Prolonged oxidative stress inverts the cardiac force-frequency relation: role of altered calcium handling and myofilament calcium responsiveness

被引:36
作者
Luo, JZ
Xuan, YT
Gu, Y
Prabhu, SD
机构
[1] Univ Louisville, Hlth Sci Ctr, Dept Med, Inst Mol Cardiol,ABC, Louisville, KY 40202 USA
[2] Univ Louisville, Hlth Sci Ctr, Dept Physiol & Biophys, Inst Mol Cardiol,ABC, Louisville, KY 40202 USA
[3] Louisville VA Med Ctr, Med Serv, Louisville, KY USA
关键词
oxidant stress; excitation-contraction coupling; myocardial contraction; calcium;
D O I
10.1016/j.yjmcc.2005.09.013
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The normally positive force- and Ca2+-frequency responses (FFR and CaFR) are inverted in heart failure (HF); whether oxidative stress contributes to these abnornralities is unknown. We evaluated the impact of acute and prolonged oxidative stress oil contraction and Ca2+ handling in adult rat cardiomyocytes. Acute (30 min) exposure to H2O2 (100 mu M) induced a twofold increase (P < 0.025) in intracellular oxyradicals together with contractile depression despite preservation of the Ca2+ transient and the FFR and CaFR to 3 Hz, indicating reduced myofilament Ca2+ responsiveness. In contrast, prolonged (24 h) exposure to the copper-zinc Superoxide dismutase inhibitor diethyldithiocarbamic acid (DDC, 1 mu M) similarly augmented oxyradicals but also increased cell size, and contraction and Ca2+ transient duration (P < 0.025). DDC-treated myocytes displayed inverted FFRs and attenuated (though still positive) CaFRs as compared to control. indicating reduced myofilament Ca2+ responsiveness coupled with altered Ca2+ handling. Protein levels of the Na+-Ca2+ exchanger (NCX), sarcoplasmic reticular (SR) Ca2+ ATPase (SERCA2), and serine-16 phosphorylated phospholamban (pSer16-PLB) were increased (P < 0.025), whereas dihydropyridine receptor abundance was decreased. Total PLB and ryanodine receptor protein expression were unchanged. Caffeine-induced Ca2+ release showed increased NCX activity (P < 0.025) Without changes in total releasable SR Ca2+, suggesting compensatory changes in SERCA2 and pSer16-PLB to maintain SR Ca2+ load. The superoxide scavenger Tiron attenuated these effects. Thus, acute oxyradical exposure rapidly depresses myofibrillar Ca2+ responsiveness. Prolonged oxidative stress further induces alterations in Ca2+ handling that combined with extant reductions in myofibrillar responsiveness invert the FFR. With regard to Ca2+ handling, reduced transsarcolemmal Ca2+ flux rather than reduced SR Ca2+ uptake was the primary determinant of a negative FFR. Analogous changes may be operative in HE it state characterized by both oxidative stress and Ca2+ dysregulation. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:64 / 75
页数:12
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