ETH Zurich
Zurich, 8092, Switzerland
NCT Number: NCT03325270
Rationale:
According to the WHO, iron deficiency is still the most common and widespread nutritional disorder in the world. Current iron supplements have limitations in terms of bioavailability and tolerability. Prebiotic fibers, such as galacto-oligosaccharides (GOS), selectively enhance growth of beneficial colonic bacteria. Prebiotics in general enhance the production of short-chain fatty acids (SCFAs) and thereby decrease luminal pH. Through the reduction in colonic pH, prebiotics can enhance absorption of minerals such as calcium and magnesium and they have been proposed to potentially improve iron absorption as well.
The primary objective of this study is to investigate the effect of an addition of GOS to an iron supplement on iron absorption in iron deplete, healthy, normal weight women.
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Notify Me18 year–45 year
Female
Interventional
Not applicable
Zurich, 8092, Switzerland
Iron deficiency is still the most common and widespread nutritional disorder in the world according to WHO. It does not only affect large numbers of women and children in the developing world, but also in industrialized countries. The current estimation is that 2 billion people, or around 30% of the world's population, are anemic, of which around 50% is caused by iron deficiency. In industrialized countries, ID remains a public health concern in young women, affecting 16% of females between the ages of 12-49y in the United states.
Iron supplementation has been recommended by the WHO as an approach to improve iron status in varying age and risk groups. Iron supplementation can be practical for high-risk groups such as pregnant women and has been proven effective for increasing hemoglobin levels in women. However, iron absorption from supplements is generally low and epigastric side effects reduce compliance. With the high global burden of iron deficiency and anemia, improved products which allow better absorption and reduce side effects are urgently needed.
Targeted iron supplementation in high risk groups is the preferred way to treat iron deficiency. However, the recommendation is to consume iron supplements away from food in order to increase bioavailability which often causes nausea and epigastric pain and thus reduces compliance. Taken together with food, bioavailability of most supplements is reduced by about two thirds. Thus, a lot of unabsorbed iron passes into the colon where it can increase the abundance of enteropathogens.
Prebiotic fibers, such as galacto-oligosaccharides (GOS), selectively enhance growth of beneficial colonic bacteria. GOS are enzymatically produced from lactose and are a mixture of glucose- and galactose- based di- and oligosaccharides of varying structure and seem to have an increased selectivity towards Bifidobacterium spp compared to other prebiotics. Prebiotics in general enhance the production of short-chain fatty acids (SCFAs) and thereby decrease luminal pH, which may reduce growth of enteropathogens. Through the reduction in colonic pH, prebiotics can enhance absorption of minerals such as calcium and magnesium and they have been proposed to potentially improve iron absorption, by reducing ferric to ferrous iron in the colon. Even though colonic absorption is minimal compared to absorption in the duodenum in healthy humans, it may become more important in iron deficiency or anemia as demonstrated in animal studies.
The primary objective of this study is to investigate the effect of an addition of GOS to an iron supplement on iron absorption in iron deplete, healthy, normal weight women.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
labeled iron as Ferrous Fumarate
labeled iron as Ferrous Fumarate + galacto-oligosaccharides
labeled iron as Ferrous Sulfate + galacto-oligosaccharides
Time frame: 2 months
Fractional iron absorption will be calculated based on the shift of the iron isotope ratios in the collected blood samples after the administration of several isotopically labelled iron supplements (days 0, 2 16, 18, 20, 37, 39, 41).Fractional iron absorption will be measured as erythrocyte incorporation of the naturally occurring iron forms with different masses used to label the iron supplements.
Swiss Federal Institute of Technology
Other
Acronym: Fe_GOS_1
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