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X-ray-mediated vitamin D synthesis.
Julia Kühn1, Gabriele I Stangl1
1Institute of Agricultural and Nutritional Sciences, Martin Luther University Halle-Wittenberg, Germany.
Ionizing X-ray irradiation can convert sterol precursors into vitamin D, offering a novel method for vitamin D synthesis. This unexpected pathway yields significant amounts of vitamin D, comparable to low-dose ultraviolet B exposure.
Area of Science:
- Biochemistry
- Radiation Chemistry
- Nutritional Science
Background:
- Vitamin D synthesis is primarily associated with ultraviolet B (UVB) light exposure.
- Precursors like 7-dehydrocholesterol and ergosterol are converted to vitamins D2 and D3 via UVB radiation.
Purpose of the Study:
- To investigate the potential of ionizing X-ray irradiation to induce vitamin D formation from its precursors.
- To compare the efficacy of X-ray irradiation with traditional UVB irradiation for vitamin D synthesis.
Main Methods:
- Crystalline and oil-dissolved 7-dehydrocholesterol and ergosterol were subjected to X-ray irradiation at a dose of 25 kGy.
- Vitamin D yields were quantified and compared to those obtained from UVB irradiation at varying doses (20 and 200 mJ/cm²).
- The effect of X-ray irradiation was also assessed in complex matrices like mushrooms, yeast, and rodent feed.
Main Results:
- X-ray irradiation at 25 kGy produced significant amounts of vitamin D3 (94 μg/g) and D2 (74 μg/g) from crystalline precursors.
- When precursors were dissolved in oil, X-ray exposure yielded 70 ng/g vitamin D3 and 45 ng/g vitamin D2.
- Vitamin D yields from X-ray irradiation were comparable to those achieved with 20 mJ/cm² UVB, though high-dose UVB produced substantially more.
Conclusions:
- Ionizing X-ray irradiation represents a novel and unrecognized pathway for generating vitamin D.
- This finding opens new avenues for vitamin D production and fortification, particularly in food and feed applications.
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