Document Type
Article
Publication Date
6-3-2026
Abstract
During skeletal growth, it is thought that the lactate secreted by the glycolytic nucleus pulposus (NP) cells exits the intervertebral disc into circulation via endplates. Our current studies challenge this long-held notion. Mice with early postnatal, endplate, and annulus fibrosus-specific deletion of lactate importer, MCT1, exhibited disc degeneration characterized by NP cell loss and pronounced endplate structural changes. Using metabolic and transcriptomic approaches, we demonstrate that MCT1 loss inhibits endplate chondrocyte differentiation and that lactate serves both as a crucial TCA metabolite and promotes protein and histone lactylation and gene expression. These findings suggest that during skeletal growth, NP-derived lactate in part supports endplate cartilage differentiation into the vascularized subchondral bone, which, when absent, limits nutrient exchange and availability to the other disc compartments, affecting their homeostasis. This study provides the first in vivo evidence that loss of MCT1 mediated lactate uptake in endplate cells causes delayed maturation and intervertebral disc degeneration.
Recommended Citation
Tsingas, Maria; Tsingas, Konstantinos; Smyers, Mei; Zhang, Wujuan; Goldman, Aaron R.; Lawrence, Eulisa; Collins, John A.; and Risbud, Makarand V., "Loss of MCT1 Mediated Lactate Uptake Causes Delayed Endplate Maturation and Intervertebral Disc Degeneration" (2026). Department of Orthopaedic Surgery Faculty Papers. Paper 274.
https://jdc.jefferson.edu/orthofp/274
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Original Western Blots.pdf (26007 kB)
Supplementary Table.xlsx (5537 kB)
PubMed ID
42236482
Language
English

Comments
This article is the author’s final published version in Cell Death and Disease, Volume 17, Issue 1, 2026, Article number 698.
The published version is available at https://doi.org/10.1038/s41419-026-08942-4. Copyright © The Author(s) 2026.