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Trypanocidal Activity of Conformationally Restricted Pentamidine Congeners
54
Citations
15
References
2003
Year
Combinatorial ChemistryTrypanocidal ActivityMedicinal ChemistryDrug TargetDna Binding AffinityAfrican TrypanosomiasisNatural SciencesMedicineAntiparasitic AgentOligonucleotideMolecular BiologyCalf Thymus DnaChemical BiologyPharmacologyPharmaceutical ChemistryDrug DiscoveryTrypanosome IsolatesDrug Resistance
A series of conformationally restricted congeners of pentamidine in which the flexible pentyl bridge of pentamidine was replaced by trans-1,2-bismethylenecyclopropyl, phenyl, pyridinyl, piperazinyl, homopiperazinyl, and piperidinyl groups were synthesized. The compounds were evaluated for trypanocidal activity in vitro and in vivo against one drug-sensitive and three drug-resistant trypanosome isolates. The DNA binding affinity of the compounds was also studied using calf thymus DNA and poly(dA-dT). The nature of the linker influenced the DNA binding affinity as well as the trypanocidal activity of the compounds. trans-1,2-Bis(4-amidinophenoxymethylene)cyclopropane (1) was over 25-fold more potent than pentamidine against the drug-resistant isolate KETRI 243As-10-3, albeit with comparable DNA binding affinity. N,N'-Bis(4-amidinophenyl)homopiperazine (8) was the most potent trypanocide in vitro against all four trypanosome isolates studied, but N,N'-bis(4-amidinophenyl)piperazine (6) was the most effective agent in vivo against both drug-sensitive and drug-resistant trypanosomes.
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