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Enhanced production of an anti-malarial compound artesunate by hairy root cultures and phytochemical analysis of Artemisia pallens Wall.

机译:通过毛状根培养和蒿蒿壁的植物化学分析提高了抗疟疾化合物青蒿琥酯的产量。

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摘要

Artemisinin and its derivatives are still one of the most effective drugs for the treatment of malaria. Artemisia pallens commonly known as Dhavanam, is an aromatic herb belonging to the family Asteraceae. Increasing the artemisinin content of A. pallens by genetic engineering would improve the availability of this much needed drug. In the present study, Agrobacterium rhizogenes (strain NCIM 5140) mediated genetic transformation of Artemisia pallens were carried out for hairy root induction. The effect of different media (Half MS, MS, MS along with BAP 0.5 mg/l and MS along with Kinetin 0.5 mg/l) and type of explants (leaf and stem) on hairy root induction and culture were also studied. Maximum transformation efficiency (70.0 %) was observed in case of stem explants when it was co-cultivated with Agrobacterium rhizogenes and kept on half strength MS media. Artesunate is a derivative of artemisinin, was quantified using HPLC from dried aerial extract and hairy roots. The content of artesunate in hairy roots was increased up to twofold as compared to aerial part of Artemisia pallens. The maximum amount of artesunate found in hairy roots was 5.62 ± 0.16 μg/g of dry weight. Apart from artesunate the other phytochemicals like alkaloids, polyphenols, and flavonoids are important because they impart the medicinal properties in this plant. Therefore, we have also quantified total alkaloids, flavonoids and polyphenolic content in the aerial part of the plants. The total alkaloids and flavonoids content were found 1.72 ± 0.00 mg/g dry weight in aqueous extract and 3.8 ± 0.00 mg/g in methanolic extract in terms of colchicine and rutin equivalents, respectively. Similarly, total phenolic content is 3.70 ± 0.01 mg/g in ethanolic extract in terms of tannic acid equivalent.Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-016-0496-5) contains supplementary material, which is available to authorized users.
机译:青蒿素及其衍生物仍然是治疗疟疾最有效的药物之一。蒿(Artemisia pallens)通常被称为Dhavanam,是一种属于菊科的芳香草药。通过基因工程增加苍术中青蒿素的含量将提高这种急需药物的利用率。在本研究中,发根农杆菌(菌株NCIM 5140)介导的青蒿的遗传转化用于毛发根诱导。还研究了不同培养基(半MS,MS,MS连同BAP 0.5 mg / l以及MS连同Kinetin 0.5 mg / l)和外植体类型(叶和茎)对毛状根诱导和培养的影响。将其与发根农杆菌共培养并保持在半强度MS培养基上时,观察到最大的转化效率(70.0%)。青蒿琥酯是青蒿素的衍生物,使用HPLC从干燥的空中提取物和毛状根中进行定量。与青蒿的气生部分相比,毛发根中的青蒿琥酯含量增加了两倍。在毛状根中发现的青蒿琥酯的最大量为干重的5.62±0.16μg/ g。除青蒿琥酯外,其他植物化学物质(如生物碱,多酚和类黄酮)也很重要,因为它们赋予该植物以药用价值。因此,我们还定量了植物地上部分的总生物碱,类黄酮和多酚含量。以秋水仙碱和芦丁当量计,水提取物中的总生物碱和类黄酮含量分别为1.72±0.00 mg / g干重和甲醇提取物中的3.8±0.00 mg / g干重。同样,以单宁酸当量计,乙醇提取物中的总酚含量为3.70±0.01 mg / g电子补充材料本文的在线版本(doi:10.1007 / s13205-016-0496-5)包含补充材料,可以通过以下途径获得给授权用户。

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