Effect of cognitive training on cortisol levels in patients with neurocognitive disorders

J Gerontol B Psychol Sci Soc Sci. 2026 Jan 12;81(2):gbaf243. doi: 10.1093/geronb/gbaf243.

Abstract

Objectives: Elevated cortisol levels are linked to a greater risk and faster progression of neurocognitive disorders (NCDs). While interventions such as exercise and mindfulness have shown benefits in reducing cortisol, the impact of cognitive training (CT) on cortisol regulation remains unexplored. This study investigated whether CT affects cortisol levels and secretion patterns in individuals with minor or major NCD and compared its effects with those of pharmacological treatment.

Methods: Sixty-two older adults with NCD and 43 healthy controls were recruited from the University Hospital of Padua in Italy. Among patients with NCD, 34 underwent CT (CT-NCD group), and 28 received pharmacological treatment (PH-NCD group). Salivary cortisol was measured at six points during the day, at baseline, and at 3 months (T1) and 6 months (T2) post-intervention.

Results: Compared with pharmacological treatment (PH), CT showed a larger percentage decrease of daily cortisol exposure area under the curve (AUC) from baseline; however, the between-group difference did not remain statistically significant after covariate adjustment, and the only robust time-point effect was in the afternoon (F(1,47)=5.13; p = .028). Morning values decreased within groups, but between-group differences in the CAR were not significant; at bedtime, CT showed only a trend towards lower cortisol than PH (p = .071). Median morning values changed from 7.75 to 6.20 in CT and from 5.80 to 5.15 in PH.

Discussion: Cognitive training may help lower cortisol levels and enhance cognitive function in NCD patients, suggesting its potential as a nonpharmacological tool to modulate hypothalamic-pituitary-adrenal axis activity. Larger randomized studies are needed to confirm and extend these findings.

Keywords: Alzheimer’s disease; Cognitive stimulation; Mild cognitive impairment.

MeSH terms

  • Aged
  • Cognitive Training*
  • Female
  • Humans
  • Hydrocortisone* / analysis
  • Hydrocortisone* / metabolism
  • Male
  • Neurocognitive Disorders* / metabolism
  • Neurocognitive Disorders* / therapy
  • Saliva / chemistry

Substances

  • Hydrocortisone