Efficacy of Natural β-Carotene Chewable Tablets Derived from Banana ( Musa AA) Pulp in Reducing UV-Induced Skin Erythema.
3 Small study in people
- Type of study
- controlled trial
- Studied in
- people
- Participants
- not stated in the abstract
- Published
- 2025 in Nutrients
- Cited
- 2 times by other research
- Who paid
- Not declared. PubMed carries no conflict-of-interest statement for most articles; that is not the same as independent.
- Source
- PubMed 39796498 · doi 10.3390/nu17010065
BACKGROUND/OBJECTIVES: UV radiation is a primary cause of skin damage and photoaging. β-carotene, a potent antioxidant, aids in mitigating UV-induced oxidative stress and enhancing skin photoprotection. This research aimed to evaluate the efficacy of a nutraceutical product designed to prevent photoaging. METHODS: The product consists of a blend of hemp seed oil and banana ( Musa AA), formulated as a chewable tablet. Healthy male participants aged 35-50 years were enrolled in a randomized, parallel, single-blind, placebo-controlled clinical trial. Participants received either the chewable nutraceutical (five tablets after meals in the morning and evening, equivalent to 8 ± 2 mg/day of β-carotene and 400 mg/day of PUFA) or a chewable placebo for 16 weeks. A total of thirty-six participants successfully completed the entire 16-week study. RESULTS: Administration of the nutraceutical resulted in a significant reduction ( p < 0.05) in UV solar light stimulator-induced erythema on the dorsal skin at week 4, with a mean value of 3.76 ± 0.46 AU, compared to the initial value of 4.88 ± 0.62 AU at week 0. Additionally, serum β-carotene concentration significantly increased from 0.45 ± 0.02 µg/mL at week 0 to 0.61 ± 0.06 µg/mL at week 16 ( p < 0.05). Moreover, skin intensity in the sun-exposed arm area also significantly improved at week 16, increasing from 71.33 ± 3.50 at week 0 to 81.80 ± 4.45 ( p < 0.05). CONCLUSIONS: The results indicate that the developed nutraceutical may offer effective protection against erythema, making it a promising option for preventing photoaging.