4.7 Article

Highly potent artemisinin-derived dimers and trimers: Synthesis and evaluation of their antimalarial, antileukemia and antiviral activities

Journal

BIOORGANIC & MEDICINAL CHEMISTRY
Volume 23, Issue 17, Pages 5452-5458

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2015.07.048

Keywords

Artemisinin-derived hybrids; Artemisinin-derived dimers; Artemisinin-derived trimers; Antimalarial activity; Anticancer activity; Antiviral activity

Funding

  1. Deutsche Forschungsgemeinschaft (DFG) [MA 1289/7-1]
  2. Wilhelm Sander-Stiftung [2011.085.2]
  3. Interdisciplinary Center for Molecular Materials (ICMM)
  4. Erlangen Graduate School in Advanced Optical Technologies (SAOT) by the German Research Foundation (DFG) in the framework of the German excellence initiative

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New pharmaceutically active compounds can be obtained by modification of existing drugs to access more effective agents in the wake of drug resistance amongst others. To achieve this goal the concept of hybridization was established during the last decade. We employed this concept by coupling two artemisinin-derived precursors to obtain dimers or trimers with increased in vitro activity against Plasmodium falciparum 3D7 strain, leukemia cells (CCRF-CEM and multidrug-resistant subline CEM/ADR5000) and human cytomegalovirus (HCMV). Dimer 4 (IC50 of 2.6 nM) possess superior antimalarial activity compared with its parent compound artesunic acid (3) (IC50 of 9.0 nM). Dimer 5 and trimers 6 and 7 display superior potency against both leukemia cell lines (IC50 up to 0.002 mu M for CCRF-CEM and IC50 up to 0.20 mu M for CEM/ADR5000) and are even more active than clinically used doxorubicin (IC50 1.61 mu M for CEM/ADR5000). With respect to anti-HCMV activity, trimer 6 is the most efficient hybrid (IC50 0.04 mu M) outperforming ganciclovir (IC50 2.6 mu M), dihydroartemisinin (IC50 > 10 mu M) and artesunic acid (IC50 3.8 mu M). (C) 2015 Elsevier Ltd. All rights reserved.

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