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东北红豆杉愈伤组织培养生产生物活性紫杉烷类化合物。

Production of biologically active taxoids by a callus culture of Taxus cuspidata.

作者信息

Bai Jiao, Kitabatake Mutumi, Toyoizumi Kazuki, Fu Liwei, Zhang Shujun, Dai Jungui, Sakai Junichi, Hirose Katutoshi, Yamori Takao, Tomida Akihiro, Tsuruo Takashi, Ando Masayoshi

机构信息

Graduate School of Science and Technology and Department of Chemistry and Chemical Engineering, Niigata University, 2-8050 Ikarashi, Niigata 950-2181, Japan.

出版信息

J Nat Prod. 2004 Jan;67(1):58-63. doi: 10.1021/np0301083.

Abstract

Ten known taxoids, paclitaxel, 7-epi-taxol, taxol C, baccatin VI, taxayuntin C, taxuyunnanine C and its analogues (2-5), and yunnanxane (6), and an abietane, taxamairin A, were produced in the callus culture of Taxus cuspidata cultivated on a modified Gamborg's B5 medium in the presence of 0.5 mg/L NAA. After stimulation with 100 microM methyl jasmonate, five more taxoids, cephalomannine, 1beta-dehydroxybaccatin VI, taxinine NN-11 (1), baccatin I, and 2alpha-acetoxytaxusin, and one more abietane, taxamairin C, were found in addition to the above-mentioned compounds. It was also observed that the content of the products increased over three times. Taxinine NN-11 (1) is a new taxane whose structure was assigned as 5alpha,13alpha-diacetoxy-9alpha-cinnamoyloxy-4(20),11-taxadien-10beta-ol by analysis of its spectral data. Taxinine NN-11 (1) exhibited significant MDR reversal activity toward 2780 AD tumor cells. The results of primary screening based on 39 human cancer cell lines suggest that 1 also belongs to a new mechanistic class. Efficient production of 1 was investigated using the callus culture of T. cuspidata.

摘要

在添加了0.5 mg/L萘乙酸(NAA)的改良Gamborg's B5培养基上培养东北红豆杉的愈伤组织,从中产生了10种已知的紫杉烷类化合物,即紫杉醇、7-表紫杉醇、紫杉醇C、浆果赤霉素VI、紫杉亭C、紫杉宁C及其类似物(2-5)和云南紫杉烷(6),以及一种松香烷类化合物,即紫杉海松素A。在用100微摩尔茉莉酸甲酯刺激后,除上述化合物外,又发现了5种紫杉烷类化合物,即三尖杉宁碱、1β-脱氢浆果赤霉素VI、紫杉宁NN-11(1)、浆果赤霉素I和2α-乙酰氧基紫杉素,以及一种松香烷类化合物,即紫杉海松素C。还观察到产物含量增加了三倍多。紫杉宁NN-11(1)是一种新的紫杉烷,通过对其光谱数据的分析,其结构被确定为5α,13α-二乙酰氧基-9α-肉桂酰氧基-4(20),11-紫杉二烯-10β-醇。紫杉宁NN-11(1)对2780 AD肿瘤细胞表现出显著的多药耐药逆转活性。基于39种人类癌细胞系的初步筛选结果表明,1也属于一种新的作用机制类别。利用东北红豆杉的愈伤组织培养对1的高效生产进行了研究。

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