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PMID: 40119681 Published · ppublish English

Single-nucleus transcriptomics decodes the link between aging and lumbar disc herniation.

Protein & cell ·Vol. 16 ·No. 8 ·2025-08-07

Wang M, He Z, Wang A, Sun S, Li J, Liu F, Li C, Yang C, Lei J, Yu Y, Ma S, Wang S, Zhang W, Yu Z, Liu GH, Qu J

Abstract

Lumbar disc (LD) herniation and aging are prevalent conditions that can result in substantial morbidity. This study aimed to clarify the mechanisms connecting the LD aging and herniation, particularly focusing on cellular senescence and molecular alterations in the nucleus pulposus (NP). We performed a detailed analysis of NP samples from a diverse cohort, including individuals of varying ages and those with diagnosed LD herniation. Our methodology combined histological assessments with single-nucleus RNA sequencing to identify phenotypic and molecular changes related to NP aging and herniation. We discovered that cellular senescence and a decrease in nucleus pulposus progenitor cells (NPPCs) are central to both processes. Additionally, we found an age-related increase in NFAT1 expression that promotes NPPC senescence and contributes to both aging and herniation of LD. This research offers fresh insights into LD aging and its associated pathologies, potentially guiding the development of new therapeutic strategies to target the root causes of LD herniation and aging.

Keywords
NFAT1 aging herniation nucleus pulposus senescence single-nucleus transcriptomics
Article Info
Journal
Protein & cell
Abbr.
Protein Cell
ISSN
1674-8018
Published
2025-08-07
Language
English
Country/Region
Germany
NLM ID
101532368
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