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N-substituted Pyrrole-based Scaffolds as Potential Anticancer and Antiviral Lead Structures

机译:N取代吡咯基支架作为潜在的抗癌和抗病毒铅结构。

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Undoubtedly, efficient cancer treatment has been a significant challenge for the scientific community over the last decades. Despite tremendous progress made towards this direction, there are still efforts needed to discover new anticancer drugs. In this work, a series of N-substituted pyrrole-based scaffolds have been synthesized and evaluated for antiproliferative activity against a panel of cancer cell lines (L1210, CEM and HeLa). Furthermore, in order to discover new scaffolds as antiviral agents, all the examined compounds were evaluated for activity against different types of DNA and RNA viruses. The key feature of the above structures is the existence of an aromatic ring with at least one hydrogen-bonding donor and acceptor group. Results have shown noteworthy cytostatic activity for three of the synthesized compounds (1, 3 and 9). Especially, compound 1, containing a tropolone ring, proved to be the most promising scaffold (IC50: 10-14 mu M) for the development of novel potential anticancer agents. In addition, compound 1 has shown modest anti-HSV-1, -HSV2 activity in HEL cell cultures (EC50: 27-40 mu M).
机译:毫无疑问,在过去的几十年中,有效的癌症治疗一直是科学界面临的重大挑战。尽管朝这个方向取得了巨大进展,但仍需要努力发现新的抗癌药物。在这项工作中,已合成了一系列基于N取代吡咯的支架,并评估了它们对一组癌细胞系(L1210,CEM和HeLa)的抗增殖活性。此外,为了发现作为抗病毒剂的新支架,评估了所有检查的化合物对不同类型的DNA和RNA病毒的活性。上述结构的关键特征是存在具有至少一个氢键供体和受体基团的芳环。结果显示出对三种合成的化合物(1、3和9)具有显着的细胞抑制活性。尤其是,具有四环酮环的化合物1被证明是开发新型潜在抗癌剂的最有前途的支架(IC50:10-14μM)。另外,化合物1在HEL细胞培养物中显示出适度的抗HSV-1,-HSV2活性(EC50:27-40μM)。

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