Department of Chemistry, Faculty of Science, Mansoura University, El-Gomhoria Street, Mansoura 35516, Egypt; Department of Chemical Biology, Helmholtz Centre for Infection Research, Inhoffenstraße 7, D-38124 Braunschweig, Germany; Division of Bioorganic Chemistry, School of Pharmacy, Saarland University, D-66123 Saarbruecken, Germany.
Department of Chemical Biology, Helmholtz Centre for Infection Research, Inhoffenstraße 7, D-38124 Braunschweig, Germany.
Bioorg Med Chem. 2014 Jul 15;22(14):3610-9. doi: 10.1016/j.bmc.2014.05.019. Epub 2014 May 21.
A new series of sulfur, selenium and tellurium peptidomimetic compounds was prepared employing the Passerini and Ugi isocyanide based multicomponent reactions (IMCRs). These reactions were clearly superior to conventional methods traditionally used for organoselenium and organotellurium synthesis, such as classical nucleophilic substitution and coupling methods. From the biological point of view, these compounds are of considerable interest because of suspected anticancer and antimicrobial activities. While the sulfur and selenium containing compounds generally did not show either anticancer or antimicrobial activities, their tellurium based counterparts frequently exhibited antimicrobial activity and were also cytotoxic. Some of the compounds synthesized even showed selective activity against certain cancer cells in cell culture. These compounds induced a cell cycle delay in the G0/G1 phase. At closer inspection, the ER and the actin cytoskeleton appeared to be the primary cellular targets of these tellurium compounds, in line with some of our previous studies. As most of these peptidomimetic compounds also comply with Lipinski's Rule of Five, they promise good bioavailability, which needs to be studied as part of future investigations.
采用 Passerini 和 Ugi 异氰化物基多组分反应 (IMCR),合成了一系列新的硫、硒和碲肽模拟化合物。与传统的有机硒和有机碲合成方法(如经典亲核取代和偶联方法)相比,这些反应明显优越。从生物学的角度来看,由于怀疑具有抗癌和抗菌活性,这些化合物具有相当大的兴趣。虽然含硫和硒的化合物通常既没有抗癌活性也没有抗菌活性,但它们的碲化合物通常具有抗菌活性,并且也具有细胞毒性。一些合成的化合物甚至在细胞培养中对某些癌细胞表现出选择性活性。这些化合物在 G0/G1 期诱导细胞周期延迟。进一步观察发现,内质网和肌动蛋白细胞骨架似乎是这些碲化合物的主要细胞靶标,与我们之前的一些研究一致。由于这些肽模拟化合物中的大多数也符合 Lipinski 的五规则,因此它们有望具有良好的生物利用度,这需要作为未来研究的一部分进行研究。