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Research Frontiers
of Medicinal Plants
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達瑪烷苷元原人參三醇PPT的藥理作用簡述



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達瑪烷苷元原人參二醇PPD的藥理作用簡述


 

基因三醇(PPT)合成花旗參被發現

達瑪烷苷元PPD(原人參二醇)協同增強抗肝癌藥物環磷酰胺
協同作用是當同時給予兩種或兩種以上的藥物時,作用在靶器官或靶細胞上的效應(包括相同性質的治療效應或不良反應)大於(稱為增強)各藥物效應的總和。表示多種藥物以不同作用機制產生同一效應。協同作用是確定腫瘤或感染化療方案的基礎,可用以增加效應,也可降低方案中某種藥物的劑量,以避免因大劑量用藥引起的毒性反應。處方用藥要充分利用藥物之間在治療方面的協同作用,以加強療效,但應避免因協同作用而產生或增強毒副作用。 最近的一項研究表明,原人參二醇 PPT能夠與環磷酰胺產生協同殺死肝癌細胞的作用,並且其與化療藥...
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Identification of the protopanaxatriol synthase gene CYP6H for ginsenoside biosynthesis in Panax quinquefolius.
Funct Integr Genomics. 2014 Jul 24;
Authors: Wang L, Zhao SJ, Liang YL, Sun Y, Cao HJ, Han Y

Abstract
Panax quinquefolius is one of perennial herbs and well known for its outstanding pharmacological activity. Ginsenosides are thought to be the main active ingredients in P. quinquefolius and exist in many kinds of plant genus Panax (ginseng).

Protopanaxatriol synthase, which is considered cytochrome P450 (CYP450) in ginsenoside biosynthesis pathway can convert protopanaxadiol into protopanaxatriol. However, the protopanaxatriol synthase gene in P. quinquefolius has not been identified.

Here, we cloned and identified a protopanaxatriol synthase gene from P. quinquefolius (CYP6H, GenBank accession no. KC190491) at the first time, reverse transcription-PCR (RT-PCR) analysis showed no obvious transcription change of CYP6H in methyl jasmonate (MeJA)-induced hairy roots.

Ectopic expression of CYP6H in Saccharomyces cerevisiae resulted in the production of protopanaxatriol with added exogenous protopanaxadiol and confirmed by liquid chromatography-atmospheric pressure chemical ionization mass spectrometry (LC/APCIMS).

Moreover, high-performance liquid chromatography (HPLC) analysis shows that RNA interferences of CYP6H in transgenic hairy roots could increase the accumulation of protopanaxadiol-type ginsenosides and decrease the accumulation of protopanaxatriol-type ginsenosides, whereas the effect of overexpression CYP6H in transgenic hairy roots was contrary.

Our study indicated that CYP6H is a gene encoding protopanaxadiol 6-hydroxylase which could convert protopanaxadiol into protopanaxatriol in P. quinquefolius ginsenoside biosynthesis, we also have confirmed the function of CYP6H on effect accumulation of ginsenosides.

PMID: 25056561 [PubMed - as supplied by publisher]

Source: PPT and PPD

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