Takano,Hidetaka Kamei,Machi Nagahiro,Masashi Kawami,Ryoko Yumoto
出处
期刊:Life Sciences
[Elsevier]
日期:2017-11-01
卷期号:188: 76-82
被引量:9
标识
DOI:10.1016/j.lfs.2017.08.030
摘要
Nicotine is rapidly absorbed from the lung alveoli into systemic circulation during cigarette smoking. However, mechanism underlying nicotine transport in alveolar epithelial cells is not well understood to date. In the present study, we characterized nicotine uptake in lung epithelial cell lines A549 and NCI-H441 and in non-lung epithelial cell lines HepG2 and MCF-7.Characteristics of [3H]nicotine uptake was studied using these cell lines.Nicotine uptake in A549 cells occurred in a time- and temperature-dependent manner and showed saturation kinetics, with a Km value of 0.31mM. Treatment with some organic cations such as diphenhydramine and pyrilamine inhibited nicotine uptake, whereas treatment with organic cations such as carnitine and tetraethylammonium did not affect nicotine uptake. Extracellular pH markedly affected nicotine uptake, with high nicotine uptake being observed at high pH up to 11.0. Modulation of intracellular pH with ammonium chloride also affected nicotine uptake. Treatment with valinomycin, a potassium ionophore, did not significantly affect nicotine uptake, indicating that nicotine uptake is an electroneutral process. For comparison, we assessed the characteristics of nicotine uptake in another lung epithelial cell line NCI-H441 and in non-lung epithelial cell lines HepG2 and MCF-7. Interestingly, these cell lines showed similar characteristics of nicotine uptake with respect to pH dependency and inhibition by various organic cations.The present findings suggest that a similar or the same pH-dependent transport system is involved in nicotine uptake in these cell lines. A novel molecular mechanism of nicotine transport is proposed.
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