TY - JOUR
T1 - Preserved peak exercise capacity in Andean highlanders with excessive erythrocytosis both before and after isovolumic hemodilution
AU - Anza-Ramírez, Cecilia
AU - Gu, Wanjun
AU - Macarlupú, José L.
AU - Figueroa-Mujíca, Rómulo J.
AU - Vizcardo-Galindo, Gustavo A.
AU - Heinrich, Erica C.
AU - Tift, Michael S.
AU - Wagner, Harrieth E.
AU - Wagner, Peter D.
AU - Simonson, Tatum S.
AU - Villafuerte, Francisco C.
N1 - Publisher Copyright:
© 2023 The Authors.
PY - 2023/1
Y1 - 2023/1
N2 - In chronic mountain sickness (CMS), increased blood oxygen (O2)-carrying capacity due to excessive erythrocytosis (EE, [Hb] 21 g/dL) could be offset, especially during exercise by both impaired cardiac output (Q T) and O2 diffusion limitation in lungs and muscle. We hypothesized that EE results in reduced peak V O2 despite increased blood O2-carrying capacity, and that isovolumic hemodilution (IVHD) improves exercise capacity. In 14 male residents of Cerro de Pasco, Peru (4,340 m), six with and eight without EE, we measured peak cycle-exercise capacity, V O2, Q T, arterial blood gas parameters, and (resting) blood volume. This was repeated for participants with EE after IVHD, reducing hematocrit by 20% (from 67% to 53%). From these data, we quantified the major O2 transport pathway components (ventilation, pulmonary alveolar-capillary diffusion, Q T, and blood-muscle mitochondria diffusion). Participants with EE had similar peak V O2, systemic O2 delivery, and O2 extraction as non-EE controls, however, with lower Q T and higher arterial [O2]. After IVHD, peak V O2 was preserved (but not enhanced), with lower O2 delivery (despite higher Q T) balanced by greater O2 extraction. The considerable variance in exercise capacity across the 14 individuals was explained essentially completely by differences in both pulmonary and muscle O2 diffusional conductances and not by any differences in ventilation, [Hb], nor Q T. In conclusion, EE does not result in lower peak V O2 in Andean males, and IVHD maintains, but does not enhance, exercise capacity.
AB - In chronic mountain sickness (CMS), increased blood oxygen (O2)-carrying capacity due to excessive erythrocytosis (EE, [Hb] 21 g/dL) could be offset, especially during exercise by both impaired cardiac output (Q T) and O2 diffusion limitation in lungs and muscle. We hypothesized that EE results in reduced peak V O2 despite increased blood O2-carrying capacity, and that isovolumic hemodilution (IVHD) improves exercise capacity. In 14 male residents of Cerro de Pasco, Peru (4,340 m), six with and eight without EE, we measured peak cycle-exercise capacity, V O2, Q T, arterial blood gas parameters, and (resting) blood volume. This was repeated for participants with EE after IVHD, reducing hematocrit by 20% (from 67% to 53%). From these data, we quantified the major O2 transport pathway components (ventilation, pulmonary alveolar-capillary diffusion, Q T, and blood-muscle mitochondria diffusion). Participants with EE had similar peak V O2, systemic O2 delivery, and O2 extraction as non-EE controls, however, with lower Q T and higher arterial [O2]. After IVHD, peak V O2 was preserved (but not enhanced), with lower O2 delivery (despite higher Q T) balanced by greater O2 extraction. The considerable variance in exercise capacity across the 14 individuals was explained essentially completely by differences in both pulmonary and muscle O2 diffusional conductances and not by any differences in ventilation, [Hb], nor Q T. In conclusion, EE does not result in lower peak V O2 in Andean males, and IVHD maintains, but does not enhance, exercise capacity.
KW - Andean highlanders
KW - chronic mountain sickness
KW - excessive erythrocytosis
KW - exercise capacity
KW - isovolumic hemodilution
UR - https://www.scopus.com/pages/publications/85144588761
U2 - 10.1152/japplphysiol.00439.2022
DO - 10.1152/japplphysiol.00439.2022
M3 - Artículo
C2 - 36417198
AN - SCOPUS:85144588761
SN - 8750-7587
VL - 134
SP - 36
EP - 49
JO - Journal of Applied Physiology
JF - Journal of Applied Physiology
IS - 1
ER -