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Dive into the research topics where Stanislav A. Bakunov is active.

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Featured researches published by Stanislav A. Bakunov.


Journal of Medicinal Chemistry | 2010

Synthesis and antiprotozoal activity of cationic 1,4-diphenyl-1H-1,2,3-triazoles

Stanislav A. Bakunov; Svetlana M. Bakunova; Tanja Wenzler; Maedot Ghebru; Karl A. Werbovetz; Reto Brun; Richard R. Tidwell

Novel dicationic triazoles 1-60 were synthesized by the Pinner method from the corresponding dinitriles, prepared via the copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC). The type and the placement of cationic moieties as well as the nature of aromatic substituents influenced in vitro antiprotozoal activities of compounds 1-60 against Trypanosoma brucei rhodesiense, Plasmodium falciparum, and Leishmania donovani and their cytotoxicity for mammalian cells. Eight congeners displayed antitrypanosomal IC(50) values below 10 nM. Thirty-nine dications were more potent against P. falciparum than pentamidine (IC(50) = 58 nM), and eight analogues were more active than artemisinin (IC(50) = 6 nM). Diimidazoline 60 exhibited antiplasmodial IC(50) value of 0.6 nM. Seven congeners administered at 4 x 5 mg/kg by the intraperitoneal route cured at least three out of four animals in the acute mouse model of African trypanosomiasis. At 4 x 1 mg/kg, diamidine 46 displayed better antitrypanosomal efficacy than melarsoprol, curing all infected mice.


Journal of Medicinal Chemistry | 2009

Synthesis and antiprotozoal properties of pentamidine congeners bearing the benzofuran motif

Stanislav A. Bakunov; Svetlana M. Bakunova; Arlene S. Bridges; Tanja Wenzler; Todd Barszcz; Karl A. Werbovetz; Reto Brun; Richard R. Tidwell

Forty-eight cationically substituted pentamidine congeners possessing benzofuran rings were synthesized by a copper mediated heteroannulation of substituted o-iodophenols with phenyl acetylenes. Activities of compounds 1-48 against Trypanosoma brucei rhodesiense, Plasmodium falciparum, and Leishmania donovani and cytotoxicities for mammalian cells were influenced by the nature of cationic substituents, placement of the benzofuran fragment, and the length of the carbon linker between aromatic moieties. Several dications exhibited superior antiplasmodial and antileishmanial potencies compared to pentamidine.


Journal of Medicinal Chemistry | 2009

Synthesis and antiprotozoal activity of pyridyl analogues of pentamidine

Svetlana M. Bakunova; Stanislav A. Bakunov; Tanja Wenzler; Todd Barszcz; Karl A. Werbovetz; Reto Brun; Richard R. Tidwell

A series of novel pyridyl analogues 1-18 of antiprotozoal drug 1,5-bis(4-amidinophenoxy)pentane (pentamidine) has been synthesized and tested for in vitro activities against Trypanosoma brucei rhodesiense, Plasmodium falciparum, and Leishmania donovani, and for cytotoxicity against mammalian cells. Antiprotozoal properties of compounds 1-18 depended on the placement of cationic moieties on the pyridine rings as well as the nature of substituents on the amidine groups. Diamidine 6 with cationic moieties adjacent to pyridine nitrogen atoms was the most promising compound in the series showing superior in vitro activities against T. brucei rhodesiense, P. falciparum, and L. donovani compared to pentamidine. An oral prodrug of diamidine 6, diamidoxime 9, administered at 25 mg/kg daily for 4 days, exhibited excellent antitrypanosomal efficacy in vivo curing all infected animals in the STIB900 acute mouse model of trypanosomiasis.


