Hemp seed oil doubles survival in radiation-exposed mice

Hemp seed oil mediates injury mitigation and anti-inflammation in radiated splenic T cells.

Phytomedicine : international journal of phytotherapy and phytopharmacology • • Moderately Relevant
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AI Summary

Hemp seed oil demonstrates remarkable radioprotective properties, increasing survival rates to over 50% in mice exposed to lethal radiation—a significant finding for potential use in medical emergencies involving radiation exposure. The study used advanced techniques including single-cell RNA sequencing and network pharmacology to understand how hemp seed oil works at the cellular level. The oil protected critical immune cells called T cells in the spleen, reducing oxidative stress, apoptosis (cell death), and harmful inflammation that typically result from radiation damage.

The research revealed that hemp seed oil's protective effects operate through multiple mechanisms. The oil enhanced the expression of inflammation-suppressing genes and importantly promoted the differentiation of immune cells toward Treg cells, a type of immune cell that helps prevent excessive inflammation. Additionally, signals from supportive cells called fibroblasts played a role through upregulation of a protein called Itgb8, suggesting a coordinated cellular response. Phytochemical analysis identified 10 bioactive compounds in hemp seed oil, which appear to work together through multiple pathways rather than a single mechanism—a finding that explains why whole hemp seed oil may be more effective than isolated components.

These findings position hemp seed oil as a promising candidate for radioprotective medications, with potential applications beyond emergency medicine into regular clinical practice. The study bridges traditional plant science with modern molecular biology, demonstrating that hemp seed oil's benefits extend far beyond nutritional supplementation into serious medical treatment territory. Future research may unlock how these specific bioactive compounds can be optimized for human patients facing radiation therapy or accidental radiation exposure."

📄 Original Abstract

Exposure to acute radiation results in hematopoietic damage, immune defects, and organ injury, ultimately leading to severe lethality. However, few drugs or compounds have been reported to effectively mitigate the injuries induced by high-dose ionizing radiation. To elucidate the radioprotective mechanisms of hemp seed oil against acute radiation, lethal radiation was applied to evaluate the radio-protective function. The survival rates of mice were recorded, and the immune populations, particularly T cells, in the spleen were analyzed using flow cytometry. The expression of inflammation-related cytokines was detected for proving the anti-inflammatory function of hemp seed oil. Single-cell RNA sequencing was employed to explore the mechanisms underlying the radio-protective effects of hemp seed oil. In addition, we integrated HPLC-based phytochemical profiling with network pharmacology to identify bioactive constituents and characterize their molecular targets and signaling pathways. Hemp seed oil exhibited outstanding radio-protecting function, raising the survival ratio to above 50 % in mice exposed to lethal irradiation. Additionally, hemp seed oil preserved the immune populations, especially T cells, in the spleen. Single-cell RNA sequencing demonstrated that hemp seed oil alleviated oxidative stress, apoptosis, and inflammation-related features in T cells. Treatment with hemp seed oil enhanced the expression of inflammation-suppressing genes and promoted the differentiation of naïve CD4 T cells towards Treg cells. Further analyses indicated that the enhanced differentiation of Treg cells induced by hemp seed oil might be contributed by signals from fibroblasts through upregulated Itgb8. Meanwhile, HPLC analysis characterized 10 bioactive compounds in hemp seed oil. Integrating network pharmacology with in silico molecular docking revealed statistically significant correlations between these phytochemicals and key pathways regulating immune response and inflammatory processes, suggesting multitargeted immunomodulatory effects. This research demonstrated a strong role of hemp seed oil in increasing survival rates and protecting splenic lymphocytes in mice facing acute irradiation. These findings offer a promising alternative for radioprotective medications and provide insights into the mechanisms underlying the radio-protective effects of hemp seed oil.

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