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Merck
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  • Sarcolemmal cholesterol and caveolin-3 dependence of cardiac function, ischemic tolerance, and opioidergic cardioprotection.

Sarcolemmal cholesterol and caveolin-3 dependence of cardiac function, ischemic tolerance, and opioidergic cardioprotection.

American journal of physiology. Heart and circulatory physiology (2014-07-27)
Louise E See Hoe, Jan M Schilling, Emiri Tarbit, Can J Kiessling, Anna R Busija, Ingrid R Niesman, Eugene Du Toit, Kevin J Ashton, David M Roth, John P Headrick, Hemal H Patel, Jason N Peart
摘要

Cholesterol-rich caveolar microdomains and associated caveolins influence sarcolemmal ion channel and receptor function and protective stress signaling. However, the importance of membrane cholesterol content to cardiovascular function and myocardial responses to ischemia-reperfusion (I/R) and cardioprotective stimuli are unclear. We assessed the effects of graded cholesterol depletion with methyl-β-cyclodextrin (MβCD) and lifelong knockout (KO) or overexpression (OE) of caveolin-3 (Cav-3) on cardiac function, I/R tolerance, and opioid receptor (OR)-mediated protection. Langendorff-perfused hearts from young male C57Bl/6 mice were untreated or treated with 0.02-1.0 mM MβCD for 25 min to deplete membrane cholesterol and disrupt caveolae. Hearts were subjected to 25-min ischemia/45-min reperfusion, and the cardioprotective effects of morphine applied either acutely or chronically [sustained ligand-activated preconditioning (SLP)] were assessed. MβCD concentration dependently reduced normoxic contractile function and postischemic outcomes in association with graded (10-30%) reductions in sarcolemmal cholesterol. Cardioprotection with acute morphine was abolished with ≥20 μM MβCD, whereas SLP was more robust and only inhibited with ≥200 μM MβCD. Deletion of Cav-3 also reduced, whereas Cav-3 OE improved, myocardial I/R tolerance. Protection via SLP remained equally effective in Cav-3 KO mice and was additive with innate protection arising with Cav-3 OE. These data reveal the membrane cholesterol dependence of normoxic myocardial and coronary function, I/R tolerance, and OR-mediated cardioprotection in murine hearts (all declining with cholesterol depletion). In contrast, baseline function appears insensitive to Cav-3, whereas cardiac I/R tolerance parallels Cav-3 expression. Novel SLP appears unique, being less sensitive to cholesterol depletion than acute OR protection and arising independently of Cav-3 expression.

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胆固醇, Sigma Grade, ≥99%
Sigma-Aldrich
胆固醇, powder, BioReagent, suitable for cell culture, ≥99%
Sigma-Aldrich
SyntheChol ® NS0 补充, 500 ×, synthetic cholesterol, animal component-free, sterile-filtered, aqueous solution, suitable for cell culture
Sigma-Aldrich
胆固醇, from sheep wool, ≥92.5% (GC), powder
Supelco
胆固醇, Pharmaceutical Secondary Standard; Certified Reference Material
Supelco
胆固醇 溶液, certified reference material, 10 mg/mL in chloroform
SAFC
胆固醇, from sheep wool, Controlled origin, meets USP/NF testing specifications
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胆固醇, tested according to Ph. Eur.