Functional vs Absolute Iron Deficiency Interpreter

Functional vs Absolute Iron Deficiency Interpreter

Distinguish empty iron stores from iron that is present but locked away, using ferritin, transferrin saturation and CRP.

Functional vs Absolute Iron Deficiency

Ferritin + TSAT + CRP
FunctionalExample

Ferritin 240 µg/L, TSAT 14%, CRP 22 mg/L

The distinction

Absolute — stores empty: ferritin low
Functional — stores adequate, supply blocked: ferritin normal or high, TSAT low
hepcidin
the mechanism of functional deficiency — inflammation raises it, and it blocks both gut absorption and macrophage iron release
TSAT < 20%
restricted iron supply, whatever the store size
CRP > 5 mg/L
raises the ferritin threshold from 30 to 100 µg/L

Worked example

Ferritin 240 µg/L, TSAT 14%, CRP 22 mg/L
Ferritin above 100 → stores are not empty
TSAT 14% → supply to the marrow is restricted
functional iron deficiency; oral iron will not be absorbed

Patterns compared

AbsoluteFunctionalAnaemia of inflammation
FerritinLowNormal or highHigh
TSATLowLowLow
CRPAnyUsually raisedRaised
sTfRHighNormal or highNormal
Responds to oral ironYesNoNo
Responds to IV ironYesOftenRarely
The three overlap and can coexist. Soluble transferrin receptor, unaffected by inflammation, is the most useful additional test when the pattern is unclear.

Why the distinction changes treatment

Absolute iron deficiency means the body has run out of iron. Functional iron deficiency means it has iron but cannot get at it — hepcidin, driven up by inflammation, degrades ferroportin and traps iron inside macrophages and enterocytes while the erythroid marrow goes short.

Treatment diverges sharply. Absolute deficiency responds to oral iron, provided absorption is intact. Functional deficiency does not, because the same hepcidin that sequesters stored iron also blocks absorption from the gut — prescribing oral iron produces side effects without benefit. Intravenous iron bypasses the absorptive block and does help in selected patients, notably in heart failure and chronic kidney disease, where trials have shown symptomatic benefit even with ferritin well inside the normal range.

The two also coexist. A patient with inflammatory bowel disease can be inflamed and bleeding at once, and the pattern then shows features of both. Where ferritin and saturation give an ambiguous answer, soluble transferrin receptor or the sTfR-ferritin index is the tiebreaker, because neither is distorted by the acute-phase response.

Frequently asked questions

What is functional iron deficiency?

Iron stores are adequate but the iron cannot reach the marrow, because inflammation-driven hepcidin traps it in macrophages. Ferritin is normal or high while transferrin saturation is low.

Why does oral iron not work in functional deficiency?

The same hepcidin that sequesters stored iron also degrades ferroportin in the gut, blocking absorption. Oral iron produces gastrointestinal side effects without raising haemoglobin.

Should functional iron deficiency be treated at all?

In some settings, yes. Intravenous iron improves symptoms and exercise capacity in heart failure with a ferritin below 100 µg/L, or 100 to 300 µg/L with a saturation under 20%, and is standard in chronic kidney disease on erythropoiesis-stimulating agents.

Which test settles an ambiguous case?

Soluble transferrin receptor, or the sTfR-ferritin index. Neither is affected by inflammation, so both remain interpretable when ferritin cannot be trusted.

Related calculators

References

  1. Weiss G, Ganz T, Goodnough LT. Anemia of inflammation. Blood. 2019;133(1):40–50.
  2. Ponikowski P et al. Beneficial effects of long-term intravenous iron therapy in heart failure. Eur Heart J.
  3. KDIGO Clinical Practice Guideline for Anemia in Chronic Kidney Disease.