4.7 Article

Cross-species Association Between Telomere Length and Glucocorticoid Exposure

期刊

JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM
卷 106, 期 12, 页码 E5124-E5135

出版社

ENDOCRINE SOC
DOI: 10.1210/clinem/dgab519

关键词

telomere length; stress; cortisol; glucocorticoids; allostatic load; cellular aging; Cushing syndrome

资金

  1. Baker Foundation
  2. Rales Family Foundation
  3. NIAAA [U01 AA020890]

向作者/读者索取更多资源

Chronic exposure to glucocorticoids or stress is associated with shortened telomeres, as observed in animal models and clinical studies. This shortening may be partially reversible and correlates with high levels of cortisol and disease severity.
Context: Chronic exposure to glucocorticoids (GCs) or stress increases the risk of medical disorders, including cardiovascular and neuropsychiatric disorders. GCs contribute to accelerated aging; however, while the link between chronic GC exposure and disease onset is well established, the underpinning mechanisms are not clear. Objective: We explored the potential nexus between GCs or stress exposure and telomere length. Methods: In addition to rats exposed to 3 weeks of chronic stress, an iatrogenic mouse model of Cushing syndrome (CS), and a mouse neuronal cell line, we studied 32 patients with CS and age-matched controls and another cohort of 75 healthy humans. Results: (1) Exposure to stress in rats was associated with a 54.5% (P = 0.036) reduction in telomere length in T cells. Genomic DNA (gDNA) extracted from the dentate gyrus of stressed and unstressed rats showed 43.2% reduction in telomere length (P = 0.006). (2) Mice exposed to corticosterone had a 61.4% reduction in telomere length in blood gDNA (P = 5.75 x 10-5) and 58.8% reduction in telomere length in the dentate gyrus (P = 0.002). (3) We observed a 40.8% reduction in the telomere length in patients with active CS compared to healthy controls (P = 0.006). There was a 17.8% reduction in telomere length in cured CS patients, which was not different from that of healthy controls (P = 0.08). For both cured and active CS, telomere length correlated significantly with duration of hypercortisolism (R-2 = 0.22, P = 0.007). (4) There was a 27.6% reduction in telomere length between low and high tertiles in bedtime cortisol levels of healthy participants (P = 0.019). Conclusion: Our findings demonstrate that exposure to stress and/or GCs is associated with shortened telomeres, which may be partially reversible.

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