Anemia in Sports: A Narrative Review

Анемия в спорте: нарративный обзор
Marc-Tudor Damian, Romana Vulturar, Cezar Login, Laura Damian, Adina Chiş, Anca Bojan
2021-09-20

athletesexercise-induced hemolysisiron deficiencyiron status assessmentsports anemia
Recent years have brought about new understandings regarding the pathogenesis of anemia in sports. From hemodilution and redistribution considered to contribute to the so-called "sports anemia" to iron deficiency caused by increased demands, dietary restrictions, decreased absorption, increased losses, hemolysis, and sequestration, to genetic determinants of different types of anemia (some related to sport), the anemia in athletes deserves a careful and multifactorial approach. Dietary factors that reduce iron absorption (e.g., phytate, polyphenols) and that augment iron's bioavailability (e.g., ascorbic acid) should be considered. Celiac disease, more prevalent in female athletes, may underlie an unexplained iron deficiency anemia. Iron loss during exercise occurs in several ways: sweating, hematuria, gastrointestinal bleeding, inflammation, and intravascular and extravascular hemolysis. From a practical point of view, assessing iron status, especially in the athletes at risk for iron deficiency (females, adolescents, in sports with dietary restrictions, etc.), may improve the iron balance and possibly the performance. Hemoglobin and serum ferritin are measures that are easily employable for the evaluation of patients' iron status. Cutoff values should probably be further assessed with respect to the sex, age, and type of sport. A healthy gut microbiome influences the iron status. Athletes at risk of iron deficiency should perform non-weight-bearing, low-intensity sports to avoid inducing hemolysis.
1
Anemia in athletes has multifactorial causes, including hemodilution, iron deficiency, dietary restrictions, impaired absorption, increased losses, hemolysis, sequestration, and genetic determinants.
2
Athletes at increased risk of iron deficiency include females, adolescents, and those participating in sports with dietary restrictions; targeted iron-status assessment may support balance and performance.
3
Athletes vulnerable to iron deficiency should favor non-weight-bearing, low-intensity sports to reduce exercise-induced hemolysis.
4
Dietary phytate and polyphenols reduce iron absorption, whereas ascorbic acid increases iron bioavailability; gut microbiome health also influences iron status.
5
Exercise-related iron loss can occur through sweating, hematuria, gastrointestinal bleeding, inflammation, and intravascular or extravascular hemolysis.
6
Hemoglobin and serum ferritin are practical measures of iron status, but cutoff values require further evaluation according to sex, age, and sport type.

Anemia and iron status in athletes

Multifactorial causes, mechanisms, risk factors, assessment, and management implications of anemia and iron deficiency in athletes

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2021-09-20
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Authors
Marc-Tudor Damian
Romana Vulturar
Cezar Login
Laura Damian
Adina Chiş
Anca Bojan
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