Investigation of the microalgae Phaeodactylum as food with regard to the uptake of omega-3 fatty acids and effects on various blood parameters in relation to age. Bioavailability and excretion of nutrients and their effects on fatty acid status and inflammatory markers.
Due to a multifaceted redesign of all areas of life, older people face many nutritional challenges, such as cognitive change, sarcopenia and micronutrient deficiency. In addition to age-associated diseases, cognitive decline is usually a precursor to neurodegenerative processes, such as Alzheimer's disease. The full molecular mechanisms are still unknown, but classic aging mechanisms, such as oxidative stress and subclinical inflammation, play a role. Due to the changed life situation, there is a reduced need for energy, while the need for nutrients remains, which greatly increases the risk of malnutrition in old age. This results in an increasing prevalence of sarcopenia. The decrease in muscle mass and strength leads to functional limitations in the elderly and also promotes oxidative stress. This increases the need for antioxidant nutrients such as carotenoids and vitamins. Studies show that age-related chronic subclinical inflammation, such as occurs in the context of an omega-6 fatty acid (-FS) emphasized diet, plays a central role in the pathogenesis of age-associated diseases Due to this, the microalgae PT could be a goud supplier of nutrients like omega-3 FS, especially eicosapentaenoic acid (EPA), which is otherwise found mainly in fatty fish, and Fucoxanthin, an antioxidant. The investigator study the change of omega-3, -6 and -9 FS in blood plasma, in erythrocytes, as well as the change of fucoxanthin and beta-carotene. The investigator measure blood parameters for safety and control the influence on the intestinal barrier.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
SUPPORTIVE_CARE
Masking
TRIPLE
Enrollment
20
14 days wahs-out: no fish eating 14 days: no fish eating, the participants eat vegetable bouillon (1,3g)
14 days wahs-out: no fish eating 14 days: no fish eating, the participants eat vegetable bouillon (1.3g), 2.3g Microalgae Phaeodactylum
14 days wahs-out: no fish eating 14 days: no fish eating, the participants eat vegetable bouillon (1.3g), Beta-Glucan (1.8g)
Stephan C. Bischoff, Prof. Dr
Stuttgart, Baden-Wurttemberg, Germany
RECRUITINGChange in omega-6/omega-3 ratio (plasma level basis)
fatty acid chromatographic measurement
Time frame: 14 days
Omega-3 fatty acid index
fatty acid chromatographic measurement in red blood cells
Time frame: 14 days
Uptake of fucoxanthin and beta-carotene
chromatographic measurement in plasma
Time frame: 14 days
Inflammation (CRP)
measurement in blood serum
Time frame: 14 days
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14 days wahs-out: no fish eating 14 days: no fish eating, the participants eat vegetable bouillon (1.3g), 2.3g Microalgae, Beta-Glucan (1.8g)