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Roles and Mechanisms of Astragaloside IV in Combating Neuronal Aging
Qumar Zaman, Dahong Zhang, Sreekanth Reddy Obireddy, Wing‐Tak Wong, Wing‐Fu Lai
Aging and Disease · 2022 · ▲ 19 citations
Abstract
Aging can lead to changes in the cellular milieu of the brain. These changes may exacerbate, resulting in pathological phenomena (including impaired bioenergetics, aberrant neurotransmission, compromised resilience and neuroplasticity, mitochondrial dysfunction(definition), and the generation of free radicals) and the onset of neurodegenerative diseases. Furthermore, alterations in the energy-sensing pathways can accelerate neuronal aging but the exact mechanism of neural aging is still elusive. In recent decades, the use of plant-derived compounds, including astragaloside IV, to treat neuronal aging and its associated diseases has been extensively investigated. This article presents the current understanding of the roles and mechanisms of astragaloside IV in combating neuronal aging. The ability of the agent to suppress oxidative stress, to attenuate inflammatory responses and to maintain mitochondrial integrity will be discussed. Important challenges to be tacked for further development of astragaloside IV-based pharmacophores will be highlighted for future research.
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- OpenAlex
- DOI
- 10.14336/ad.2022.0126
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- 2026-06-01 MST
Cite this
APA
Zaman, Q., Zhang, D., Obireddy, S.R., Wong, W., & Lai, W. (2022). Roles and Mechanisms of Astragaloside IV in Combating Neuronal Aging. <em>Aging and Disease</em>. https://doi.org/10.14336/ad.2022.0126
Vancouver
Zaman Q, Zhang D, Obireddy SR, Wong W, Lai W. Roles and Mechanisms of Astragaloside IV in Combating Neuronal Aging. Aging and Disease. 2022. doi:10.14336/ad.2022.0126.
BibTeX
@article{qumar2022Rolesa,
title = {Roles and Mechanisms of Astragaloside IV in Combating Neuronal Aging},
author = {Qumar Zaman and Dahong Zhang and Sreekanth Reddy Obireddy and Wing‐Tak Wong and Wing‐Fu Lai},
journal = {Aging and Disease},
year = {2022},
doi = {10.14336/ad.2022.0126},
}
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