首页> 外文OA文献 >Phytochemicals from Malaysian Uncaria longiflora var. pteropoda (Miq.) ridsd. and their activities against the human neuroblastoma SH-SY5Y cell line / Fatimah Salim
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Phytochemicals from Malaysian Uncaria longiflora var. pteropoda (Miq.) ridsd. and their activities against the human neuroblastoma SH-SY5Y cell line / Fatimah Salim

机译:马来西亚Uncaria longiflora var。的植物化学物质。翼足类(Miq。)摆脱了。及其对人神经母细胞瘤SH-SY5Y细胞系的活性/ Fatimah Salim

摘要

Phytochemical investigation on the methanolic extract of the stems and leaves of Malaysian Uncaria longiflora var. pteropoda (Miq.) Ridsd. was carried out with the aim of isolating and identifying their chemical constituents. The extract of the stems was subjected to acid-base extraction, while the leaf extract was successively triturated with hexane, CHCl3, EtOAc and MeOH. The crude extracts were then further fractionated and purified using extensive chromatographic techniques. Structural elucidation of the phytochemicals was based on spectroscopic evidence and comparison with literature values. The absolute configurations of the new chiral compounds were established by comparing the CEs of the experimental ECD spectra to the simulated ECD values, as well as to the ECD spectra of the known related chiral compounds in hand. A total of thirtytwo phytochemicals were isolated of which six are new and nine are common to the leaves and stems. Phytochemicals isolated from the stem extract include two new pentacyclic oxindole alkaloids (POAs) deduced as rauniticine-allo-oxindole B ULS1 and rauniticinicallo acid B ULS2, five known POAs (isopteropodine ULS3, pteropodine ULS4, isopteropodic acid ULS5, uncarine F ULS6 and speciophylline ULS7), two coumarins (scopoletin ULS8 and 4-hydroxy-3,7- dimethoxycoumarin ULS10), one phenyl compound (4-hydroxybenzoic acid methyl ester ULS9) and three terpenes (stigmasterol ULS11, β-sitosterol ULS12 and β-sitostenone ULS13). Phytochemistry on the leaf extract successfully afforded three new alkaloids named as 2-oxosecologanine ULL5, isoformosaninol ULL6 and formosaninol ULL7, one new flavonoid deduced as uncariechin ULL14, four known POAs (isopteropodine ULL1, pteropodine ULL2, uncarine F ULL3 and isopteropodic acid ULL4), two flavonoids [(-)-epi-afzalechin ULL12 and (-)-epicatechin ULL13], two coumarins (scopoletin ULL8 and 3,4-dihydroxy-7-methoxycoumarin ULL11), two phenyl compounds (4-hydroxybenzoic acid methyl ester ULL9 and 4-hydroxy-benzaldehyde ULL10) and five terpenes (β-tocopherol ULL15, 6,10,14-trimethyl- 2-pentadecanone ULL16, stigmasterol ULL17, β-sitosterol ULL18 and β-sitostenone ULL19). Seven phytochemicals of sufficient quantities, comprising five alkaloids (isopteropodine, pteropodine, isopteropodic acid, uncarine F and rauniticine-allo-oxindole B) and two flavonoids [(-)-epi-afzalechin