The phytohormone abscisic acid enhances remyelination in mouse models of multiple sclerosis
- Author
- Femke Van Gaever (UGent) , Fleur Mingneau, Sam Vanherle, Yasmine Driege (UGent) , Mira Haegman (UGent) , Elien Van Wonterghem (UGent) , Junhua Xie, Roosmarijn Vandenbroucke (UGent) , Jerome J. A. Hendriks, Rudi Beyaert (UGent) and Jens Staal (UGent)
- Organization
- Project
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- Engineering of an abscisic acid (ABA)-producing probiotic Saccharomyces boulardii strain to modulate host microbiota, intestinal health and inflammatory diseases
- Biosynthesis and physiological role of endogenous mammalian “phytohormones” in health and disease
- Elucidating the details of the interaction between specific nutrients-microbiota-intestinal health and the consequences for inflammatory diseases
- Molecular and cellular mechanisms in inflammation and immunity
- Abstract
- Introduction Over the past few decades, there has been a sudden rise in the incidence of Multiple Sclerosis (MS) in Western countries. However, current treatments often show limited efficacy in certain patients and are associated with adverse effects, which highlights the need for safer and more effective therapeutic approaches. Environmental factors, particularly dietary habits, have been observed to play a substantial role in the development of MS. In this study, we are the first to investigate the potential protective effect of the phytohormone abscisic acid (ABA) in MS. ABA, which is abundant in fruits such as figs, apricots and bilberries, is known to cross the blood-brain barrier and has demonstrated neuroprotective effects in conditions like depression and Alzheimer's disease.Methods In this study, we investigated whether ABA supplementation enhances remyelination in both ex vivo and in vivo mouse models.Results Our results indicated that ABA enhanced remyelination and that this enhanced remyelination is associated with increased lipid droplet load, reduced levels of degraded myelin, and a higher abundance of F4/80+ cells in the demyelinated brain of mice treated with ABA. In in vitro models, we further demonstrated that ABA treatment elevates lipid droplet formation by enhancing the phagocytic capacity of macrophages. Additionally, in a mouse model of microglial activation, we showed that ABA-treated mice maintain a less inflammatory microglial phenotype.Conclusion Our findings highlight a crucial role for macrophages and microglia in enabling ABA to enhance the remyelination process. Furthermore, ABA's ability to improve remyelination together with its ability to reduce microglial activation, make ABA a promising candidate for modulating macrophage phenotype and reducing neuroinflammation in MS.
- Keywords
- abscisic acid, remyelination, macrophages, microglia, multiple sclerosis, myelin, neuroinflammation, PROLIFERATOR-ACTIVATED RECEPTORS, CHOLESTEROL EFFLUX, PPAR-GAMMA, GLUCOSE-TOLERANCE, MYELIN, MICROGLIA, IMPAIRS, MACROPHAGES, EXPRESSION, CNS
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01JH873BFWG96QW35EVDD0BJ0J
- MLA
- Van Gaever, Femke, et al. “The Phytohormone Abscisic Acid Enhances Remyelination in Mouse Models of Multiple Sclerosis.” FRONTIERS IN IMMUNOLOGY, vol. 15, 2024, doi:10.3389/fimmu.2024.1500697.
- APA
- Van Gaever, F., Mingneau, F., Vanherle, S., Driege, Y., Haegman, M., Van Wonterghem, E., … Staal, J. (2024). The phytohormone abscisic acid enhances remyelination in mouse models of multiple sclerosis. FRONTIERS IN IMMUNOLOGY, 15. https://doi.org/10.3389/fimmu.2024.1500697
- Chicago author-date
- Van Gaever, Femke, Fleur Mingneau, Sam Vanherle, Yasmine Driege, Mira Haegman, Elien Van Wonterghem, Junhua Xie, et al. 2024. “The Phytohormone Abscisic Acid Enhances Remyelination in Mouse Models of Multiple Sclerosis.” FRONTIERS IN IMMUNOLOGY 15. https://doi.org/10.3389/fimmu.2024.1500697.
