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Anti-Proliferative Effect of Synthesized Bakuchiol Analogues on Cultured Human Tumor Cell Lines

机译:合成的爆米花类似物对培养的人肿瘤细胞系的抗增殖作用

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摘要

Bakuchiol (1) is an unique prenylated phenolic meroter-pene found exclusively in the seeds of Psoralea corylifolia L. P. corylifolia is an annual plant of the Leguminosae family and distributed over Southeast Asian countries. Numerous biological actions of the whole extract of the plant or purified constituents have been reported as antioxidant, antiinflammatory and antibacterial activities. Compound I has been introduced firstly to be isolated from the species by G. Mehta et al. and the chemical structure of 1 was fully determined including the absolute configuration of C-6 as (S)-chirality, even the total synthesis was accomplished in 1973. 1 is the main constituent of the species and reported to exert antidiabetic, antitumor effects, BACE-1 inhibitory activity, and hepatoprotective activities. In the previous study,10 we had reported that the seeds extract of P. corylifolia exhibited a marked inhibitory effect on the proliferation of cultured human tumor cell lines and the inhibitory effect was mainly ascribed to 1, a major component of the extract. As a trial for optimizing the chemical structure of 1 for improved antitumor activity, several analogues (2-8) of 1 were prepared according to the synthetic routes illustrated in Scheme 1. Briefly, 1 was treated with an equivalent amount of H2O2 and (NH4)2Ce(NO3)6 (ammonium cerium nitrate; CAN) in acetic acid to give 2. It seemed that the △ double bond of 1 was oxidized to give a corresponding diol, which was further acetylated to produce 2.
机译:Bakuchiol(1)是一种独特的烯丙基酚类金属茂烯,仅在Psoralea corylifolia L.的种子中发现。P。corylifolia是豆科的一年生植物,分布于东南亚国家。据报道,植物的整个提取物或纯化的成分的许多生物学作用是抗氧化剂,抗炎和抗菌活性。化合物I首先是由G. Mehta等人从该物种中分离出来的。并且完全确定了1的化学结构,包括C-6的绝对构型为(S)-手性,甚至在1973年完成了全部合成。1是该物种的主要成分,据报道具有抗糖尿病,抗肿瘤作用, BACE-1的抑制活性和保肝活性。在先前的研究中10,我们报道了紫苏种子提取物对培养的人肿瘤细胞系的增殖具有明显的抑制作用,抑制作用主要归因于提取物的主要成分1。作为优化1的化学结构以提高抗肿瘤活性的试验,根据方案1所示的合成路线,制备了1的几种类似物(2-8)。简而言之,用等量的H2O2和(NH4 )2Ce(NO3)6(硝酸铵铈; CAN)在乙酸中的溶液得到2。似乎将1的△双键氧化了得到相应的二醇,然后将其进一步乙酰化,得到了2。

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