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Increased DNA methylation, cellular senescence and premature epigenetic aging in guinea pigs and humans with tuberculosis

Carly A. Bobak, Abhimanyu Abhimanyu, Harini Natarajan, Tanmay Gandhi, Sandra L. Grimm, Tomoki Nishiguchi, Kent J. Koster, Santiago Carrero Longlax, Qiniso Dlamini, Jacquiline Kahari, Godwin Mtetwa, Jeffrey D. Cirillo, A. James O’Malley, Jane E. Hill, Cristian Coarfa

Aging · 2022 · ▲ 46 citations

Abstract

BACKGROUND: Tuberculosis (TB) is the archetypical chronic infection, with patients having months of symptoms before diagnosis. In the two years after successful therapy, survivors of TB have a three-fold increased risk of death. METHODS: ) for 45 days, followed by RRBS DNA methylation analysis. In humans, network analysis of differentially expressed genes across three TB cohorts were visualized at the pathway-level. Serum levels of inflammation were measured by ELISA. Horvath (DNA methylation) and RNA-seq biological clocks were used to investigate shifts in chronological age among humans with TB. RESULTS: -value = 0.002). The transcriptome in TB in multiple cohorts was enriched for DNA methylation and cellular senescence(definition). Senescence associated proteins CXCL9, CXCL10, and TNF were elevated in TB patients compared to healthy controls. Humans with TB demonstrate 12.7 years (95% CI: 7.5, 21.9) and 14.38 years (95% CI: 10.23-18.53) of cellular aging as measured by epigenetic and gene expression based cellular clocks, respectively. CONCLUSIONS: In both guinea pigs and humans, TB perturbs epigenetic processes, promoting premature cellular aging and inflammation, a plausible means to explain the long-term detrimental health outcomes after TB.

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Provenance

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OpenAlex
DOI
10.18632/aging.203936
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2026-07-24 MST

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APA
Bobak, C.A., Abhimanyu, A., Natarajan, H., Gandhi, T., Grimm, S.L., Nishiguchi, T., Koster, K.J., Longlax, S.C., Dlamini, Q., Kahari, J., Mtetwa, G., Cirillo, J.D., O’Malley, A.J., Hill, J.E., Coarfa, C., &amp; DiNardo, A.R. (2022). Increased DNA methylation, cellular senescence and premature epigenetic aging in guinea pigs and humans with tuberculosis. <em>Aging</em>. https://doi.org/10.18632/aging.203936
Vancouver
Bobak CA, Abhimanyu A, Natarajan H, Gandhi T, Grimm SL, Nishiguchi T, et al. Increased DNA methylation, cellular senescence and premature epigenetic aging in guinea pigs and humans with tuberculosis. Aging. 2022. doi:10.18632/aging.203936.
BibTeX
@article{carly2022Increa, title = {Increased DNA methylation, cellular senescence and premature epigenetic aging in guinea pigs and humans with tuberculosis}, author = {Carly A. Bobak and Abhimanyu Abhimanyu and Harini Natarajan and Tanmay Gandhi and Sandra L. Grimm and Tomoki Nishiguchi and Kent J. Koster and Santiago Carrero Longlax and Qiniso Dlamini and Jacquiline Kahari and Godwin Mtetwa and Jeffrey D. Cirillo and A. James O’Malley and Jane E. Hill and Cristian Coarfa and Andrew R. DiNardo}, journal = {Aging}, year = {2022}, doi = {10.18632/aging.203936}, }

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