- Chicago author-date (all authors)
- Van Gaever, Femke, Fleur Mingneau, Sam Vanherle, Yasmine Driege, Mira Haegman, Elien Van Wonterghem, Junhua Xie, Roosmarijn Vandenbroucke, Jerome J. A. Hendriks, Rudi Beyaert, and Jens Staal. 2024. “The Phytohormone Abscisic Acid Enhances Remyelination in Mouse Models of Multiple Sclerosis.” FRONTIERS IN IMMUNOLOGY 15. doi:10.3389/fimmu.2024.1500697.
- Vancouver
- 1.Van Gaever F, Mingneau F, Vanherle S, Driege Y, Haegman M, Van Wonterghem E, et al. The phytohormone abscisic acid enhances remyelination in mouse models of multiple sclerosis. FRONTIERS IN IMMUNOLOGY. 2024;15.
- IEEE
- [1]F. Van Gaever et al., “The phytohormone abscisic acid enhances remyelination in mouse models of multiple sclerosis,” FRONTIERS IN IMMUNOLOGY, vol. 15, 2024.
@article{01JH873BFWG96QW35EVDD0BJ0J,
abstract = {{Introduction Over the past few decades, there has been a sudden rise in the incidence of Multiple Sclerosis (MS) in Western countries. However, current treatments often show limited efficacy in certain patients and are associated with adverse effects, which highlights the need for safer and more effective therapeutic approaches. Environmental factors, particularly dietary habits, have been observed to play a substantial role in the development of MS. In this study, we are the first to investigate the potential protective effect of the phytohormone abscisic acid (ABA) in MS. ABA, which is abundant in fruits such as figs, apricots and bilberries, is known to cross the blood-brain barrier and has demonstrated neuroprotective effects in conditions like depression and Alzheimer's disease.Methods In this study, we investigated whether ABA supplementation enhances remyelination in both ex vivo and in vivo mouse models.Results Our results indicated that ABA enhanced remyelination and that this enhanced remyelination is associated with increased lipid droplet load, reduced levels of degraded myelin, and a higher abundance of F4/80+ cells in the demyelinated brain of mice treated with ABA. In in vitro models, we further demonstrated that ABA treatment elevates lipid droplet formation by enhancing the phagocytic capacity of macrophages. Additionally, in a mouse model of microglial activation, we showed that ABA-treated mice maintain a less inflammatory microglial phenotype.Conclusion Our findings highlight a crucial role for macrophages and microglia in enabling ABA to enhance the remyelination process. Furthermore, ABA's ability to improve remyelination together with its ability to reduce microglial activation, make ABA a promising candidate for modulating macrophage phenotype and reducing neuroinflammation in MS.}},
articleno = {{1500697}},
author = {{Van Gaever, Femke and Mingneau, Fleur and Vanherle, Sam and Driege, Yasmine and Haegman, Mira and Van Wonterghem, Elien and Xie, Junhua and Vandenbroucke, Roosmarijn and Hendriks, Jerome J. A. and Beyaert, Rudi and Staal, Jens}},
issn = {{1664-3224}},
journal = {{FRONTIERS IN IMMUNOLOGY}},
keywords = {{abscisic acid,remyelination,macrophages,microglia,multiple sclerosis,myelin,neuroinflammation,PROLIFERATOR-ACTIVATED RECEPTORS,CHOLESTEROL EFFLUX,PPAR-GAMMA,GLUCOSE-TOLERANCE,MYELIN,MICROGLIA,IMPAIRS,MACROPHAGES,EXPRESSION,CNS}},
language = {{eng}},
pages = {{19}},
title = {{The phytohormone abscisic acid enhances remyelination in mouse models of multiple sclerosis}},
url = {{http://doi.org/10.3389/fimmu.2024.1500697}},
volume = {{15}},
year = {{2024}},
}
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