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Zinc metabolism describes the absorption, transport, storage, and excretion of zinc in the human body. Zinc is an essential trace element that regulates numerous vital functions.
Zinc metabolism describes the absorption, transport, storage, and excretion of zinc in the human body. Zinc is an essential trace element that regulates numerous vital functions.
Zinc metabolism encompasses all biochemical processes by which the body absorbs, transports, stores in tissues, and excretes the essential trace element zinc (Zn). Zinc is involved in more than 300 enzymatic reactions and plays a central role in immune function, cell division, wound healing, protein synthesis, and growth and development.
Zinc is primarily absorbed in the small intestine – particularly in the jejunum – from dietary sources. The absorption rate varies depending on dietary zinc content and ranges between 15 and 40 percent of ingested zinc. Absorption occurs via specific transport proteins, mainly ZnT transporters (Zinc Transporters) and ZIP transporters (Zrt-/Irt-like Proteins).
Absorption is influenced by several factors: zinc from animal sources (e.g., meat, seafood) is better absorbed than zinc from plant sources. Phytates (phytic acid), found in whole grains and legumes, inhibit zinc absorption by forming insoluble complexes with zinc.
After absorption, zinc is transported via the portal vein to the liver. In the bloodstream, approximately 98 percent of zinc is protein-bound:
The liver plays a central role in distributing and regulating zinc levels in the body. It also produces the transport protein metallothionein, which can bind and store zinc.
The human body contains approximately 2–3 grams of zinc in total. Unlike iron, there is no specific zinc storage depot (such as ferritin), which is why regular dietary zinc intake is particularly important. Zinc is present in virtually all body cells, with the highest concentrations found in:
Within cells, zinc is stored mainly in the cytoplasm, the nucleus, and various organelles, often bound to metallothionein or other zinc-rich proteins.
Zinc performs structural, catalytic, and regulatory roles in the body:
Zinc is primarily excreted via feces, as a large portion of unabsorbed zinc along with zinc secreted into bile and pancreatic juice leaves the body through the intestine. A smaller amount is excreted via urine, sweat, skin cells, and semen. The body adaptively regulates zinc excretion: when dietary zinc intake is low, fecal excretion is reduced to maintain zinc levels.
Zinc deficiency can result from insufficient dietary intake, increased requirements (e.g., during pregnancy and growth phases), malabsorption, or chronic disease. Symptoms include growth retardation, impaired immune function, poor wound healing, hair loss, and loss of taste and smell. A rare genetic disorder of zinc metabolism is acrodermatitis enteropathica, in which intestinal zinc absorption is severely impaired.
Excessive zinc intake – usually from high-dose supplements – can cause nausea, vomiting, abdominal cramps, and impaired copper absorption, as zinc and copper compete for the same transport proteins. Chronic zinc excess can lead to copper deficiency and associated neurological symptoms.
The World Health Organization (WHO) recommends a daily zinc intake of approximately 4.9–14 mg for adults depending on dietary composition and bioavailability. In Germany, the German Nutrition Society (DGE) recommends 7 mg per day for adult women and 10 mg per day for adult men. Good dietary sources of zinc include meat (especially red meat), seafood (especially oysters), cheese, nuts, legumes, and whole grains.
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As one of the most valuable proteins in the body, lactoferrin is a natural component of the immune system.
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