and (-)-epi-catechin] were further tested for their cytotoxic, neurotoxic, as well as neuroprotective activities against human neuroblastoma SH-SY5Y cell line. The alkaloid uncarine F was found to be both cytotoxic and neurotoxic against the cancer and normal human neuroblastoma SHSY5Y cell lines, while the alkaloid pteropodine was found to be neurotoxic, both at a high concentrations. As antioxidants, the flavan-3-ols, (-)-Epi-afzalechin and (-)-epi-catechin possessed neuroprotective properties against the H2O2-induced toxicity on normal cell line with cell viabilities ranging from 75-88% compared to 50- 60% cell viability following treatment with H2O2 alone. The alkaloids isopteropodine and isopteropodic acid, and the new alkaloid rauniticine-allo-oxindole B also consistently showed even higher protective properties with cell viabilities of 83-96%, thus suggesting their potential as an anti-neurodegenerative agent. With respect to the cytotoxic, neurotoxic and neuroprotective activities of the pure compounds tested, it may be suggested that the toxic properties of both the stem and leaf extracts of the plant at the maximum concentration against the cancer and normal human neuroblastoma SH-SY5Y cell lines may be due to the alkaloid uncarine F, and not the synergistic effect among the constituents.
机译:马来西亚Uncaria longiflora var茎和叶甲醇提取物的植物化学研究。翼足类(Miq。)进行分离和鉴定其化学成分的目的。将茎的提取物进行酸碱提取,同时将叶提取物依次用己烷,CHCl3,EtOAc和MeOH研磨。然后将粗提取物进一步分离,并使用广泛的色谱技术纯化。植物化学物质的结构阐明是基于光谱证据并与文献值进行比较。通过将实验性ECD光谱的CE与模拟的ECD值以及手中已知的相关手性化合物的ECD光谱进行比较,可以确定新的手性化合物的绝对构型。总共分离出32种植物化学物质,其中6种是新的,而9种是叶片和茎所共有的。从茎提取物中分离出的植物化学物质包括两个新的五环羟吲哚生物碱(POA),分别推导为雷尼替尼-allo-oxindole B ULS1和雷尼替尼氯酸B ULS2,五个已知的POA(异足石素ULS3,翼蛇毒草素ULS4,异戊二烯酸ULS5和uncarine F7 ),两个香豆素(香豆素ULS8和4-羟基-3,7-二甲氧基香豆素ULS10),一个苯基化合物(4-羟基苯甲酸甲酯ULS9)和三个萜烯(豆甾醇ULS11,β-谷甾醇ULS12和β-谷甾烯酮ULS13)。通过对叶提取物进行植物化学分析,成功获得了三种新的生物碱,分别命名为2-氧代糖皮质激素ULL5,异福尔马诺醇ULL6和福尔马可诺尔ULL7,一种新的黄酮类化合物被推导为uncariechin ULL14,四种已知的POA(异小花碱ULL1,翼手足蛋白ULL2,uncarine FULL3)两个黄酮类化合物[(-)-表-阿夫拉奇ULL12和(-)-表儿茶素ULL13],两个香豆素(香豆素ULL8和3,4-二羟基-7-甲氧基香豆素ULL11),两个苯基化合物(4-羟基苯甲酸甲酯ULL9和4-羟基苯甲醛ULL10)和五个萜烯(β-生育酚ULL15、6,10,14-三甲基-2-戊烯酮ULL16,豆甾醇ULL17,β-谷甾醇ULL18和β-十一碳烯酮ULL19)。进一步测试了七种足够量的植物化学物质,其中包括五种生物碱(异脚类花碱,翼蛇足碱,异二十足酸,十一碳素F和雷尼替辛-allo-oxindole B)和两个黄酮类化合物[(-)-epi-afzalechin和(-)-epi-儿茶素]。具有抗人神经母细胞瘤SH-SY5Y细胞系的细胞毒性,神经毒性和神经保护活性。人们发现,生物碱类抗癌药F对癌症和正常人成神经细胞瘤SHSY5Y细胞系均具有细胞毒性和神经毒性,而生物碱翼手足甙在高浓度下均具有神经毒性。作为抗氧化剂,黄烷-3-醇,(-)-Epi-Azalechin和(-)-Epi-儿茶素具有抗H2O2诱导的正常细胞系毒性的神经保护特性,细胞活力范围为75-88%,而50 -单独用H2O2处理后,细胞活力达到60%。生物碱异翅足碱和异戊二酸,以及新的生物碱雷尼替辛-allo-oxindole B也始终显示出更高的保护性,细胞活力为83-96%,因此表明它们具有抗神经变性剂的潜力。关于所测试的纯化合物的细胞毒性,神经毒性和神经保护活性,可能暗示了植物的茎和叶提取物在最大浓度下对癌症和正常人神经母细胞瘤SH-SY5Y细胞系的毒性。可能是由于生物碱类胡萝卜素F引起的,而不是成分之间的协同作用。

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    Salim Fatimah;

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  • 年度 2013
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