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An Encapsulated Fruit and Vegetable Juice Concentrate Increases Skin Microcirculation in Healthy Women

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<i>Background/Aim:</i> Microcirculation in the dermis of the skin is important for nutrient delivery to this tissue. In this study, the effects of a micronutrient concentrate (Juice Plus+®; ‘active group’), composed primarily of fruit and vegetable juice powder, on skin microcirculation and structure were compared to placebo. <i>Study Design/Methods:</i> This 12-week study had a monocentric, double-blind placebo and randomized controlled design with two treatment groups consisting of 26 healthy middle-aged women each. The ‘oxygen to see’ device was used to evaluate microcirculation. Skin density and thickness were measured using ultrasound. Measurements for skin hydration (Corneometer®), transepidermal water loss and serum analysis for carotenoids and α-tocopherol were also performed. <i>Results:</i> By 12 weeks, microcirculation of the superficial plexus increased by 39%. Furthermore, skin hydration increased by 9% while skin thickness increased by 6% and skin density by 16% in the active group. In the placebo group, microcirculation decreased, and a slight increase in skin density was observed. <i>Conclusion:</i> Ingestion of a fruit- and vegetable-based concentrate increases microcirculation of the skin at 12 weeks of intervention and positively affects skin hydration, density and thickness.
Title: An Encapsulated Fruit and Vegetable Juice Concentrate Increases Skin Microcirculation in Healthy Women
Description:
<i>Background/Aim:</i> Microcirculation in the dermis of the skin is important for nutrient delivery to this tissue.
In this study, the effects of a micronutrient concentrate (Juice Plus+®; ‘active group’), composed primarily of fruit and vegetable juice powder, on skin microcirculation and structure were compared to placebo.
<i>Study Design/Methods:</i> This 12-week study had a monocentric, double-blind placebo and randomized controlled design with two treatment groups consisting of 26 healthy middle-aged women each.
The ‘oxygen to see’ device was used to evaluate microcirculation.
Skin density and thickness were measured using ultrasound.
Measurements for skin hydration (Corneometer®), transepidermal water loss and serum analysis for carotenoids and α-tocopherol were also performed.
<i>Results:</i> By 12 weeks, microcirculation of the superficial plexus increased by 39%.
Furthermore, skin hydration increased by 9% while skin thickness increased by 6% and skin density by 16% in the active group.
In the placebo group, microcirculation decreased, and a slight increase in skin density was observed.
<i>Conclusion:</i> Ingestion of a fruit- and vegetable-based concentrate increases microcirculation of the skin at 12 weeks of intervention and positively affects skin hydration, density and thickness.

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