European Journal of Medicinal Chemistry | 2009

Synthesis and antiprotozoal activities of dicationic bis(phenoxymethyl)benzenes, bis(phenoxymethyl)naphthalenes, and bis(benzyloxy)naphthalenes

Donald A. Patrick; Stanislav A. Bakunov; Svetlana M. Bakunova; E. V. K. Suresh Kumar; Heidi Chen; Susan Jones; Tanja Wenzler; Todd Barzcz; Karl A. Werbovetz; Reto Brun; Richard R. Tidwell

A series of 37 dicationically substituted bis(phenoxymethyl)benzene bis(phenoxymethyl)naphthalene, and bis(benzyloxy)naphthalene analogues of pentamidine was prepared and evaluated for antiprotozoal activities and cytotoxicity in in vitro. 1,3-Bis(4-amidinophenoxymethyl)benzene (1) was the most active against Trypanosoma brucei rhodesiense (IC(50)=2.1 nM). 1,3-Bis[4-(N-isopropylamidino)phenoxymethyl]benzene (2) was most active against Plasmodium falciparum (IC(50)=3.6 nM) and displayed a selectivity index more than 50 times greater than that of pentamidine. Several other compounds displayed lower antiplasmodial IC(50) values and higher selectivity indices relative to pentamidine. 1,4-Bis(4-amidinophenoxymethyl)benzene (14) was the most active against Leishmania donovani (IC(50)=1.3 microM). Compound 2 displayed the greatest activity against T. b. rhodesiense in vivo, curing three of four infected mice dosed intraperitoneally at 5 mg/kg x 4 days.


Antimicrobial Agents and Chemotherapy | 2014

In vitro and in vivo biological effects of novel arylimidamide derivatives against Trypanosoma cruzi

Bruno Lisboa Timm; Patricia Bernardino da Silva; Marcos Meuser Batista; Francisca Hildemagna Guedes da Silva; Cristiane França da Silva; Richard R. Tidwell; Donald A. Patrick; Susan Jones; Stanislav A. Bakunov; Svetlana M. Bakunova; Maria de Nazaré C. Soeiro

ABSTRACT Chagas disease (CD), a neglected tropical disease caused by Trypanosoma cruzi, remains a serious public health problem in several Latin American countries. The available chemotherapies for CD have limited efficacy and exhibit undesirable side effects. Aromatic diamidines and arylimidamides (AIAs) have shown broad-spectrum activity against intracellular parasites, including T. cruzi. Therefore, our aim was to evaluate the biological activity of eight novel AIAs (16DAP002, 16SAB079, 18SAB075, 23SMB022, 23SMB026, 23SMB054, 26SMB070, and 27SMB009) against experimental models of T. cruzi infection in vitro and in vivo. Our data show that none of the compounds induced a loss of cellular viability up to 32 μM. Two AIAs, 18SAB075 and 16DAP002, exhibited good in vitro activity against different parasite strains (Y and Tulahuen) and against the two relevant forms of the parasite for mammalian hosts. Due to the excellent selective indexes of 18SAB075, this AIA was moved to in vivo tests for acute toxicity and parasite efficacy; nontoxic doses (no-observed-adverse-effect level [NOAEL], 50 mg/kg) were employed in the tests for parasite efficacy. In experimental models of acute T. cruzi infection, 18SAB075 reduced parasitemia levels only up to 50% and led to 40% protection against mortality (at 5 mg/kg of body weight), being less effective than the reference drug, benznidazole.


Antimicrobial Agents and Chemotherapy | 2016

In vitro and In vivo Trypanosomicidal Action of Novel Arylimidamides Against Trypanosoma cruzi

F. H. Guedes-da-Silva; D. G. J. Batista; M. B. Meuser; Kelly Cristina Demarque; T. O. Fulco; Julianna Siciliano De Araújo; P. B. Da Silva; C. F. Da Silva; Donald A. Patrick; Svetlana M. Bakunova; Stanislav A. Bakunov; Richard R. Tidwell; Gabriel Melo de Oliveira; Constança Britto; Otacilio C. Moreira; Maria de Nazaré C. Soeiro

