[Development of physical dependence on nicotine and endogenous opioid system--participation of α7 nicotinic acetylcholine receptor].

Shiroh Kishioka, Norikazu Kiguchi, Yuka Kobayashi, Fumihiro Saika, Chizuko Yamamoto
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引用次数: 0

Abstract

Nicotine (NIC) regulates various cellular functions acting on the nicotinic acetylcholine receptor (nAChR). And nAChR consists of ligand-gated cation channels with pentameric structure and composed of α and β subunits. In the central nervous system, α 4 β 2 and α 7 nAChRs are the most abundantly expressed as nAChR subtypes. There are several lines of evidence indicating that systemic administration of NIC elicits the release of endogenous opioids, such as, endorphins, enkephalins and dynorphins, in the brain. NIC exerts numerous acute effects, for example, antinociceptive effects and the activating effects of the hypothalamic-pituitary-adrenal (HPA) axis. In these effects, NIC-induced antinociception, but not HPA axis activation, was inhibited by opioid receptor antagonist, naloxone (NLX), and was also suppressed in morphine tolerated mice, indicating the participation of the endogenous opioid system in NIC-induced antinociception, but not HPA axis activation. Moreover, NIC-induced antinociception was antagonized by both α 4 β 2 and α 7 nAChR antagonists, while NIC-induced HPA axis activation was antagonized by α 4 β 2 nAChR antagonist, but not by α 7 nAChR antagonist. These results suggest that the endogenous opioid system may not be located on the downstream of α 4 β 2 nAChR. On the other hand, NIC has substantial physical dependence liability. NLX elicits NIC withdrawal after repeated NIC administration evaluated by corticosterone increase as a withdrawal sign, and NLX-precipitated NIC withdrawal is inhibited by concomitant administration of other opioid receptor antagonist, naltrexone, indicating the participation of endogenous opioid system in the development of physical dependence on NIC. NLX-precipitated NIC withdrawal was also inhibited by concomitant administration of an α 7 nAChR antagonist, but not an α 4 β 2 nAChR antagonist. Taken together, these findings suggest that the endogenous opioid system may be located on the downstream of α 7 nAChR and participates in the development of physical dependence on NIC.

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[尼古丁和内源性阿片系统生理依赖的发展——α7烟碱乙酰胆碱受体的参与]。
尼古丁(NIC)通过尼古丁乙酰胆碱受体(nAChR)调节多种细胞功能。nAChR由配体门控阳离子通道组成,具有五聚体结构,由α和β亚基组成。在中枢神经系统中,α 4 β 2和α 7 nAChR作为nAChR亚型表达量最多。有几条线索的证据表明,全身服用NIC引起内源性阿片类物质的释放,如脑内啡肽、脑啡肽和脑啡肽。NIC具有许多急性作用,例如抗感受性作用和下丘脑-垂体-肾上腺(HPA)轴的激活作用。在这些效应中,阿片受体拮抗剂纳洛酮(NLX)抑制了nic诱导的抗痛觉,但不抑制HPA轴的激活,并且在吗啡耐受小鼠中也被抑制,这表明内源性阿片系统参与了nic诱导的抗痛觉,但不参与HPA轴的激活。此外,nic诱导的抗痛觉被α 4 β 2和α 7 nAChR拮抗剂所拮抗,而nic诱导的HPA轴激活被α 4 β 2 nAChR拮抗剂所拮抗,而不被α 7 nAChR拮抗剂所拮抗。这些结果表明,内源性阿片系统可能不位于α 4 β 2 nAChR的下游。另一方面,NIC具有实质性的身体依赖责任。以皮质酮升高为戒断标志,反复给药后NLX可引起NIC戒断,同时给药其他阿片受体拮抗剂纳曲酮可抑制NLX诱发的NIC戒断,提示内源性阿片系统参与了NIC身体依赖的发展。同时给予α 7 nAChR拮抗剂也能抑制nlx沉淀的NIC戒断,但对α 4 β 2 nAChR拮抗剂不起作用。综上所述,这些发现表明内源性阿片系统可能位于α 7 nAChR的下游,并参与了NIC身体依赖的发展。
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