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合成拉帕醌衍生物通过阻断电压门控钙通道来松弛豚鼠回肠。

Synthetic lapachol derivatives relax guinea-pig ileum by blockade of the voltage-gated calcium channels.

机构信息

Laboratório de Tecnologia Farmacêutica Prof. Delby Fernandes de Medeiros, Universidade Federal da Paraíba, P.O. Box 5009, 58051-970, João Pessoa, Paraíba, Brazil.

出版信息

Z Naturforsch C J Biosci. 2010 Sep-Oct;65(9-10):627-36. doi: 10.1515/znc-2010-9-1016.

Abstract

The present study was designed to further evaluate a possible spasmolytic activity of synthetic lapachol derivatives, norlapachol, alpha-norlapachone, beta-norlapachone and hydro-hydroxy-norlapachol (HH-norlapachol), on guinea-pig ileum. In guinea-pig ileum, except for norlapachol, all naphthoquinones inhibited the phasic contractions induced by carbachol or histamine. Even when the ileum was pre-contracted with KCl, carbachol or histamine, all naphthoquinones induced relaxation, suggesting that these naphthoquinones could be acting on the voltage-gated calcium channels (Ca(V)). As the tonic component this contraction is maintained mainly by the opening of the Ca(V), we hypothesized that these naphthoquinones might be acting on these channels. This hypothesis was confirmed by the observation that norlapachol (pD'2 = 4.99), alpha-norlapachone (pD'2 = 4.49), beta-norlapachone (pD'2 = 6.33), and HH-norlapachol (pD'2 = 4.53) antagonized the contractions induced by CaCl2 in depolarizing medium nominally without Ca2+. As beta-norlapachone was the most potent we decided to continue the study of its action mechanism. The fact that this naphthoquinone has inhibited the tonic contractions induced by S-(-)-Bay K8644 [EC50 = (1.6 +/- 0.30) x 10(-5) M] suggests that the Ca2+ channel involved belongs to the type L (Ca(V)1.2). In addition, in the functional level, the spasmolytic effect of beta-norlapachone does not involve participation of free radicals, since its curve of relaxation was unchanged in the presence of glutathione, an antioxidant agent.

摘要

本研究旨在进一步评估合成拉帕醌衍生物,即去甲拉帕醌、α-去甲拉帕酮、β-去甲拉帕酮和水合-羟基去甲拉帕醇(HH-去甲拉帕醇)对豚鼠回肠的可能的平滑肌松弛活性。在豚鼠回肠中,除了去甲拉帕醇之外,所有萘醌均抑制了乙酰胆碱或组胺诱导的相位收缩。即使在回肠预先用 KCl、乙酰胆碱或组胺收缩的情况下,所有萘醌均诱导松弛,表明这些萘醌可能作用于电压门控钙通道(Ca(V))。由于这种收缩的紧张成分主要通过 Ca(V)的开放维持,我们假设这些萘醌可能作用于这些通道。这一假设通过观察到去甲拉帕醇(pD'2 = 4.99)、α-去甲拉帕酮(pD'2 = 4.49)、β-去甲拉帕酮(pD'2 = 6.33)和 HH-去甲拉帕醇(pD'2 = 4.53)在去极化介质中竞争性拮抗 CaCl2 诱导的收缩得到证实,该介质名义上不含 Ca2+。由于β-去甲拉帕酮最为有效,我们决定继续研究其作用机制。该萘醌抑制 S-(-)-Bay K8644 诱导的紧张性收缩(EC50 =(1.6 +/- 0.30)x 10(-5) M)的事实表明,所涉及的钙通道属于 L 型(Ca(V)1.2)。此外,在功能水平上,β-去甲拉帕酮的松弛作用不涉及自由基的参与,因为其松弛曲线在抗氧化剂谷胱甘肽存在时没有变化。

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