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Isolation and Antitrypanosomal Characterization of Furoquinoline and Oxylipin from Zanthoxylum zanthoxyloides.
Dofuor, Aboagye Kwarteng; Ayertey, Frederick; Bolah, Peter; Djameh, Georgina Isabella; Kyeremeh, Kwaku; Ohashi, Mitsuko; Okine, Laud Kenneth; Gwira, Theresa Manful.
Afiliação
  • Dofuor AK; West African Center for Cell Biology of Infectious Pathogens, University of Ghana, P.O. Box LG54, Legon, Accra 00233, Ghana.
  • Ayertey F; Department of Biochemistry, Cell and Molecular Biology, University of Ghana, P.O. Box LG54, Legon, Accra 00233, Ghana.
  • Bolah P; Centre for Plant Medicine Research, P.O. Box 73, Mampong-Akuapem 03427, Ghana.
  • Djameh GI; Centre for Plant Medicine Research, P.O. Box 73, Mampong-Akuapem 03427, Ghana.
  • Kyeremeh K; Department of Parasitology, Noguchi Memorial Institute for Medical Research, University of Ghana, P.O. Box LG 581, Legon, Accra 00233, Ghana.
  • Ohashi M; Department of Chemistry, University of Ghana, P.O. Box LG 56, Legon, Accra 00233, Ghana.
  • Okine LK; Department of Parasitology, Noguchi Memorial Institute for Medical Research, University of Ghana, P.O. Box LG 581, Legon, Accra 00233, Ghana.
  • Gwira TM; Department of Environmental Parasitology, Tokyo Medical and Dental University, Tokyo 113-8510, Japan.
Biomolecules ; 10(12)2020 12 13.
Article em En | MEDLINE | ID: mdl-33322191
ABSTRACT
In the absence of vaccines, there is a need for alternative sources of effective chemotherapy for African trypanosomiasis (AT). The increasing rate of resistance and toxicity of commercially available antitrypanosomal drugs also necessitates an investigation into the mode of action of new antitrypanosomals for AT. In this study, furoquinoline 4, 7, 8-trimethoxyfuro (2, 3-b) quinoline (compound 1) and oxylipin 9-oxo-10, 12-octadecadienoic acid (compound 2) were isolated from the plant species Zanthoxylum zanthoxyloides (Lam) Zepern and Timler (root), and their in vitro efficacy and mechanisms of action investigated in Trypanosomabrucei (T. brucei), the species responsible for AT. Both compounds resulted in a selectively significant growth inhibition of T. brucei (compound 1, half-maximal effective concentration EC50 = 1.7 µM, selectivity indices SI = 74.9; compound 2, EC50 = 1.2 µM, SI = 107.3). With regards to effect on the cell cycle phases of T. brucei, only compound 1 significantly arrested the second growth-mitotic (G2-M) phase progression even though G2-M and DNA replication (S) phase arrest resulted in the overall reduction of T. brucei cells in G0-G1 for both compounds. Moreover, both compounds resulted in the aggregation and distortion of the elongated slender morphology of T. brucei. Analysis of antioxidant potential revealed that at their minimum and maximum concentrations, the compounds exhibited significant oxidative activities in T. brucei (compound 1, 22.7 µM Trolox equivalent (TE), 221.2 µM TE; compound 2, 15.0 µM TE, 297.7 µM TE). Analysis of growth kinetics also showed that compound 1 exhibited a relatively consistent growth inhibition of T. brucei at different concentrations as compared to compound 2. The results suggest that compounds 1 and 2 are promising antitrypanosomals with the potential for further development into novel AT chemotherapy.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Quinolinas / Trypanosoma brucei brucei / Zanthoxylum / Oxilipinas / Antiprotozoários Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Quinolinas / Trypanosoma brucei brucei / Zanthoxylum / Oxilipinas / Antiprotozoários Idioma: En Ano de publicação: 2020 Tipo de documento: Article