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Triptolide inhibits neutrophil extracellular trap formation

BACKGROUND: Triptolide (PG490), as a triterpene dicyclic oxide has been reported to increase the generation of reactive oxygen species (ROS) and nitric oxide (NO) and induce apoptosis of RAW 264.7 cells in a dose-dependent manner. The activity of death NETs plays an important role in anti-bacterial...

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Autores principales: Guan, Haiyu, Xie, Lifen, Ji, Zhenzhen, Song, Rui, Qi, Jieying, Nie, Xiaoli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506553/
https://www.ncbi.nlm.nih.gov/pubmed/34733936
http://dx.doi.org/10.21037/atm-21-3522
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author Guan, Haiyu
Xie, Lifen
Ji, Zhenzhen
Song, Rui
Qi, Jieying
Nie, Xiaoli
author_facet Guan, Haiyu
Xie, Lifen
Ji, Zhenzhen
Song, Rui
Qi, Jieying
Nie, Xiaoli
author_sort Guan, Haiyu
collection PubMed
description BACKGROUND: Triptolide (PG490), as a triterpene dicyclic oxide has been reported to increase the generation of reactive oxygen species (ROS) and nitric oxide (NO) and induce apoptosis of RAW 264.7 cells in a dose-dependent manner. The activity of death NETs plays an important role in anti-bacterial processes in the human body. This study aimed to investigate the effect of triptolide (PG490) on neutrophil extracellular traps (NETs) formation. METHODS: After isolating peripheral blood neutrophils from healthy volunteers, cells were incubated with PG490 to observe and detect the level of NETs and detect the level of reactive oxygen species (ROS). The cells were cultured, stained and analyzed by fluorescence microscopy. RESULTS: Compared with the 12-myristate-13-acetate (PMA) group, the average fluorescence intensity of SYTOX Green in the PG490 + PMA group, as detected by a multifunctional microplate reader, was significantly decreased. Intracellular ROS were labeled by fluorescence, with fluorescence intensity then measured by multifunctional microplate reader and flow cytometry. The results showed that compared with the control group, the fluorescence intensity of the PMA group was significantly increased, while there was no significant difference between PMA group and PG490 + PMA group. CONCLUSIONS: The production of NETs is inhibited by PG490 in vitro, which is not associated with the level of cellular ROS. This suggests that PG490in Tripterygium wilfordii Hook F can suppress related diseases.
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spelling pubmed-85065532021-11-02 Triptolide inhibits neutrophil extracellular trap formation Guan, Haiyu Xie, Lifen Ji, Zhenzhen Song, Rui Qi, Jieying Nie, Xiaoli Ann Transl Med Original Article BACKGROUND: Triptolide (PG490), as a triterpene dicyclic oxide has been reported to increase the generation of reactive oxygen species (ROS) and nitric oxide (NO) and induce apoptosis of RAW 264.7 cells in a dose-dependent manner. The activity of death NETs plays an important role in anti-bacterial processes in the human body. This study aimed to investigate the effect of triptolide (PG490) on neutrophil extracellular traps (NETs) formation. METHODS: After isolating peripheral blood neutrophils from healthy volunteers, cells were incubated with PG490 to observe and detect the level of NETs and detect the level of reactive oxygen species (ROS). The cells were cultured, stained and analyzed by fluorescence microscopy. RESULTS: Compared with the 12-myristate-13-acetate (PMA) group, the average fluorescence intensity of SYTOX Green in the PG490 + PMA group, as detected by a multifunctional microplate reader, was significantly decreased. Intracellular ROS were labeled by fluorescence, with fluorescence intensity then measured by multifunctional microplate reader and flow cytometry. The results showed that compared with the control group, the fluorescence intensity of the PMA group was significantly increased, while there was no significant difference between PMA group and PG490 + PMA group. CONCLUSIONS: The production of NETs is inhibited by PG490 in vitro, which is not associated with the level of cellular ROS. This suggests that PG490in Tripterygium wilfordii Hook F can suppress related diseases. AME Publishing Company 2021-09 /pmc/articles/PMC8506553/ /pubmed/34733936 http://dx.doi.org/10.21037/atm-21-3522 Text en 2021 Annals of Translational Medicine. All rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/Open Access Statement: This is an Open Access article distributed in accordance with the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC BY-NC-ND 4.0), which permits the non-commercial replication and distribution of the article with the strict proviso that no changes or edits are made and the original work is properly cited (including links to both the formal publication through the relevant DOI and the license). See: https://creativecommons.org/licenses/by-nc-nd/4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Original Article
Guan, Haiyu
Xie, Lifen
Ji, Zhenzhen
Song, Rui
Qi, Jieying
Nie, Xiaoli
Triptolide inhibits neutrophil extracellular trap formation
title Triptolide inhibits neutrophil extracellular trap formation
title_full Triptolide inhibits neutrophil extracellular trap formation
title_fullStr Triptolide inhibits neutrophil extracellular trap formation
title_full_unstemmed Triptolide inhibits neutrophil extracellular trap formation
title_short Triptolide inhibits neutrophil extracellular trap formation
title_sort triptolide inhibits neutrophil extracellular trap formation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506553/
https://www.ncbi.nlm.nih.gov/pubmed/34733936
http://dx.doi.org/10.21037/atm-21-3522
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