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Vascular Senescence: A Potential Bridge Between Physiological Aging and Neurogenic Decline
Sara Rojas-Vázquez, Laura Blasco-Chamarro, Irene López-Fabuel, Ramón Martínez‐Máñez, Isabel Fariñas
Frontiers in Neuroscience · 2021 · ▲ 13 citations
Cellular senescence
Stem-cell exhaustion
Altered intercellular communication
Chronic inflammation
Plasma dilution / young plasma
Review
Abstract
The adult mammalian brain contains distinct neurogenic niches harboring populations of neural stem cells (NSCs) with the capacity to sustain the generation of specific subtypes of neurons during the lifetime. However, their ability to produce new progeny declines with age. The microenvironment of these specialized niches provides multiple cellular and molecular signals that condition NSC behavior and potential. Among the different niche components, vasculature has gained increasing interest over the years due to its undeniable role in NSC regulation and its therapeutic potential for neurogenesis enhancement. NSCs are uniquely positioned to receive both locally secreted factors and adhesion-mediated signals derived from vascular elements. Furthermore, studies of parabiosis indicate that NSCs are also exposed to blood-borne factors, sensing and responding to the systemic circulation. Both structural and functional alterations occur in vasculature with age at the cellular level that can affect the proper extrinsic regulation of NSCs. Additionally, blood exchange experiments in heterochronic parabionts have revealed that age-associated changes in blood composition also contribute to adult neurogenesis impairment in the elderly. Although the mechanisms of vascular- or blood-derived signaling in aging are still not fully understood, a general feature of organismal aging is the accumulation of senescent cells, which act as sources of inflammatory and other detrimental signals that can negatively impact on neighboring cells. This review focuses on the interactions between vascular senescence(definition), circulating pro-senescence factors and the decrease in NSC potential during aging. Understanding the mechanisms of NSC dynamics in the aging brain could lead to new therapeutic approaches, potentially include senolysis, to target age-dependent brain decline.
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- DOI
- 10.3389/fnins.2021.666881
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- 2026-08-06 MST
Cite this
APA
Rojas-Vázquez, S., Blasco-Chamarro, L., López-Fabuel, I., Martínez‐Máñez, R., & Fariñas, I. (2021). Vascular Senescence: A Potential Bridge Between Physiological Aging and Neurogenic Decline. <em>Frontiers in Neuroscience</em>. https://doi.org/10.3389/fnins.2021.666881
Vancouver
Rojas-Vázquez S, Blasco-Chamarro L, López-Fabuel I, Martínez‐Máñez R, Fariñas I. Vascular Senescence: A Potential Bridge Between Physiological Aging and Neurogenic Decline. Frontiers in Neuroscience. 2021. doi:10.3389/fnins.2021.666881.
BibTeX
@article{sara2021Vascul,
title = {Vascular Senescence: A Potential Bridge Between Physiological Aging and Neurogenic Decline},
author = {Sara Rojas-Vázquez and Laura Blasco-Chamarro and Irene López-Fabuel and Ramón Martínez‐Máñez and Isabel Fariñas},
journal = {Frontiers in Neuroscience},
year = {2021},
doi = {10.3389/fnins.2021.666881},
}
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