Literature DB >> 18560877

High-frequency fatigue of skeletal muscle: role of extracellular Ca(2+).

Elena Germinario1, Alessandra Esposito, Menotti Midrio, Samantha Peron, Philip T Palade, Romeo Betto, Daniela Danieli-Betto.   

Abstract

The present study evaluated whether Ca(2+) entry operates during fatigue of skeletal muscle. The involvement of different skeletal muscle membrane calcium channels and of the Na(+)/Ca(2+) exchanger (NCX) has been examined. The decline of force was analysed in vitro in mouse soleus and EDL muscles submitted to 60 and 110 Hz continuous stimulation, respectively. Stimulation with this high-frequency fatigue (HFF) protocol, in Ca(2+)-free conditions, caused in soleus muscle a dramatic increase of fatigue, while in the presence of high Ca(2+) fatigue was reduced. In EDL muscle, HFF was not affected by external Ca(2+) levels either way, suggesting that external Ca(2+) plays a general protective role only in soleus. Calciseptine, a specific antagonist of the cardiac isoform (alpha1C) of the dihydropyridine receptor, gadolinium, a blocker of both stretch-activated and store-operated Ca(2+) channels, as well as inhibitors of P2X receptors did not affect the development of HFF. Conversely, the Ca(2+) ionophore A23187 increased the protective action of extracellular Ca(2+). KB-R7943, a selective inhibitor of the reverse mode of NCX, produced an effect similar to that of Ca(2+)-free solution. These results indicate that a transmembrane Ca(2+) influx, mainly through NCX, may play a protective role during HFF development in soleus muscle.

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Year:  2008        PMID: 18560877      PMCID: PMC2969177          DOI: 10.1007/s00421-008-0796-5

Source DB:  PubMed          Journal:  Eur J Appl Physiol        ISSN: 1439-6319            Impact factor:   3.078


  34 in total

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Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2000-09       Impact factor: 3.619

Review 4.  Junctional membrane structure and store operated calcium entry in muscle cells.

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Review 5.  Excitation-contraction coupling in skeletal muscle: comparisons with cardiac muscle.

Authors:  G D Lamb
Journal:  Clin Exp Pharmacol Physiol       Date:  2000-03       Impact factor: 2.557

6.  Expression of the Na(+)/Ca(2+) exchanger in skeletal muscle.

Authors:  B Fraysse; T Rouaud; M Millour; J Fontaine-Pérus; M F Gardahaut; D O Levitsky
Journal:  Am J Physiol Cell Physiol       Date:  2001-01       Impact factor: 4.249

Review 7.  Excitation-contraction coupling and fatigue mechanisms in skeletal muscle: studies with mechanically skinned fibres.

Authors:  Graham D Lamb
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Review 8.  Molecular physiology of P2X receptors.

Authors:  R Alan North
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Authors:  J W Putney; L M Broad; F J Braun; J P Lievremont; G S Bird
Journal:  J Cell Sci       Date:  2001-06       Impact factor: 5.285

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Journal:  J Cell Biol       Date:  2002-09-16       Impact factor: 10.539

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  15 in total

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5.  Curcumin counteracts loss of force and atrophy of hindlimb unloaded rat soleus by hampering neuronal nitric oxide synthase untethering from sarcolemma.

Authors:  Maurizio Vitadello; Elena Germinario; Barbara Ravara; Luciano Dalla Libera; Daniela Danieli-Betto; Luisa Gorza
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Review 6.  Regulation of muscle potassium: exercise performance, fatigue and health implications.

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Journal:  Eur J Appl Physiol       Date:  2021-01-04       Impact factor: 3.078

7.  Effects of type 1 diabetes, sprint training and sex on skeletal muscle sarcoplasmic reticulum Ca2+ uptake and Ca2+-ATPase activity.

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Journal:  J Physiol       Date:  2013-12-02       Impact factor: 5.182

Review 8.  Do multiple ionic interactions contribute to skeletal muscle fatigue?

Authors:  S P Cairns; M I Lindinger
Journal:  J Physiol       Date:  2008-06-26       Impact factor: 5.182

9.  The Na+/Ca2+ exchange inhibitor 2-(2-(4-(4-nitrobenzyloxy)phenyl)ethyl)isothiourea methanesulfonate (KB-R7943) also blocks ryanodine receptors type 1 (RyR1) and type 2 (RyR2) channels.

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Journal:  Mol Pharmacol       Date:  2009-06-09       Impact factor: 4.436

10.  Intramuscular drug transport under mechanical loading: resonance between tissue function and uptake.

Authors:  Peter I Wu; Sara Minisini; Elazer R Edelman
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