Institute of Pharmacy, Martin-Luther University, Research Group of Drug Development and Analysis, Wolfgang- Langenbeck-Straße 4, 06120 Halle, Saale, Germany; Applied Organic Chemistry Department, National Research Centre, Cairo, Egypt.
Natural Compounds Laboratory, National Research Centre, Cairo, Egypt.
Eur J Med Chem. 2015 Jan 27;90:845-59. doi: 10.1016/j.ejmech.2014.12.008. Epub 2014 Dec 11.
BIMs (bis-indolylmethanes) (1a-n) were synthesized using glacial acetic acid as a protic acid for promotion of the condensation reaction of indoles with aldehydes in high yields (86-98 %). Corresponding tetrahydroindolo[2,3-b]carbazoles (2a-m) were synthesized via condensation of BIMs with aldehydes. Ten synthesized compounds have been submitted to the national cancer institute in the USA where all the submitted samples have been selected for one dose screening. As a result of the one dose screening of BIMs (1e,f,h,i,n) and of the indolocarbazoles (2e,f,h,i,j) the average highest cytostatic effects was recorded here for the BIM 1h and the indolocarbazole (2e) that showed the lowest mean values of "47.39%" and of "21.63%" respectively. Both compounds (1h and 2e) were further tested in five dose screening with the tested substance (1h) being significantly more sensitive for several cancers cell line as corresponding to their GI50 values. Furthermore, the basically substituted derivative 2e showed the highest antipoliferative activity in a nanomolar scale towards the three selected cancers cell lines Non small lung cell NCI-H460 with GI50 "616 nM", Ovarian Cancer cell line OVCAR-4 with GI50 "562 nM" and Breast Cancer cell line MCF7 with GI50 "930 nM".
BIMs(双吲哚基甲烷)(1a-n)是使用冰醋酸作为质子酸合成的,可促进吲哚与醛的缩合反应,产率高(86-98%)。相应的四氢吲哚并[2,3-b]咔唑(2a-m)是通过 BIMs 与醛的缩合反应合成的。十种合成化合物已提交给美国国立癌症研究所,所有提交的样品均被选为一剂筛选。作为 BIMs(1e、f、h、i、n)和吲哚咔唑(2e、f、h、i、j)的一剂筛选的结果,BIM 1h 和吲哚咔唑(2e)的平均最高细胞抑制作用记录在这里,它们分别显示出最低的平均“47.39%”和“21.63%”值。这两种化合物(1h 和 2e)进一步在五种剂量筛选中进行了测试,与测试物质(1h)相比,几种癌细胞系的敏感性更高,这与其 GI50 值相对应。此外,基本取代的衍生物 2e 对三种选定的癌细胞系非小细胞肺癌 NCI-H460(GI50“616 nM”)、卵巢癌细胞系 OVCAR-4(GI50“562 nM”)和乳腺癌细胞系 MCF7(GI50“930 nM”)表现出最高的纳米级抗增殖活性。