Related Experiment Video
Updated: Aug 16, 2026

Measurement of Heme Synthesis Levels in Mammalian Cells
Published on: July 9, 2015
Erythrocyte zinc protoporphyrin is elevated with prematurity and fetal hypoxemia
David G Lott1, M Bridget Zimmerman, Robert F Labbé
1Department of Pediatrics, College of Medicine, University of Iowa, Iowa City, Iowa, USA.
Insights
The red blood cell zinc protoporphyrin/heme ratio (ZnPP/H) can indicate fetal iron status. Higher ZnPP/H suggests increased erythropoiesis and potential iron deficiency risk in infants with growth restriction or from diabetic mothers.
Area of Science:
- Neonatal Medicine
- Hematology
- Fetal Development
Background:
- Fetal iron status is critical for neurodevelopment, but reliable indicators are scarce.
- Low serum ferritin indicates poor iron status at birth, linked to adverse outcomes.
- Red blood cell (RBC) zinc protoporphyrin/heme ratio (ZnPP/H) is explored as a potential indicator.
Purpose of the Study:
- To evaluate the utility of RBC ZnPP/H in assessing fetal iron status.
- To investigate factors influencing ZnPP/H in fetuses, including growth, hypoxia, and maternal conditions.
Main Methods:
- Studied preterm and term fetuses (control, IUGR, FDM).
- Measured RBC ZnPP/H using hematofluorometry.
- Correlated ZnPP/H with cord blood markers of oxygenation (EPO, reticulocytes) and iron status (ferritin).
Main Results:
- In controls, higher gestational age correlated with lower ZnPP/H and higher ferritin.
- IUGR and FDM fetuses showed higher ZnPP/H and lower ferritin compared to controls.
- Gestational age, EPO, maternal hypertension, and smoking impacted the ZnPP/H-ferritin relationship.
Conclusions:
- Elevated fetal ZnPP/H suggests increased erythropoiesis, potentially due to growth velocity or hypoxemia.
- Reduced iron availability may contribute to higher ZnPP/H in IUGR fetuses.
- Infants of diabetic mothers and those with growth retardation may be at risk for iron deficiency due to these factors.
Objective:
To examine the utility of red blood cell (RBC) zinc protoporphyrin/heme ratio (ZnPP/H) as an indicator of fetal iron status, because unfavorable neurodevelopmental outcomes have been associated with poor iron status at birth, as indicated by low serum ferritin, and because few reliable indicators of fetal and early neonatal iron status exist.
Methods:
Consecutively studied preterm and term fetuses at delivery included the following groups: (1) control nonhypoxic, (2) fetuses with intrauterine growth retardation (IUGR), and (3) fetuses of insulin-treated mothers (FDM). We hypothesized (1) that rapid growth velocity associated with an accelerated erythropoiesis among normal fetuses will lead to reduced iron delivery to a rapidly expanding RBC mass and higher umbilical cord blood RBC ZnPP/H and (2) that fetuses that are exposed to pathologic hypoxemia will experience an additional increase in erythropoiesis and higher cord ZnPP/H. ZnPP/H was determined on saline-washed cord blood erythrocytes by hematofluorometry and was examined for its relationship with clinical factors and cord blood laboratory measurements indicative of tissue oxygenation (plasma erythropoietin [EPO] and reticulocyte count) and iron status (plasma ferritin and erythrocyte indices). Statistical testing included 1-way analysis of variance, 2-way analysis of variance with covariates, simple linear regression, and multiple regression analysis.
Results:
Among control group subjects, gestational age at birth was inversely correlated with RBC ZnPP/H and reticulocyte count and positively correlated with ferritin and EPO. Relative to control subjects, IUGR and FDM fetuses at specified gestational age groupings had higher ZnPP/H, lower plasma ferritin, and higher plasma EPO. Statistical modeling of the relationship between ZnPP/H and plasma ferritin among all study groups demonstrated significant impacts of gestational age, plasma EPO, maternal hypertension, and maternal smoking.
Conclusions:
The inverse association of fetal ZnPP/H with gestational age at birth among control subjects is attributable to erythropoietic stimulation likely as a result of increasing growth velocity at the earliest gestational ages. The relatively higher ZnPP/H observed among fetuses in the IUGR and FDM groups likely is attributable to increased erythropoietic activity secondary to pathologic hypoxemia. Decreased placental iron transfer may also have limited iron availability and contributed to elevated ZnPP/H in the IUGR group. These data support the concept that increased erythropoietic activity and/or limited iron transport may place infants of diabetic mothers and infants with growth retardation at risk for developing systemic iron deficiency later in infancy and in early childhood.
Related Concept Videos
Erythropoiesis
Factors Affecting Erythropoiesis
Several factors influence the erythrocyte production rate, with tissue oxygen level being among the most critical. Intense exercise or high altitudes can cause tissue hypoxia, which triggers the kidneys to release more erythropoietin (EPO) into the bloodstream.
EPO then...
Disorders of Erythrocytes
Erythrocyte disorders can be broadly categorized into two main types: anemic and polycythemic conditions.
A low oxygen-carrying capacity of the blood due to the loss, lower production, or destruction of erythrocytes is termed anemia. Hemorrhagic anemia, for example, occurs when bleeding from an external wound or internal ulcer reduces erythrocyte counts.
On the other...
Rh Blood Group
Oxygen Transport in the Blood
Acute Respiratory Failure-II
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:

