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Antityrosinase mechanism of ellagic acid in vitro and its effect on mouse melanoma cells. | LitMetric

Antityrosinase mechanism of ellagic acid in vitro and its effect on mouse melanoma cells.

J Food Biochem

College of Life Science, and Key Laboratory of Functional Small Organic Molecule, Ministry of Education, Jiangxi Normal University, Nanchang, China.

Published: November 2019

AI Article Synopsis

  • - The study evaluated how ellagic acid inhibits mushroom tyrosinase and the proliferation of mouse melanoma B cells, finding that it effectively reduces tyrosinase activity with a semi-inhibitory concentration (IC) of 0.2 ± 0.05 mM.
  • - Ellagic acid acts as a mixed, reversible inhibitor of tyrosinase and shows potential to induce apoptosis in melanoma cells, indicating its effectiveness in reducing cancer cell growth.
  • - The research results suggest that ellagic acid could be developed into new drugs or whitening products and provides methods for screening other potential antityrosinase inhibitors.

Article Abstract

The activities of ellagic acid in inhibiting mushroom tyrosinase and cell proliferation were evaluated in this research. The results of enzyme kinetics indicated that ellagic acid could effectively inhibit tyrosinase activity. The value of the semi-inhibitory rate (IC ) was 0.2 ± 0.05 mM. Ellagic acid inhibited tyrosinase activity in a reversible manner and was a mixed tyrosinase inhibitor. Furthermore, ellagic acid had a good inhibitory effect on the proliferation of mouse melanoma B cells and could induce apoptosis. The results acquired from fluorescence spectroscopy revealed that the interaction of ellagic acid with tyrosinase depended on hydrogen bond and electrostatic force. In addition, computational docking showed that ellagic acid interacted with amino acid residues of tyrosinase (Asn19 and Lys372) by hydrogen bond and produced electrostatic interaction with amino residue Lys18. PRACTICAL APPLICATIONS: In the present research, the antityrosinase mechanism of ellagic acid and its effect on mouse melanoma cells were investigated. This study suggested that ellagic acid had a strong inhibitory activity against tyrosinase and cell proliferation,which laid an experimental foundation for the development of new drugs and whitening products. The combined multispectral methods used in this research can be applied to the screening of other antityrosinase inhibitors, further promoting the development and utilization of tyrosinase inhibitors.

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Source
http://dx.doi.org/10.1111/jfbc.12996DOI Listing

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