Antifungal Activity, Phytochemical Characterization and Thermal Profile of Anadenanthera colubrina (Vell.) Brenan
Author(s) -
EALSS Rocha,
ACD Medeiros,
Ricardo Dias de Castro,
Pedro Luiz Rosalen,
KLA Saraiva,
Gustavo Pina Godoy,
L.C.D. Silva,
CSS Aleixo,
P. P. SILVA,
EMMB Costa
Publication year - 2017
Publication title -
pesquisa brasileira em odontopediatria e clínica integrada
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.185
H-Index - 12
eISSN - 1983-4632
pISSN - 1519-0501
DOI - 10.4034/pboci.2017.171.12
Subject(s) - phytochemical , antifungal , traditional medicine , chemistry , biology , medicine , microbiology and biotechnology
Objective: To investigate the antifungal potential of A. colubrina , and its phytochemical characteristics, thermal profile and toxicity. Material and Methods: To assess potential antifungal activity, the technique of microdilution was used with the determination of the Minimum Inhibitory Concentration and Minimum Fungicidal Concentration, using standard species of Candida and recent clinical isolates of Candida albicans . Analyses of action of the extract were performed on the wall and cell morphology of C. albicans , of the interactive effect between the plant extract and nystatin on C. albicans through the checkerboard method, and of growth kinetics. The phytochemical screening was determined by spectrophotometry. The thermal profile was traced with the determination of thermogravimetric curves (TG) and differential scanning calorimetry (DSC). The toxicity was evaluated by the method of hemolysis. Results: The extract of A. colubrina showed a fungistatic potential against all bacteria tested and it acted by modifying the cellular morphology of C. albicans . There was a synergism between nystatin and the plant extract (FIC=0.375), and 53.18% of total polyphenols were determined. The TG curve showed the occurrence of three steps of thermal decomposition. None of the tested concentrations became the effective cytotoxic concentration. Conclusion: Further studies should be conducted to understand the efficacy and the mechanisms of action involved in the antifungal activity of the plant extract of A. colubrina in order to produce a new drug for the treatment of oral candidiasis.
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