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September 28, 2025The Scientific Journal of Cosmointel1 citationsOpen Access

T-Consciousness Fields Inhibit Apoptosis and Promote ATP Production in HEK-293 Cells Under Microgravity Stress

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MTMohammad Ali TaheriSTSara TorabiZHZahra Hajebrahimi

Key Points

  • TCFs treatment prevents apoptosis in HEK-293 cells under microgravity, indicating a protective effect against cell death.
  • Cells exposed to TCFs had doubled ATP levels under microgravity, whereas untreated cells showed a dramatic reduction in ATP.
  • Assessment utilized flow cytometry to analyze cell cycle phases and luciferase activity to measure ATP concentration.
  • These results suggest that TCFs could modify cellular behavior, adapting to different gravitational environments, which warrants further investigation.

Abstract

T-Consciousness Fields (TCFs) are introduced as non-physical entities, with their effects initiated through the human mind. It is hypothesized that information transmitted via TCFs may influence the behavior of studied subjects. The present experiment aimed to investigate the effects of TCFs on cell cycle progression and ATP production in the HEK-293 cell line under both microgravity (MG) and Earth gravity (1G) conditions. To achieve this, cultured cells were exposed to TCFs for 24 hours following an initial 24-hour incubation period, under either microgravity (MG) conditions, simulated by clinostat rotation, or a standard Earth gravity (1G) environment. Untreated cells served as the control group. Flow cytometry was used to assess the distribution of cells across different phases of the cell cycle, and ATP concentration was measured by evaluating luciferase enzyme activity. The results showed a significant increase in the sub-G1 phase under microgravity (MG) conditions (p < 0.05), indicating elevated apoptosis. In contrast, TCFs-treated samples maintained sub-G1 levels comparable to those under Earth gravity (1G). Additionally, TCFs treatment significantly increased the S phase under MG (p < 0.05) and the G2 phase under 1G (p < 0.05). ATP concentrations were markedly reduced under MG in both treated and untreated samples compared to 1G (p < 0.05). However, in the clinostat environment, ATP levels in TCFs-treated samples were approximately twice as high as those in untreated controls (p < 0.05), whereas no significant difference was observed under 1G conditions. These findings suggest that the reduced sub-G1 phase in TCFs-treated samples under MG reflects apoptosis inhibition, while increased ATP levels and prolonged S phase indicate enhanced cellular efficiency under stress. The distinct outcomes under MG and 1G imply that the information transmitted by TCFs may vary depending on environmental conditions. Further studies are needed to elucidate the underlying mechanisms of TCF action.

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Cite This Study

Taheri et al. (2025) studied this question.

synapsesocial.com/papers/68d913ab4ddcf71ba560be90https://doi.org/10.61450/joci.v4i18.219
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Differential Effects of the Faradarmani Consciousness Field on Cell Cycle Progression of Lymphoma Raji Cells Under Clinostat-Simulated Microgravity and Earth Gravity Conditions2025
  2. 2Editorial: Behavior of Normal and Cancerous Human Cell Lines Exposed to T-Consciousness Fields during Stress Conditions2025
  3. 3Morphological Changes of 3T3 Cells under Simulated Microgravity2024 · 8 citations
  4. 4Extracellular ATP Functions as a Metabolic Lineage Selection Signal That Stabilizes Tc9 Cells During Adoptive T Cell Therapy2026
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