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Antibacterial Activity of the Pyrogallol against Staphylococcus aureus Evaluated by Optical Image
by
Rodrigues, Francisco A. A.
, da Cunha, Francisco Assis Bezerra
, Coutinho, Henrique Douglas Melo
, Oliveira, Lígia C. C.
, Macêdo, Nair Silva
, dos Santos Barbosa, Cristina Rodrigues
, dos Santos, Joycy Francely Sampaio
, de Sousa Silveira, Zildene
in
Antibiotics
/ Bacteria
/ bacterial
/ Experiments
/ Fruits
/ Gram-positive bacteria
/ minimum inhibitory concentration
/ Performance evaluation
/ Polyphenols
/ Staphylococcus infections
/ substance
2022
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Antibacterial Activity of the Pyrogallol against Staphylococcus aureus Evaluated by Optical Image
by
Rodrigues, Francisco A. A.
, da Cunha, Francisco Assis Bezerra
, Coutinho, Henrique Douglas Melo
, Oliveira, Lígia C. C.
, Macêdo, Nair Silva
, dos Santos Barbosa, Cristina Rodrigues
, dos Santos, Joycy Francely Sampaio
, de Sousa Silveira, Zildene
in
Antibiotics
/ Bacteria
/ bacterial
/ Experiments
/ Fruits
/ Gram-positive bacteria
/ minimum inhibitory concentration
/ Performance evaluation
/ Polyphenols
/ Staphylococcus infections
/ substance
2022
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Antibacterial Activity of the Pyrogallol against Staphylococcus aureus Evaluated by Optical Image
by
Rodrigues, Francisco A. A.
, da Cunha, Francisco Assis Bezerra
, Coutinho, Henrique Douglas Melo
, Oliveira, Lígia C. C.
, Macêdo, Nair Silva
, dos Santos Barbosa, Cristina Rodrigues
, dos Santos, Joycy Francely Sampaio
, de Sousa Silveira, Zildene
in
Antibiotics
/ Bacteria
/ bacterial
/ Experiments
/ Fruits
/ Gram-positive bacteria
/ minimum inhibitory concentration
/ Performance evaluation
/ Polyphenols
/ Staphylococcus infections
/ substance
2022
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Antibacterial Activity of the Pyrogallol against Staphylococcus aureus Evaluated by Optical Image
Journal Article
Antibacterial Activity of the Pyrogallol against Staphylococcus aureus Evaluated by Optical Image
2022
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Overview
The minimum inhibitory concentration (MIC) is used to define the lowest concentration at which a substance can inhibit bacterial growth. This study aimed to evaluate the MIC of pyrogallol against Staphylococcus aureus and to propose a method for building growth inhibition curves of bacterial strains from MIC assays. S. aureus strains 1199B (NorA) and 1199 (wild type) were used for the assays. Pyrogallol MIC tests were performed by the broth microdilution method. The proposed method uses RGB images of the microdilution plate using the R (Red), G (Green), and B (Blue) channels to extract information for the construction of the bacterial growth inhibition curve (GIC). Pyrogallol demonstrated a MIC of 512 µg/mL against the two S. aureus strains tested. The GIC was calculated and the MIC point of pyrogallol was identified against the tested strains. The proposed method suggested the same MIC point for pyrogallol when using microplate images before and after the addition of resazurin. Through this methodology, the subjectivity of visual analysis in MIC tests can be eliminated.
Publisher
MDPI AG
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