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September 19, 2002Circulation Research273 citations

L-Type Ca 2+ Channel Density and Regulation Are Altered in Failing Human Ventricular Myocytes and Recover After Support With Mechanical Assist Devices

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XCXiongwen ChenVPValentino PiacentinoSFSatoshi Furukawa

Key Result

LVAD support partially restored beta-adrenergic responsiveness of L-type Ca2+ current in failing human ventricular myocytes (isoproterenol increased current by 77% in LVAD vs 24% in failing).

Structured PICO

P
Population
Human left ventricular myocytes (HVMs) from nonfailing (NF), failing (F), and LVAD-supported hearts
I
Intervention
Exposure to isoproterenol (ISO), dibutyryl-cAMP (db-cAMP), Bay K 8644 (BayK), Okadaic acid (OA), and phosphatase 2A (PP2A)
C
Comparator
Basal conditions and comparison between nonfailing, failing, and LVAD-supported myocytes
O
Outcome
L-type Ca2+ current (I(Ca,L)) density and activation propertiessurrogate

In failing human ventricular myocytes, L-type calcium channel density is reduced but basal current is maintained by increased phosphorylation, a defect that partially recovers after LVAD support.

Abstract

Ca2+ influx through the L-type calcium channel (LTCC) induces Ca2+ release from the sarcoplasmic reticulum (SR) and maintains SR Ca2+ loading. Alterations in LTCC properties, their contribution to the blunted adrenergic responsiveness in failing hearts and their recovery after support with LV assist devices (LVAD) were studied. L-type Ca2+ current (I(Ca,L)) was measured under basal conditions and in the presence of isoproterenol (ISO), dibutyryl-cAMP (db-cAMP), Bay K 8644 (BayK), Okadaic acid (OA, a phosphatase inhibitor), and phosphatase 2A (PP2A) in nonfailing (NF), failing (F), and LVAD-supported human left ventricular myocytes (HVMs). Basal I(Ca,L) density was not different in the 3 groups but I(Ca,L) was activated at more negative voltages in F- and LVAD- versus NF-HVMs (V(0.5): -7.18+/-1.4 and -7.0+/-0.9 versus 0.46+/-1.1 mV). Both ISO and db-cAMP increased I(Ca,L) in NF- and LVAD- significantly more than in F-HVMs (NF >LVAD> F: ISO: 90+/-15% versus 77+/-19% versus 24+/-12%; db-cAMP: 235%>172%>90%). ISO caused a significant leftward shift of the I(Ca,L) activation curve in NF- and LVAD- but not in F-HVMs. After ISO and db-cAMP, the I(Ca,L) activation was not significantly different between groups. BayK also increased I(Ca,L) more in NF- (81+/-30%) and LVAD- (70+/-15%) than in F- (51+/-8%) HVMs. OA increased I(Ca, L) by 85.6% in NF-HVMs but had no effect in F-HVMs, while PP2A decreased I(Ca, L) in F-HVMs by 35% but had no effect in NF-HVMs. These results suggest that the density of LTCC is reduced in F-HVMs but basal I(Ca,L) density is maintained by increasing in LTCC phosphorylation.

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Cite This Study

Chen et al. (2002) studied Heart failure. LVAD support vs. Nonfailing and failing myocytes was evaluated on L-type Ca2+ current (I(Ca,L)) density and activation. LVAD support partially restored beta-adrenergic responsiveness of L-type Ca2+ current in failing human ventricular myocytes (isoproterenol increased current by 77% in LVAD vs 24% in failing).

synapsesocial.com/papers/6a1530dfa2f71238514e2bf0https://doi.org/10.1161/01.res.0000033988.13062.7c
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Two distinct functional effects of protein phosphatase inhibitors on guinea‐pig cardiac L‐type Ca2+ channels.1995 · 72 citations
  2. 2Increased Availability and Open Probability of Single L-Type Calcium Channels From Failing Compared With Nonfailing Human Ventricle1998 · 281 citations
  3. 3Chronic Unloading by Left Ventricular Assist Device Reverses Contractile Dysfunction and Alters Gene Expression in End-Stage Heart Failure2000 · 297 citations
  4. 4Contributions of Ca2+-influx via the L-type Ca2+-current and Ca2+-release from the sarcoplasmic reticulum to [Ca2+]i-transients in human myocytes1998 · 23 citations
  5. 5The Sarcoplasmic Reticulum and the Na + /Ca 2+ Exchanger Both Contribute to the Ca 2+ Transient of Failing Human Ventricular Myocytes1999 · 162 citations