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Updated: Jan 25, 2026

Short Session High Intensity Interval Training and Treadmill Assessment in Aged Mice
Published on: February 2, 2019
Cortical O2 supply and metabolism are suppressed in the aged mice
Hongyi Kang1, Sitong Zhou2, Michael Giannetto1
1Department of Neurosurgery, Center for Translational Neuromedicine, University of Rochester Medical Center, Rochester, NY 14642.
Abstract:
Current evidence suggests that the rejuvenating effects of parabiosis on brain function arise from the exchange of blood factors that enhance synaptic plasticity, promote neurogenesis, and reduce neuroinflammation in aged animals. However, aging is also associated with diminished tissue oxygenation. Here, we report that erythrocytes (red blood cells, RBCs) from aged mice exhibit reduced responsiveness to low oxygen tension (PO2) and release O2 slower than those from young mice. In vivo, sensory stimulation evoked a smaller and delayed capillary RBC flow in aged mice. Although activity-evoked PO2 dips were diminished in aged mice; experimentally reducing PO2 to comparable levels did not restore capillary flow in aged mice, consistent with diminished RBC O2 responsiveness observed ex vivo. Notably, RBCs from aged mice in heterochronic parabiosis pairs (young-aged) displayed faster responses to low PO2 compared to those from aged mice in isochronic pairs (aged-aged). Together, these findings across multiple levels of analysis demonstrate that aging impairs RBC responsiveness to O2 and suggest that improved RBC-mediated O2 delivery contributes to the rejuvenating effects of parabiosis.
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