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大麻提取物和纯植物大麻素对海马神经元和神经胶质细胞的不同作用。

Differential effects of cannabis extracts and pure plant cannabinoids on hippocampal neurones and glia.

作者信息

Ryan Duncan, Drysdale Alison J, Pertwee Roger G, Platt Bettina

机构信息

School of Medical Sciences, College of Life Sciences and Medicine, University of Aberdeen, Institute of Medical Sciences, Foresterhill, Aberdeen AB25 2ZD, Scotland, UK.

出版信息

Neurosci Lett. 2006 Nov 20;408(3):236-41. doi: 10.1016/j.neulet.2006.09.008. Epub 2006 Sep 25.

Abstract

We have shown previously that the plant cannabinoid cannabidiol (CBD) elevates intracellular calcium levels in both cultured hippocampal neurones and glia. Here, we investigated whether the main psychotropic constituent of cannabis, Delta(9)-tetrahydrocannabinol (THC) alone or in combination with other cannabis constituents can cause similar responses, and whether THC affects the responses induced by CBD. Our experiments were performed with 1 microM pure THC (pTHC), with 1 microM pure CBD (pCBD), with a high-THC, low CBD cannabis extract (eTHC), with a high-CBD, low THC cannabis extract (eCBD), with a mixture of eTHC and eCBD (THC:CBD=1:1) or with corresponding 'mock extracts' that contained only pTHC and pCBD mixed in the same proportion as in eTHC, eCBD or the 1:1 mixture of eTHC and eCBD. We detected significant differences in neurones both between the effects of pTHC and eTHC and between the effects of pCBD and eCBD. There were also differences between the Ca(2+) responses evoked in both neurones and glia by eTHC and mock eTHC, but not between eCBD and mock eCBD. A particularly striking observation was the much increased response size and maximal responder rates induced by the mixture of eTHC and eCBD than by the corresponding 1:1 mixture of pTHC and pCBD. Our data suggest that THC shares the ability of CBD to elevate Ca(2+) levels in neurones and glia, that THC and CBD interact synergistically and that the cannabis extracts have other constituents yet to be identified that can significantly modulate the ability of THC and CBD to raise Ca(2+) levels.

摘要

我们之前已经表明,植物大麻素大麻二酚(CBD)可提高培养的海马神经元和神经胶质细胞内的钙水平。在此,我们研究了大麻的主要精神活性成分Δ⁹-四氢大麻酚(THC)单独或与其他大麻成分联合使用是否会引起类似反应,以及THC是否会影响CBD诱导的反应。我们使用1微摩尔纯THC(pTHC)、1微摩尔纯CBD(pCBD)、高THC低CBD大麻提取物(eTHC)、高CBD低THC大麻提取物(eCBD)、eTHC和eCBD的混合物(THC:CBD = 1:1)或相应的“模拟提取物”进行实验,这些模拟提取物仅含有以与eTHC、eCBD或eTHC与eCBD的1:1混合物相同比例混合的pTHC和pCBD。我们检测到pTHC和eTHC的作用之间以及pCBD和eCBD的作用之间在神经元中存在显著差异。eTHC和模拟eTHC在神经元和神经胶质细胞中诱发的Ca²⁺反应之间也存在差异,但eCBD和模拟eCBD之间没有差异。一个特别引人注目的观察结果是,eTHC和eCBD的混合物诱导的反应大小和最大反应率比相应的pTHC和pCBD的1:1混合物诱导的要大得多。我们的数据表明,THC与CBD一样具有提高神经元和神经胶质细胞中Ca²⁺水平的能力,THC和CBD具有协同相互作用,并且大麻提取物还有其他尚未确定的成分,这些成分可以显著调节THC和CBD提高Ca²⁺水平的能力。

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