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肝脏葡萄糖生成新抑制剂的筛选与评估

Screening and evaluation of new inhibitors of hepatic glucose production.

作者信息

Hashimoto Junko, Motohashi Keiichiro, Sakamoto Kazutoshi, Hashimoto Seiichi, Yamanouchi Maasa, Tanaka Hiroshi, Takahashi Takashi, Takagi Motoki, Shin-ya Kazuo

机构信息

Biomedicinal Information Research Center (BIRC), Japan Biological Informatics Consortium (JBIC), Koto-ku, Tokyo, Japan.

出版信息

J Antibiot (Tokyo). 2009 Nov;62(11):625-9. doi: 10.1038/ja.2009.93. Epub 2009 Sep 25.

Abstract

In the course of our screening program for inhibitors of hepatic glucose production in rat hepatoma H4IIE-C3 cells, which were used as model liver cells, five naphtoquinone derivatives-javanicin, solaniol, 9-O-methylfusarubin, 5,10-dihydroxy-1,7-dimethoxy-3-methyl-1H-naphtho[2,3-c]pyran-6,9-dione, 9-O-methylbostrycoidin-and vanillin were selected from our natural product library. These naphtoquinone derivatives inhibited hepatic glucose production at IC(50) values of 3.8-29 microM, but showed cytotoxicity against hepatic cells after incubation for 48 h. However, vanillin showed an IC(50) value of 32 microM without exhibiting cytotoxicity at 50 microM. Therefore, we examined 12 vanillin derivatives to investigate their inhibitory activities against glucose production. Among these analogs, 4-hydro-3-methoxyacetophenone and 5-nitrosalicylaldehyde exhibited stronger inhibition than the other compounds at IC(50) values of 25 and 24 microM, respectively, with no cytotoxicity at a concentration of 50 microM. Hence, 4-hydro-3-methoxyacetophenone and 5-nitrosalicylaldehyde may be useful as a lead compound of anti-type 2 diabetic drugs.

摘要

在我们以大鼠肝癌H4IIE - C3细胞作为模型肝细胞进行的肝葡萄糖生成抑制剂筛选项目过程中,从我们的天然产物库中挑选出了五种萘醌衍生物——爪哇尼辛、茄呢醇、9 - O - 甲基夫沙鲁宾、5,10 - 二羟基 - 1,7 - 二甲氧基 - 3 - 甲基 - 1H - 萘并[2,3 - c]吡喃 - 6,9 - 二酮、9 - O - 甲基波斯特曲菌素——以及香草醛。这些萘醌衍生物抑制肝葡萄糖生成的IC(50)值为3.8 - 29微摩尔,但在孵育48小时后对肝细胞表现出细胞毒性。然而,香草醛的IC(50)值为32微摩尔,在50微摩尔时未表现出细胞毒性。因此,我们研究了12种香草醛衍生物以考察它们对葡萄糖生成的抑制活性。在这些类似物中,4 - 羟基 - 3 - 甲氧基苯乙酮和5 - 亚硝基水杨醛分别在IC(50)值为25和24微摩尔时表现出比其他化合物更强的抑制作用,在50微摩尔浓度下无细胞毒性。因此,4 - 羟基 - 3 - 甲氧基苯乙酮和5 - 亚硝基水杨醛可能作为抗2型糖尿病药物的先导化合物。

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