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首页> 外文期刊>Fitoterapia >Phytochemical analysis of the triterpenoids with cytotoxicity and QR inducing properties from the total tea seed saponin of Camellia sinensis.
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Phytochemical analysis of the triterpenoids with cytotoxicity and QR inducing properties from the total tea seed saponin of Camellia sinensis.

机译:茶树总茶籽皂苷中三萜类化合物的细胞毒性和QR诱导特性的植物化学分析。

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摘要

The tea seed triterpene saponin (TS) from Camellia sinensis was found to exhibit better antitumor activity in vivo in S180 implanted ICR mice and QR inducing activity for hepa lclc7 cells respectively compared with the total tea seed saponin (TTS), hydrolysate of the TTS and tea seed flavonoid glycosides (TF). By bioassay-guided isolation, the TS fraction was separated and seven major components were purified and identified as theasaponin E1 (1), theasaponin E2 (2), theasaponin C1 (3), assamsaponin C (4), theasaponin H1 (5), theasaponin A9 (6), and theasaponin A8 (7), among which compounds 4 and 5 were isolated from this genus for the first time. The antitumor bioassay of the isolated compounds showed that compounds 1, 2 and 3 exhibited potential activities against the human tumor cell lines K562 and HL60. Furthermore, compound 1 (the major constituent with a mass content of over 1%) showed significant QR inducing activity with an IR value of 4.2 at 4 micro g/ml. So it can be concluded that tea seed especially the compound 1 (theasaponin E1) could be used as an antitumor agent and a chemoprevention agent of cancer. The preliminary structure-activity relationship in the anti-tumor activity and QR inducing activity of tea saponins was discussed briefly.
机译:与总茶籽总皂苷(TTS),TTS的水解产物和TPS的水解产物相比,发现茶树的茶籽三萜皂苷(TS)分别在植入S180的ICR小鼠中表现出更好的体内抗肿瘤活性和对肝lclc7细胞的QR诱导活性。茶籽类黄酮苷(TF)。通过生物测定指导的分离,分离出TS馏分并纯化七个主要成分,并将其鉴定为thesaponin E1(1),theasaponin E2(2),theasaponin C1(3),assamsaponin C(4),theasaponin H1(5),皂苷A9(6)和皂苷A8(7),其中化合物4和5首次从该属中分离出来。分离的化合物的抗肿瘤生物测定法显示化合物1、2和3对人肿瘤细胞系K562和HL60具有潜在的活性。此外,化合物1(质量含量超过1%的主要成分)显示出明显的QR诱导活性,在4微克/毫升下的IR值为4.2。因此可以得出结论,茶籽,尤其是化合物1(茶皂素E1)可用作癌症的抗肿瘤剂和化学预防剂。简要讨论了茶皂素抗肿瘤活性和QR诱导活性的初步构效关系。

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