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Cross-species metabolomic analysis identifies uridine as a potent regeneration promoting factor

Zunpeng Liu, Wei Li, Lingling Geng, Liang Sun, Qiaoran Wang, Yang Yu, Pengze Yan, Chuqian Liang, Jie Ren, Moshi Song, Qian Zhao, Jinghui Lei, Yusheng Cai, Jiaming Li, Kaowen Yan

Cell Discovery · 2022 · ▲ 127 citations

Abstract

Regenerative capacity declines throughout evolution and with age. In this study, we asked whether metabolic programs underlying regenerative capability might be conserved across species, and if so, whether such metabolic drivers might be harnessed to promote tissue repair. To this end, we conducted metabolomic analyses in two vertebrate organ regeneration models: the axolotl limb blastema and antler stem cells. To further reveal why young individuals have higher regenerative capacity than the elderly, we also constructed metabolic profiles for primate juvenile and aged tissues, as well as young and aged human stem cells. In joint analyses, we uncovered that active pyrimidine metabolism and fatty acid metabolism correlated with higher regenerative capacity. Furthermore, we identified a set of regeneration-related metabolite effectors conserved across species. One such metabolite is uridine, a pyrimidine nucleoside, which can rejuvenate aged human stem cells and promote regeneration of various tissues in vivo. These observations will open new avenues for metabolic intervention in tissue repair and regeneration.

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Provenance

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OpenAlex
DOI
10.1038/s41421-021-00361-3
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2026-06-11 MST

Cite this

APA
Liu, Z., Li, W., Geng, L., Sun, L., Wang, Q., Yu, Y., Yan, P., Liang, C., Ren, J., Song, M., Zhao, Q., Lei, J., Cai, Y., Li, J., Yan, K., Wu, Z., Chu, Q., Li, J., Wang, S., &amp; Li, C. (2022). Cross-species metabolomic analysis identifies uridine as a potent regeneration promoting factor. <em>Cell Discovery</em>. https://doi.org/10.1038/s41421-021-00361-3
Vancouver
Liu Z, Li W, Geng L, Sun L, Wang Q, Yu Y, et al. Cross-species metabolomic analysis identifies uridine as a potent regeneration promoting factor. Cell Discovery. 2022. doi:10.1038/s41421-021-00361-3.
BibTeX
@article{zunpeng2022Crosss, title = {Cross-species metabolomic analysis identifies uridine as a potent regeneration promoting factor}, author = {Zunpeng Liu and Wei Li and Lingling Geng and Liang Sun and Qiaoran Wang and Yang Yu and Pengze Yan and Chuqian Liang and Jie Ren and Moshi Song and Qian Zhao and Jinghui Lei and Yusheng Cai and Jiaming Li and Kaowen Yan and Zeming Wu and Qun Chu and Jingyi Li and Si Wang and Chunyi Li and Jing‐Dong J. Han and Reyna Hernández‐Benítez and Ng Shyh‐Chang and Juan Carlos Izpisúa Belmonte and Weiqi Zhang}, journal = {Cell Discovery}, year = {2022}, doi = {10.1038/s41421-021-00361-3}, }

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