Effects of maturation, artery size, and chronic hypoxia on 5-HT receptor type in ovine cranial arteries

Author:

Teng Guo Qi1,Williams James1,Zhang Lubo1,Purdy Ralph2,Pearce William J.1

Affiliation:

1. Center for Perinatal Biology, Departments of Physiology and Pharmacology, Loma Linda University School of Medicine, Loma Linda 92350, and

2. Department of Pharmacology, University of California at Irvine, Irvine, California 92697-4625

Abstract

To test the hypothesis that variations in cerebrovascular reactivity to 5-HT among arteries of different size or type, during maturation, or during acclimatization to high altitude involve differences in serotonergic receptor subtype, we determined relative agonist potency orders and antagonist affinities in common carotid (Com), main branch middle cerebral (Main), and second branch middle cerebral (2BR) arteries from term fetal lambs and nonpregnant adult sheep acclimatized at sea level or at an altitude of 3,820 m for ≈110 days. In normoxic adult Com segments, agonist potency order was 5-hydroxytryptamine (5-HT) > 5-carboxamidotryptamine (5-CT) ≥ 8-hydroxy-2(di- n-propylamino)tetraline (8-OH-DPAT); sumatriptan (Suma) produced no contractile response; and antagonist dissociation constant (pKb) values were 9.4 and 9.5 for ketanserin against 5-HT and 5-CT, 7.5 for GR-127935 against 5-HT, and 7.2 for SB-206553 against 5-HT. In normoxic adult Main segments, agonist potency order was 5-HT > 5-CT ≥ Suma ≥ DPAT, and pKb values were 9.1 and 9.2 for ketanserin against 5-HT and 5-CT and 7.4 and 8.5 for GR-127935 against 5-HT and Suma, respectively. In the 2BR segments from normoxic adults, agonist potency order was 5-CT > 5-HT > Suma > DPAT and pKb values were 7.4 and 7.2 for ketanserin against 5-HT and 5-CT and 10.0 and 8.7 for GR-127935 against 5-HT and Suma, respectively. Compared with normoxic adults, none of these values were significantly different in hypoxic adults and in fetuses only the pKb values for ketanserin against 5-HT in the 2BR segments (8.8) were greater. From these results we propose that the ratio of 5-HT2 to 5-HT1 receptors is greatest in the Com and decreases progressively to its smallest values in 2BR or smaller segments. Because this gradient appears stable and relatively resistant to the effects of maturation and chronic hypoxia, changes in reactivity associated with these perturbations may involve alterations in receptor density and/or coupling efficiency for 5-HT in ovine cranial arteries.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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1. Postnatal development alters functional compartmentalization of myosin light chain kinase in ovine carotid arteries;American Journal of Physiology-Regulatory, Integrative and Comparative Physiology;2021-09-01

2. In Vitro Model for Ischemic Stroke: Functional Analysis of Vascular Smooth Muscle Cells;Cellular and Molecular Neurobiology;2021-05-25

3. Fetal Cerebrovascular Maturation: Effects of Hypoxia;Seminars in Pediatric Neurology;2018-12

4. Gestational Hypoxia and Developmental Plasticity;Physiological Reviews;2018-07-01

5. Fetal Growth Restriction at High Altitude: Basic Cellular and Subcellular Physiologic Considerations;The Rise of Fetal and Neonatal Physiology;2018

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