Literature DB >> 21044044

Kojic acid, a secondary metabolite from Aspergillus sp., acts as an inducer of macrophage activation.

Ana Paula D Rodrigues1, Antônio Sergio C Carvalho, Alberdan S Santos, Claudio N Alves, José Luiz M do Nascimento, Edilene O Silva.   

Abstract

KA (kojic acid) is a secondary metabolite isolated from Aspergillus fungi that has demonstrated skin whitening, antioxidant and antitumour properties among others. However, limited information is available regarding its effects on macrophages, the major cell involved in cell defence. The aim of the present study was to analyse whether KA affects functional properties related to macrophage activation, such as phagocytosis and spreading ability over a substrate. Treatment of resident macrophages with 50 μg/ml KA for 1 h induced both morphological and physiological alterations in cells. Immunofluorescence microscopy revealed enhanced cell spreading and an increase in cell surface exposure, associated with a rearrangement of microtubules, actin filaments and intermediate filaments. KA also potentiated phagocytosis by macrophages, as demonstrated by the increase in phagocytic activity towards yeast, when compared to untreated cells. KA increased the production of ROS (reactive oxygen species), but not NO (nitric oxide) production. Three tests were used to assess cell viability; MTT [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide], NR (neutral red) uptake and PI (propidium iodide) exclusion test, which showed that macrophages maintain their viability following KA treatment. Results indicate that KA can modulate macrophage activation through cytoskeleton rearrangement, increase cell surface exposure, enhance the phagocytic process and ROS production. The study demonstrates a new role for KA as a macrophage activator.

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Year:  2011        PMID: 21044044     DOI: 10.1042/CBI20100083

Source DB:  PubMed          Journal:  Cell Biol Int        ISSN: 1065-6995            Impact factor:   3.612


  15 in total

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3.  In vitro biological action of aqueous extract from roots of Physalis angulata against Leishmania (Leishmania) amazonensis.

Authors:  Raquel Raick P da Silva; Bruno J M da Silva; Ana Paula D Rodrigues; Luis Henrique S Farias; Milton N da Silva; Danila Teresa V Alves; Gilmara N T Bastos; José Luiz M do Nascimento; Edilene O Silva
Journal:  BMC Complement Altern Med       Date:  2015-07-24       Impact factor: 3.659

4.  Novel kojic acid-polymer-based magnetic nanocomposites for medical applications.

Authors:  Samer Hasan Hussein-Al-Ali; Mohamed Ezzat El Zowalaty; Mohd Zobir Hussein; Maznah Ismail; Dena Dorniani; Thomas J Webster
Journal:  Int J Nanomedicine       Date:  2014-01-07

5.  Evaluating the Performance of a Non-Bonded Cu2+ Model Including Jahn-Teller Effect into the Binding of Tyrosinase Inhibitors.

Authors:  Lucas Sousa Martins; Jerônimo Lameira; Hendrik G Kruger; Cláudio Nahum Alves; José Rogério A Silva
Journal:  Int J Mol Sci       Date:  2020-07-06       Impact factor: 5.923

6.  Enhancement of commercial antifungal agents by Kojic Acid.

Authors:  Jong H Kim; Perng-Kuang Chang; Kathleen L Chan; Natália C G Faria; Noreen Mahoney; Young K Kim; Maria de L Martins; Bruce C Campbell
Journal:  Int J Mol Sci       Date:  2012-10-26       Impact factor: 5.923

Review 7.  Classical versus alternative macrophage activation: the Ying and the Yang in host defense against pulmonary fungal infections.

Authors:  C M Leopold Wager; F L Wormley
Journal:  Mucosal Immunol       Date:  2014-07-30       Impact factor: 8.701

8.  Kojic Acid production from agro-industrial by-products using fungi.

Authors:  Ismael A El-Kady; Abdel Naser A Zohri; Shimaa R Hamed
Journal:  Biotechnol Res Int       Date:  2014-03-23

9.  A novel function for kojic acid, a secondary metabolite from Aspergillus fungi, as antileishmanial agent.

Authors:  Ana Paula D Rodrigues; Luis Henrique S Farias; Antonio Sérgio C Carvalho; Alberdan S Santos; José Luiz M do Nascimento; Edilene O Silva
Journal:  PLoS One       Date:  2014-03-12       Impact factor: 3.240

10.  ROS Involves the Fungicidal Actions of Thymol against Spores of Aspergillus flavus via the Induction of Nitric Oxide.

Authors:  Qingshan Shen; Wei Zhou; Hongbo Li; Liangbin Hu; Haizhen Mo
Journal:  PLoS One       Date:  2016-05-19       Impact factor: 3.240

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