Understanding the Aging Hypothalamus, One Cell at a Time
Overview
Affiliations
The hypothalamus is a brain region that integrates signals from the periphery and the environment to maintain organismal homeostasis. To do so, specialized hypothalamic neuropeptidergic neurons control a range of processes, such as sleep, feeding, the stress response, and hormone release. These processes are altered with age, which can affect longevity and contribute to disease status. Technological advances, such as single-cell RNA sequencing, are upending assumptions about the transcriptional identity of cell types in the hypothalamus and revealing how distinct cell types change with age. In this review, we summarize current knowledge about the contribution of hypothalamic functions to aging. We highlight recent single-cell studies interrogating distinct cell types of the mouse hypothalamus and suggest ways in which single-cell 'omics technologies can be used to further understand the aging hypothalamus and its role in longevity.
Interaction of GPER-1 with the endocrine signaling axis in breast cancer.
Molina Calistro L, Arancibia Y, Olivera M, Domke S, Torres R Front Endocrinol (Lausanne). 2025; 16:1494411.
PMID: 39936103 PMC: 11811623. DOI: 10.3389/fendo.2025.1494411.
Single-cell and spatial omics: exploring hypothalamic heterogeneity.
Junaid M, Lee E, Lim S Neural Regen Res. 2024; 20(6):1525-1540.
PMID: 38993130 PMC: 11688568. DOI: 10.4103/NRR.NRR-D-24-00231.
Hypertension: Causes and Consequences of Circadian Rhythms in Blood Pressure.
Faraci F, Scheer F Circ Res. 2024; 134(6):810-832.
PMID: 38484034 PMC: 10947115. DOI: 10.1161/CIRCRESAHA.124.323515.
CellBiAge: Improved single-cell age classification using data binarization.
Yu D, Li M, Linghu G, Hu Y, Hajdarovic K, Wang A Cell Rep. 2023; 42(12):113500.
PMID: 38032797 PMC: 10791072. DOI: 10.1016/j.celrep.2023.113500.
Yang L, Lu P, Qi X, Yang Q, Liu L, Dou T iScience. 2023; 26(10):108082.
PMID: 37860765 PMC: 10582490. DOI: 10.1016/j.isci.2023.108082.