Abstract
1 The roles of intracellular Ca2+ stores and ryanodine (Ry) receptors for vascular Ca2+ homeostasis and viability were investigated in rat tail arterial segments kept in organ culture with Ry (10-100 μM) for up to 4 days. 2 Acute exposure to Ry or the non-deactivating ryanodine analogue C10-Oeq glycyl ryanodine (10 μM) eliminated Ca2+ release responses to caffeine (20 mM) and noradrenaline (NA, 10 μM), whereas responses to NA, but not caffeine, gradually returned to normal within 4 days of exposure to Ry. 3 Ry receptor protein was detected on Western blots in arteries cultured either with or without Ry. 4 Brief Ca2+ release events (sparks) were absent after culture with Ry, whereas Ca2+ waves still occurred. The propagation velocity of waves was equal (∼ 19 μm s-1) in tissue cultured either with or without Ry. 5 Inhibition of Ca2+ accumulation into the sarcoplasmic reticulum (SR) by culture with caffeine (5 mM), cyclopiazonic acid or thapsigargin (both 10 μM) decreased contractility due to Ca2+-induced cell damage. In contrast, culture with Ry did not affect contractility. 6 Removal of Ca2+ from the cytosol following a Ca2+ load was retarded after Ry culture. Thapsigargin reduced the rate of Ca2+ removal in control cultured rings, but had no effect after Ry culture. 7 It is concluded that intracellular Ca2+ stores recover during chronic Ry treatment, while Ry receptors remain non-functional, Ry receptor activity is required for Ca2+ sparks and for SR-dependent recovery from a Ca2+ load, but not for Ca2+ waves or basal Ca2+ homeostasis.
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Dreja, K., Nordström, I., & Hellstrand, P. (2001). Rat arterial smooth muscle devoid of ryanodine receptor function: Effects on cellular Ca2+ handling. British Journal of Pharmacology, 132(8), 1957–1966. https://doi.org/10.1038/sj.bjp.0703986
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