Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica
Abstract Objective This work aimed to examine the leishmanicidal, cellular mechanisms and cytotoxicity effects of formononetin (FMN), a natural isoflavone, against Leishmania tropica. We used the MTT assay to determine the leishmanicidal effects of FMN against promastigotes and its cytotoxicity effe...
| Published in: | BMC Research Notes |
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| Format: | Article |
| Language: | English |
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BMC
2023-06-01
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| Online Access: | https://doi.org/10.1186/s13104-023-06403-1 |
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| author | Hossein Mahmoudvand Amal Khudair Khalaf Pouya Zareh Rajabi Nooshin Karbasian Javad Ghasemian Yadegari |
| author_facet | Hossein Mahmoudvand Amal Khudair Khalaf Pouya Zareh Rajabi Nooshin Karbasian Javad Ghasemian Yadegari |
| author_sort | Hossein Mahmoudvand |
| collection | DOAJ |
| container_title | BMC Research Notes |
| description | Abstract Objective This work aimed to examine the leishmanicidal, cellular mechanisms and cytotoxicity effects of formononetin (FMN), a natural isoflavone, against Leishmania tropica. We used the MTT assay to determine the leishmanicidal effects of FMN against promastigotes and its cytotoxicity effects on J774-A1 macrophage cells. The Griess reaction assay and quantitative real-time PCR were used to determine the nitric oxide (NO) and the mRNA expression levels of IFN-γ and iNOS in infected J774-A1 macrophage cells. Results FMN significantly (P < 0.001) decreased the viability and number of promastigotes and amastigotes forms. The 50% inhibitory concentrations value for FMN and glucantime was 9.3 and 14.3 µM for promastigote and amastigote, respectively. We found that the macrophages exposed with FMN especially at concentrations of 1/2 IC50 and IC50 significantly activated the NO release and the mRNA expression levels of IFN-γ, iNOS. The findings of the current research showed the favorable antileishmanial effects formononetin, a natural isoflavone, against various stages of L. tropica through inhibition of infectivity rate of macrophage cells and triggering the NO production and cellular immunity. However, supplementary works are essential to evaluate the ability and safety of FMN in animal model before use in the clinical phase. |
| format | Article |
| id | doaj-art-8cb17f2ffe9945fc9beb647cdbbd59cf |
| institution | Directory of Open Access Journals |
| issn | 1756-0500 |
| language | English |
| publishDate | 2023-06-01 |
| publisher | BMC |
| record_format | Article |
| spelling | doaj-art-8cb17f2ffe9945fc9beb647cdbbd59cf2025-08-19T22:25:46ZengBMCBMC Research Notes1756-05002023-06-011611610.1186/s13104-023-06403-1Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropicaHossein Mahmoudvand0Amal Khudair Khalaf1Pouya Zareh Rajabi2Nooshin Karbasian3Javad Ghasemian Yadegari4Razi Herbal Medicines Research Center, Lorestan University of Medical SciencesDepartment of Microbiology, College of Medicine, University of ThiqarStudent Research Committee, Lorestan University of Medical SciencesStudent Research Committee, Lorestan University of Medical SciencesRazi Herbal Medicines Research Center, Lorestan University of Medical SciencesAbstract Objective This work aimed to examine the leishmanicidal, cellular mechanisms and cytotoxicity effects of formononetin (FMN), a natural isoflavone, against Leishmania tropica. We used the MTT assay to determine the leishmanicidal effects of FMN against promastigotes and its cytotoxicity effects on J774-A1 macrophage cells. The Griess reaction assay and quantitative real-time PCR were used to determine the nitric oxide (NO) and the mRNA expression levels of IFN-γ and iNOS in infected J774-A1 macrophage cells. Results FMN significantly (P < 0.001) decreased the viability and number of promastigotes and amastigotes forms. The 50% inhibitory concentrations value for FMN and glucantime was 9.3 and 14.3 µM for promastigote and amastigote, respectively. We found that the macrophages exposed with FMN especially at concentrations of 1/2 IC50 and IC50 significantly activated the NO release and the mRNA expression levels of IFN-γ, iNOS. The findings of the current research showed the favorable antileishmanial effects formononetin, a natural isoflavone, against various stages of L. tropica through inhibition of infectivity rate of macrophage cells and triggering the NO production and cellular immunity. However, supplementary works are essential to evaluate the ability and safety of FMN in animal model before use in the clinical phase.https://doi.org/10.1186/s13104-023-06403-1LeishmaniasisPromastigoteAmastigoteNitric oxideInfectivity |
| spellingShingle | Hossein Mahmoudvand Amal Khudair Khalaf Pouya Zareh Rajabi Nooshin Karbasian Javad Ghasemian Yadegari Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica Leishmaniasis Promastigote Amastigote Nitric oxide Infectivity |
| title | Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica |
| title_full | Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica |
| title_fullStr | Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica |
| title_full_unstemmed | Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica |
| title_short | Leishmanicidal and immunomodulatory activities of the formononetin (a natural isoflavone) against Leishmania tropica |
| title_sort | leishmanicidal and immunomodulatory activities of the formononetin a natural isoflavone against leishmania tropica |
| topic | Leishmaniasis Promastigote Amastigote Nitric oxide Infectivity |
| url | https://doi.org/10.1186/s13104-023-06403-1 |
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