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Zinc deficiency contributes to blunted myogenesis in chronic kidney disease

Research output: Contribution to journalArticlepeer-review

Abstract

Frailty in patients with chronic kidney disease (CKD) greatly exacerbates disease comorbidities and increases probability of death. Prior research underscores molecular alterations in skeletal muscle physiology that may underly frailty and poor intervention response in this patient population. CKD can negatively affect satellite cell abundance and function, reducing skeletal muscle injury resilience and adaptive capacity. Pathogenic drivers of compromised satellite cell abundance and activity in patients with CKD remain largely unknown. To address this gap in knowledge, we isolated primary myogenic progenitor cells (MPCs) from patients with CKD and control participants. We also sought to define cell-extrinsic and cell-intrinsic processes that may underlie myogenic deficits. We performed RNA sequencing on MPCs from control participants cultured in control serum, MPCs from control participants cultured in CKD serum, and MPCs from participants with CKD cultured in control serum. We identified zinc mishandling as a shared pathway between control cells treated with CKD serum and CKD cells treated with control serum. Consistent with these observations, we found zinc deficiency and attenuated myogenesis in MPCs from patients with CKD. Finally, we showed that zinc supplementation partially restores the myogenic capacity of MPCs from patients with CKD. Together, these data highlight the importance of zinc metabolism in myogenesis and identify a novel mechanism whereby CKD pathogenesis impedes MPC differentiation.

Original languageEnglish
Pages (from-to)C119-C128
JournalAmerican Journal of Physiology - Cell Physiology
Volume330
Issue number1
DOIs
StatePublished - Jan 2026

Bibliographical note

Publisher Copyright:
Copyright © 2026 The Authors.

Funding

This research was supported by NIH grants DK099438 (to M.K.A.), DK116023 (to M.K.A.), AR077042 (to M.K.A.), and AR072061 (to C.S.F.), and by Einstein-Montefiore and University of Kentucky NIH CTSA Grants UL1TR001998, UL1TR002556, and UM1TR004400 from the National Center for Research Resources.

FundersFunder number
National Center for Research Resources
University of KentuckyUL1TR002556, UM1TR004400, UL1TR001998
National Institutes of Health (NIH)AR072061, DK099438, AR077042, DK116023

    Keywords

    • CKD
    • metallothioneins
    • myogenic progenitor cells
    • satellite cells
    • skeletal muscle

    ASJC Scopus subject areas

    • Physiology
    • Cell Biology

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