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Insulin improves cardiac myocytes contractile function recovery in simulated ischemia-reperfusion:Key role of Akt 被引量:9

Insulin improves cardiac myocytes contractile function recovery in simulated ischemia-reperfusion: Key role of Akt
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摘要 The present study examined cardiac myocytecontractile and Ca2+ transient responses to insulin duringsimulated ischemia/reperfusion (I/R) and furtherinvestigated the role of protein kinase B (Akt) in the insulin-induced inotropic effect. Ventricular myocytes wereenzymatically isolated from adult Sprague-Dawley rats and perfused with Tyrode solution while electrically field-stimulated. Simulated I/R was induced by perfusing the cells with chemical anoxic solution including sodiumcyanide-sodium lactate for 15 min followed by reperfusionwith normal oxygenated Tyrode solution with or withoutinsulin. It is found that insulin only at concentration as high as 10 IU/L could increase cell shortening (16±5%, P < 0.05) in normal myocytes, whereas it concentration-dependently (0.01—10 IU/L) increased the contraction,the velocity ofshortening/releng- thening and Ca2+ transient in I/Rmyocytes. In addition, insulin treatment (1 IU/L) increasedAkt phosphorylation of I/R cardiomyocytes by 2.4-foldcompared with that of the control (P < 0.01). Mostimportantly, pretreatment with LY 294002, a specificinhibitor of phosphatidylinositol 3′-kinase (PI3-kinase), significantly inhibited both Akt phosphorylation and thepositive inotropic response to insulin in the I/Rcardiomyocytes. These results suggest that insulin exertsdirect positive inotropic effect by increasing Ca2+ transient of cardiomyocytes, which is enhanced in the pathologicalcondition of I/R. Akt activation plays an important role inthe insulin-induced improvement of myocyte contractile function following I/R. The present study examined cardiac myocytecontractile and Ca2+ transient responses to insulin duringsimulated ischemia/reperfusion (I/R) and furtherinvestigated the role of protein kinase B (Akt) in the insulin-induced inotropic effect. Ventricular myocytes wereenzymatically isolated from adult Sprague-Dawley rats and perfused with Tyrode solution while electrically field-stimulated. Simulated I/R was induced by perfusing the cells with chemical anoxic solution including sodiumcyanide-sodium lactate for 15 min followed by reperfusionwith normal oxygenated Tyrode solution with or withoutinsulin. It is found that insulin only at concentration as high as 10 IU/L could increase cell shortening (16±5%, P < 0.05) in normal myocytes, whereas it concentration-dependently (0.01—10 IU/L) increased the contraction,the velocity ofshortening/releng- thening and Ca2+ transient in I/Rmyocytes. In addition, insulin treatment (1 IU/L) increasedAkt phosphorylation of I/R cardiomyocytes by 2.4-foldcompared with that of the control (P < 0.01). Mostimportantly, pretreatment with LY 294002, a specificinhibitor of phosphatidylinositol 3′-kinase (PI3-kinase), significantly inhibited both Akt phosphorylation and thepositive inotropic response to insulin in the I/Rcardiomyocytes. These results suggest that insulin exertsdirect positive inotropic effect by increasing Ca2+ transient of cardiomyocytes, which is enhanced in the pathologicalcondition of I/R. Akt activation plays an important role inthe insulin-induced improvement of myocyte contractile function following I/R.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2003年第13期1364-1369,共6页
基金 supported by the National Natural Science Foundation of China (Grant Nos.39970302 and 39970807) the National Science Fund for Distinguished Young Scholars(Grant No.39925013).
关键词 胰岛素 心脏肌细胞 收缩功能 局部缺血 钙离子 insulin, ischemia/reperfusion, cardiomyocyte, contraction, Ca2+ transient, Akt.
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  • 1DiazR,PaolassoEA,PiegasLS ,etal.Metabolicmodulationofa cutemyocardialinfarction[].Circulation.1998
  • 2Jonassen AK,Brar,Mios OD, et al.Insulin administered at reoxygenation exerts a cardioprotective effect in myocytes by a possible anti-apoptotic mechanism[].Journal of Molecular and Cellular Cardiology.2000
  • 3Sipido,K.R.C al lewaert ,G.Howtomeasureint ra cellul ar[Ca2+ ]insi ngle cardia cc ellswithfura-2orindo-1,Cardiovasc[].Resource.1995
  • 4Vetter U,Kupferschmid C,Lang D,et al.Insulin-like growth factor and insulin increase the contractility of neonatal rat cardiocytes in vitro[].Basic Research In Cardiology.1988
  • 5Gao,F,Gao,E,Yue,T. L. etal.Nitr icoxi demediat est heantiapoptot iceffe ct ofinsul in inmyocardi alischemia-reperfusio n:t herol esofPI3-Kinase,Ak t,a ndendotheli alnitr icoxi desyntha sephosphorylation[].Circulation.2002
  • 6Gao,F,Shi,D.W,Wang, X. M.etal.Ef fe ctofgluc ose-insulin-potas siumcock ta iloncar diacmyo cyted eat handpost-isch emiccar diacfuncti onalrecov ery :thecrit ical ro leoninsulin[].ChinJInternMed.2003
  • 7Tune,J.D,Mallet,R.T,Downey,H.F.I nsulinim provescontr actilefu nction duringmo derateis ch emiain cani neleftventricle[].American Journal of Physiology.1998
  • 8Xiao,R.P,Spurgeon,H.A,OC on nor,F.etal.Age-as sociate dc hangesinb-ad renergicmo du lat iononra tcardiacexcitation-con tractioncoupling[].The Journal of Clinical Investigation.1994
  • 9Seki,S,Macleod,K. T.Effec ts ofanoxiaonintrace llu larCa2+andc on traction inisol ate dguinea pigcardiacmyocytes[].American Journal of Physiology.1995
  • 10Bond,J.M,Chacon, E,Herman,B.etal.I nt racellu larpHandCa2 +h ome os tasisin th epHparadoxo freper fu sioninju ryt oneonat alratcardiacmyocytes[].American Journal of Physiology.1993

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