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Single-cell analysis of the aging female mouse hypothalamus
Kaitlyn H. Hajdarovic, Doudou Yu, Lexi-Amber Hassell, Shane A. Evans, Sarah Packer, Nicola Neretti, Ashley E. Webb
Nature Aging · 2022 · ▲ 115 citations
Abstract
Abstract Alterations in metabolism, sleep patterns, body composition and hormone status are all key features of aging. While the hypothalamus is a well-conserved brain region that controls these homeostatic and survival-related behaviors, little is known about the intrinsic features of hypothalamic aging. Here, we perform single-nuclei RNA sequencing of 40,064 hypothalamic nuclei from young and aged female mice. We identify cell type-specific signatures of aging in neuronal subtypes as well as astrocytes and microglia. We uncover changes in cell types critical for metabolic regulation and body composition and in an area of the hypothalamus linked to cognition. Our analysis also reveals an unexpected female-specific feature of hypothalamic aging: the master regulator of X inactivation, Xist , is elevated with age, particularly in hypothalamic neurons. Moreover, using machine learning, we show that levels of X chromosome genes and Xist itself, can accurately predict cellular age. This study identifies critical cell-specific changes of the aging hypothalamus in mammals and uncovers a potential marker of neuronal aging in females.
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- DOI
- 10.1038/s43587-022-00246-4
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- 2026-07-07 MST
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APA
Hajdarovic, K.H., Yu, D., Hassell, L., Evans, S.A., Packer, S., Neretti, N., & Webb, A.E. (2022). Single-cell analysis of the aging female mouse hypothalamus. <em>Nature Aging</em>. https://doi.org/10.1038/s43587-022-00246-4
Vancouver
Hajdarovic KH, Yu D, Hassell L, Evans SA, Packer S, Neretti N, et al. Single-cell analysis of the aging female mouse hypothalamus. Nature Aging. 2022. doi:10.1038/s43587-022-00246-4.
BibTeX
@article{kaitlyn2022Single,
title = {Single-cell analysis of the aging female mouse hypothalamus},
author = {Kaitlyn H. Hajdarovic and Doudou Yu and Lexi-Amber Hassell and Shane A. Evans and Sarah Packer and Nicola Neretti and Ashley E. Webb},
journal = {Nature Aging},
year = {2022},
doi = {10.1038/s43587-022-00246-4},
}
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