ABSTRACT Arylimidamides (AIAs) have been shown to have considerable biological activity against intracellular pathogens, including Trypanosoma cruzi, which causes Chagas disease. In the present study, the activities of 12 novel bis-AIAs and 2 mono-AIAs against different strains of T. cruzi in vitro and in vivo were analyzed. The most active was m-terphenyl bis-AIA (35DAP073), which had a 50% effective concentration (EC50) of 0.5 μM for trypomastigotes (Y strain), which made it 26-fold more effective than benznidazole (Bz; 13 μM). It was also active against the Colombiana strain (EC50 = 3.8 μM). Analysis of the activity against intracellular forms of the Tulahuen strain showed that this bis-AIA (EC50 = 0.04 μM) was about 100-fold more active than Bz (2 μM). The trypanocidal effect was dissociated from the ability to trigger intracellular lipid bodies within host cells, detected by oil red labeling. Both an active compound (35DAP073) and an inactive compound (26SMB060) displayed similar activation profiles. Due to their high selectivity indexes, two AIAs (35DAP073 and 35DAP081) were moved to in vivo studies, but because of the results of acute toxicity assays, 35DAP081 was excluded from the subsequent tests. The findings obtained with 35DAP073 treatment of infections caused by the Y strain revealed that 2 days of therapy induced a dose-dependent action, leading to 96 to 46% reductions in the level of parasitemia. However, the administration of 10 daily doses in animals infected with the Colombiana strain resulted in toxicity, preventing longer periods of treatment. The activity of the combination of 0.5 mg/kg of body weight/day 35DAP073 with 100 mg/kg/day Bz for 10 consecutive days was then assayed. Treatment with the combination resulted in the suppression of parasitemia, the elimination of neurological toxic effects, and survival of 100% of the animals. Quantitative PCR showed a considerable reduction in the parasite load (60%) compared to that achieved with Bz or the amidine alone. Our results support further investigations of this class with the aim of developing novel alternatives for the treatment of Chagas disease.


Bioorganic & Medicinal Chemistry | 2014

Antiprotozoal activity of dicationic 3,5-diphenylisoxazoles, their prodrugs and aza-analogues

Donald A. Patrick; Stanislav A. Bakunov; Svetlana M. Bakunova; Tanja Wenzler; Reto Brun; Richard R. Tidwell

Fifty novel prodrugs and aza-analogues of 3,5-bis(4-amidinophenyl)isoxazole and its derivatives were prepared. Eighteen of the 24 aza-analogues exhibited IC₅₀ values below 25 nM against Trypanosoma brucei rhodesiense or Plasmodium falciparum. Six compounds had antitrypanosomal IC₅₀ values below 10 nM. Twelve analogues showed similar antiplasmodial activities, including three with sub-nanomolar potencies. Forty-four diamidines (including 16 aza-analogues) and the 26 prodrugs were evaluated for efficacy in mice infected with T. b. rhodesiense STIB900. Six diamidines cured 4/4 mice at daily 5 mg/kg intraperitoneal doses for 4 days, giving results far superior to pentamidine and furamidine. One prodrug attained 3/4 cures at daily 25 mg/kg oral doses for 4 days.


Journal of Medicinal Chemistry | 2007

Synthesis and in Vitro Antiprotozoal Activities of Dicationic 3,5-Diphenylisoxazoles

Donald A. Patrick; Stanislav A. Bakunov; Svetlana M. Bakunova; E. V. K. Suresh Kumar; Richard J. Lombardy; Susan Jones; Arlene S. Bridges; Oksana Zhirnov; James Edwin Hall; Tanja Wenzler; Reto Brun; Richard R. Tidwell


Journal of Medicinal Chemistry | 2007

Synthesis and in vitro antiprotozoal activity of bisbenzofuran cations

Svetlana M. Bakunova; Stanislav A. Bakunov; Tanja Wenzler; Todd Barszcz; Karl A. Werbovetz; Reto Brun; James Edwin Hall; Richard R. Tidwell


Journal of Medicinal Chemistry | 2008

Synthesis and Antiprotozoal Activity of Cationic 2-Phenylbenzofurans

Stanislav A. Bakunov; Svetlana M. Bakunova; Tanja Wenzler; Todd Barszcz; Karl A. Werbovetz; Reto Brun; Richard R. Tidwell

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Richard R. Tidwell

University of North Carolina at Chapel Hill

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Svetlana M. Bakunova

University of North Carolina at Chapel Hill

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Reto Brun

Swiss Tropical and Public Health Institute

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Tanja Wenzler

Swiss Tropical and Public Health Institute

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Donald A. Patrick

University of North Carolina at Chapel Hill

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Susan Jones

University of North Carolina at Chapel Hill

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James Edwin Hall

University of North Carolina at Chapel Hill

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