Developmental changes in ryanodine- and IP(3)-sensitive Ca(2+) pools in ovine basilar artery.
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Summary
During basilar artery maturation, intracellular Ca(2+) mass plummets in noncontractile pools, decreases modestly in ryanodine-sensitive pools, and remains constant in IP(3)-sensitive pools.
- Type
- article
- Published
- 2001-12-01
- Cited by
- 36
- References
- 50
- OpenAlex
- https://openalex.org/W1816557142
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28603555
Keywords
Ryanodine receptor, Basilar artery, Intracellular, Internal medicine, Fetus
References
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- Comparative localization of inositol 1,4,5-trisphosphate and ryanodine receptors in intestinal smooth muscle: an analytical subfractionation study.
- Ins(1,4,5)P3 receptors in cerebral arteries: changes with development and high-altitude hypoxia.
- Caffeine and theophylline as adenosine receptor antagonists in humans.
- Regulation of differentiation of vascular smooth muscle cells.
- Polyamines increase Ca2+ sensitivity in permeabilized smooth muscle of guinea pig ileum.
- Maturation Modulates Serotonin- and Potassium-Induced Calcium-45 Uptake in Ovine Carotid and Cerebral Arteries
- Caffeine interaction with fluorescent calcium indicator dyes.
- Spatially and Functionally Distinct Ca2+ Stores in Sarcoplasmic and Endoplasmic Reticulum
- Resolution of Intracellular Calcium Metabolism in Intact Segments of Rabbit Aorta
- Signaling pathways between the plasma membrane and endoplasmic reticulum calcium stores
- Developmental Changes in the Contractile System of the Mesenteric Small Artery of Rabbit
- The oxidation of the calcium probe quin2 and its analogs by prostaglandin H synthase.
- Functionally and spatially distinct Ca2+ stores are revealed in cultured vascular smooth muscle cells.
- Effects of sympathetic stimulation and changes in arterial pressure on segmental resistance of cerebral vessels in rabbits and cats.
- [Actions of vanadate on muscles].
Cited by
- Mechanosensory Calcium Signaling
- The Fetal Cerebral Circulation: Three Decades of Exploration by the LLU Center for Perinatal Biology
- Regulation of Fluid-Shear Stress by Mechanosensory Primary Cilia
- Non-Motile Primary Cilia as Fluid Shear Stress Mechanosensors
- Protein kinase C-dependent inhibition of BKCa current in rat aorta smooth muscle cells following γ-irradiation
- Maximal stimulation-induced in situ myosin light chain kinase activity is upregulated in fetal compared with adult ovine carotid arteries.
- Developmental differences in Ca2+-activated K+ channel activity in ovine basilar artery.
- Ca2+-activated K+ channel-associated phosphatase and kinase activities during development.
- Mechanisms regulating cilia growth and cilia function in endothelial cells
- Loss of polycystin-1 in human cyst-lining epithelia leads to ciliary dysfunction.
- Protein kinase C in enhanced vascular tone in diabetes mellitus.
- Role of acetylcholine and calcium ions in three vascular contraction models: Angiotensin II, phenylephrine and caffeine.
- Cilostazol Prevents Endothelin-Induced Smooth Muscle Constriction and Proliferation
- Polycystins 1 and 2 mediate mechanosensation in the primary cilium of kidney cells
- Roles of cytosolic Ca2+ concentration and myofilament Ca2+ sensitization in age-dependent cerebrovascular myogenic tone.
- Maturation of intracellular calcium homeostasis in sheep pulmonary arterial smooth muscle cells.
- Postnatal maturation attenuates pressure-evoked myogenic tone and stretch-induced increases in Ca2+ in rat cerebral arteries.
- Myogenic contractility is more dependent on myofilament calcium sensitization in term fetal than adult ovine cerebral arteries.
- Endothelial Cilia Are Fluid Shear Sensors That Regulate Calcium Signaling and Nitric Oxide Production Through Polycystin-1
- Modulation of BK channel calcium affinity by differential phosphorylation in developing ovine basilar artery myocytes.
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