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Updated: Aug 18, 2026

Bilateral Common Carotid Artery Occlusion as an Adequate Preconditioning Stimulus to Induce Early Ischemic Tolerance to Focal Cerebral Ischemia
Published on: May 9, 2013
Further characterization of stimulus interaction of cat carotid chemoreceptors
C Di Giulio1, W Huang, A Mokashi
1Department of Physiology, University of Pennsylvania School of Medicine, Philadelphia 19104-6085, USA.
Abstract:
The hypothesis that the maximal response to pCO2 of carotid body chemoreceptors would be the same regardless of pO2, if the receptor molecule behaves like a hemoglobin molecule, was investigated using single or a few fiber carotid body chemoreceptors in cats in vivo which were anesthetized and artificially ventilated. In one series, graded levels of CO2 inhalation in steady-state at p(a)O2 = 354 +/- 19 Torr showed a linear response from 1 to 20.1 +/- 2.3 imp/s for p(a)CO2 increase from 32 to 178 +/- 18 Torr, and at p(a)O2 of 48 +/- 3.8 Torr, from 3.8 to 18.6 +/- 1.7 imp/s for p(a)CO2 increase from 21 to 109 +/- 11 Torr, levelling off thereafter. In another series of multi-fiber preparation, close intra-arterial injection of blood plus saline containing pCO2 of about 270 Torr gave peak responses of 44 +/- 9, 42 +/- 6 and 42 +/- 7 imp/s at p(a)O2 of 40 +/- 4, 82 +/- 6 and 388 +/- 18 Torr, respectively. Thus, the chemosensory responses to p(a)CO2 reached the same level of maximal activity regardless of p(a)O2. Taken together, the maximal responses in both steady-state and transient-state to p(a)CO2 appeared to be the same at hypoxic and hyperoxic p(a)O2. This stimulus-response relationship of the receptor molecule is analogous to O2-CO2 interaction with hemoglobin molecule with a Bohr effect, reaching a saturation point at a finite pO2.

