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Study on the hypnotic effect of rare protopanaxadiol-type and protopanaxatriol-type ginsenosides

机译:稀少的前人参二醇型和人参三醇型人参皂苷的催眠作用研究

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Ginsenosides, as major active components of ginseng, possess various pharmacological activities, including anti-tumor, anti-diabetic and hypotensive effects. However, the sedative and hypnotic effect of ginsenosides and the involved mechanism remain unclear. In the present study, the hypnotic effect of rare protopanaxadiol-type (PD) ginsenosides, consisting of Rg3, Rk1, Rg5, and protopanaxatriol-type (PT) ginsenosides, consisting of Rh1, Rk3, Rh4, was investigated and compared in rodent models through behavioral pharmacology methods. Both rare PD and PT ginsenosides decreased spontaneous locomotion activity in normal mice and reduced sleep latency, and extended sleep duration in pentobarbital-treated mice. Moreover, PD and PT ginsenosides attenuated the insomnia induced by caffeine in mice. These hypnotic effects of PD and PT ginsenosides were potentiated by 5-hydroxytryptophan (5-HTP), a precursor of serotonin, and inhibited by p -chlorophenylalanine (PCPA), a 5-HT synthesis inhibitor. Flumazenil (FLU, a specific gamma aminobutyric acid (GABA) antagonist) also impaired the hypnotic effect of both PD and PT ginsenosides. The aforementioned results indicated that PD and PT ginsenosides exhibit sedative and hypnotic activity, and PT ginsenosides show higher activity than PD ginsenosides at high doses (96 mg kg ~(?1) ). Furthermore, the bioactivity of these two types of ginsenosides might be mediated via the serotonergic and GABAergic systems.
机译:人参皂苷作为人参的主要活性成分,具有多种药理活性,包括抗肿瘤,抗糖尿病和降压作用。然而,人参皂甙的镇静和催眠作用及其相关机制尚不清楚。在本研究中,在啮齿动物模型中研究并比较了由Rg3,Rk1,Rg5和由Rh1,Rk3,Rh4组成的原托泊那三醇型(PT)人参皂苷组成的稀有前人参二醇型(PD)人参皂苷的催眠作用。通过行为药理学方法。稀有的PD和PT人参皂苷均能降低正常小鼠的自发运动能力,并减少睡眠潜伏期,并在戊巴比妥治疗的小鼠中延长睡眠时间。此外,PD和PT人参皂甙可减轻咖啡因引起的小鼠失眠。 PD和PT人参皂苷的催眠作用被5-羟色氨酸(5-HTP)(5-羟色胺的前体)增强,并被对氯苯丙氨酸(PCPA)(5-HT合成抑制剂)抑制。氟马西尼(FLU,一种特定的γ-氨基丁酸(GABA)拮抗剂)也损害了PD和PT人参皂苷的催眠作用。上述结果表明,PD和PT人参皂苷显示出镇静和催眠活性,并且PT人参皂苷在高剂量(96mg·kg·(-1))下显示出比PD人参皂苷更高的活性。此外,这两种人参皂甙的生物活性可能通过血清素能系统和GABA能系统介导。

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