Possible Anti-Aging and Anti-Stress Effects of Long-Term Transcendental Meditation Practice: Differences in Gene Expression, EEG Correlates of Cognitive Function, and Hair Steroids.
Supaya Wenuganen, Kenneth G Walton, Frederick T Travis, Tobias Stalder, R Keith Wallace, Meera Srivastava, John Fagan
Biomolecules February 20, 2025 DOI: 10.3390/biom15030317 via PubMed
Summary
AI-generated from the abstractLong-term Transcendental Meditation practice is associated with reduced biomarkers of chronic stress and biological aging. In a comparison of older long-term meditators (average 40 years of practice) with age-matched non-meditators, 7 of 13 genes that were more highly expressed in older controls showed lower expression in the older meditators. Older meditators also scored higher on a brain integration scale and had shorter event-related potential latencies—indicating faster cognitive processing—than age-matched controls, with latencies no longer than those of young non-meditators. Hair cortisol levels were lower in meditators than in matched controls, suggesting lower cumulative stress exposure.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Sample size | 89 |
| Population | Long-term Transcendental Meditation practitioners and non-meditator controls |
| Intervention | Transcendental Meditation |
| Topics | Meditation |
| Keywords | Allostatic load Cognitive function Cortisol Human gene expression |
| Citations | 2 |
| Key finding | Long-term TM practitioners show lower expression of aging-related genes, better cognitive function markers, and lower hair cortisol levels compared to age-matched non-meditators. |
Abstract
Background: Our previous comparison of peripheral blood mononuclear cells (PBMCs) from long-term Transcendental Meditation® (TM®) practitioners and matched non-practitioner controls found 200 differentially expressed (DE) genes. Bioinformatics analyses of these DE genes suggested a reduced risk of diseases associated with stress and aging in the TM group. Here we assessed additional signs of reduced stress and aging. Methods: A sample of 15 of the 200 DE genes was studied using qPCR in PBMCs from 40-year TM practitioners ("Old TM", n = 23) compared to a "Young Control" group (n = 19) and an "Old Control" group (n = 21) of non-meditators. In these three groups, plus a "Young TM", 12-year practitioner group (n = 26), we also studied EEG-based parameters of cognitive function (the Brain Integration Scale (BIS), and latency of three components of the event-related potential (ERP)). Finally, using LC/MS/MS, we compared persistent levels of cortisol (F) and its inactive congener, cortisone (E), in hair. Results: qPCR analysis showed that 13 of the 15 genes were more highly expressed in Old Controls than in Young Controls. In the Old TM group, 7 of these 13 were lower than in Old Controls. Both TM groups had higher BIS scores than their age-matched controls. The Old TM group had shorter N2, P3a, and P3b latencies than the Old Control group, and latencies in the Old TM group were not longer than in the Young Control group. The Hair F/Hair E ratio was higher in the control subgroups than in their age-matched TM subgroups, and Hair F was higher in the Young Control and combined control groups than in the Young TM and combined TM groups. Conclusions: These results are consistent with reductions in biomarkers of chronic stress and biological age in long-term TM meditators. They are also consistent with results from the previous study suggesting that TM practice lowers energy consumption or leads to more efficient energy metabolism.