Armstrong SC (2004) Protein kinase activation
and myocardial ischemia-reperfusion
injury. Cardiovasc Res 61:427–436
Google Scholar
Arnim CA von, Etrich SM, Timmler M,
Riepe MV (2002) Gender-dependent
hypoxic tolerance mediated via genderspecific
mechanisms. J Neurosci Res
68:84–88
Google Scholar
Baxter GF, Ferdinandy P (2001) Delayed
preconditioning of myocardium: current
perspectives. Basic Res Cardiol
96:329–344
Google Scholar
Beauchamp P, Richard V, Tamion F,
Lallemand F, Lebreton JP, Vaudry H,
Daveau M, Thuillez C (1999) Protective
effects of preconditioning in cultured rat
endothelial cells: effects on neutriphil
adhesion and expression of ICAM-1 after
anoxia and reoxygenation. Circulation
100:541–546
Google Scholar
Bolli R (2000) The late phase of preconditioning.
Circ Res 87:972–983
Google Scholar
Budas GR, Jovanovic S, Crawford RM,
Jovanovic A (2004) Hypoxia-induced preconditioning
in adult stimulated cardiomyocytes
is mediated by the opening
and trafficking of sarcolemal KATP channel.
FASEB J 18:1046–1048
Google Scholar
Burns PG, Krukenkamp IB, Calderone
CA, Gaudette GR, Bukhari EA, Levitsky S
(1995) Does cardiopulmonary bypass
alone elicit myoprotective preconditioning?
Circulation 92 (suppl): II447–II451
Google Scholar
Burns PG, Krukenkamp IB, Calderone
CA, Kirvaitis RJ, Gaudette GR, Levitsky S
(1996) Is the preconditioning response
conserved in senescent myocardium?
Ann Thorac Surg 61:925–929
Google Scholar
Cremer J, Steinhoff G, Karck M, Ahnsell
T, Brandt M, Teebken OE, Hollander
D, Haverich A (1997) Ischemic preconditioning
prior to myocardial protection
with cold blood cardioplegia in
coronary surgery. Eur J Cardiothorac
Surg 12:753–758
Google Scholar
Dawn B, Bolli R (2002) Role of nitric oxide
in myocardial preconditioning. Ann NY
Acad Sci 962:18–41
Google Scholar
Ferdinandy P, Szilvassy Z , Horvath LI,
Csont T, Conka C, Nagy E, Szentgyorgyi
R, Nagy I, Koltai M, Dux L (1997) Loss of
pacing-induced preconditioning in rat
hearts: Role of nitric oxide and cholesterol-enriched diet. J Mol Cell Cardiol
29:3321–3333
Google Scholar
Galagudza M, Valen G, Vaage J (2004)
Brief global ischemia converts persistent
reperfusion-induced ventricular fibrillation
into regular rhythm in the rat
heart. Interact Cardiovasc Thorac Surg
25:1006–1010
Google Scholar
Garlid KD (2000) Opening mitochondrial
K(ATP) in the heart – what happens, and
what does not happen. Basic Res Cardiol
95:275–279
Google Scholar
Halkos ME, Kerendi F, Corvera JS, Wang
NP, Payne CS, Sun HY, Guyton RA,
Vinten-Johansen J, Zhao ZQ (2004)
Myocardial protection with postconditioning
is not enhanced by ischemic
preconditioning. Ann Thorac Surg
78:961–969
Google Scholar
Hattori R, Matsui H, Kitano M, Ichihara
Y, Ogawa S, Hirai M, Hayashi H, Saito B
(1998) Staged reperfusion preserves the
coronary flow reserve, especially in
regions not severely damaged by
ischemic injury in the canine heart.
Angiology 49:991–1004
Google Scholar
Hausenloy DJ, Mocanu MM, Yellon DM
(2004) Ischemic preconditioning protects
by activating pro-survival kinases at
reperfusion. Am J Physiol 288:H971–
H976
Google Scholar
Heusch G (2001) Editorial comment:
Nitroglycerin and delayed preconditioning
in humans. Yet another mechanism
for an old drug? Circulation
103:2876–2878
Google Scholar
Heusch G (2004) Editorial comment:
Postconditioning. Old wine in a new
bottle? J Am Coll Cardiol 44:1111–1112
Google Scholar
Hiasa G, Hamada M, Ikeda S, Hiwada K
(2001) Ischemic preconditioning and
lipopolysaccharide attenuate nuclear factor
kappa-B activation and gene expression
of inflammatory cytokines in the
ischemic-reperfused rat heart. Jpn Circ J
65:984–990
Google Scholar
Hirai T, Fujita M, Yamanishi K, Ohno A,
Miwa K, Sasayama S (1993) Significance
of preinfarction angina for preservation
of left ventricular function in acute
myocardial infarction. Am Heart J
24:19–23
Google Scholar
Hori M, Kitakaze M, Sato S, Takashima S,
Iwakura K, Inoue M, Kitabatake A, Kami
T (1991) Staged reperfusion attenuates
myocardial stunning in dogs. Role of
transient acidosis during early reperfusion.
Circulation 84:2135–2145
Google Scholar
Illes RW, Swoyer KD (1998) Prospective,
randomized clinical study of ischemic
preconditioning as an adjunct to intermittent
cold blood cardioplegia. Ann
Thorac Surg 65:748–752; discussion
752–753
Google Scholar
Jenkins DP, Pugsley WB, Alkhulai. AM,
Kemp M, Hooper J, Yellon DM (1997)
Ischemic preconditioning reduces troponin
T release in patients undergoing
coronary artery bypass surgery. Heart
77:314–318
Google Scholar
Kaukoranta PK, Lepojarvi MP, Ylitalo
KV, Kiviluoma KT, Pauhkurinen KJ
(1997) Normothermic retrograde blood
cardioplegia with or without preceeding
ischemic preconditioning. Ann Thorac
Surg 63:1268–1274
Google Scholar
Kin H, Zhao ZQ, Sun HY, Wang NP,
Corvera JS, Halkos ME, Kerendi F,
Guyton RA, Vinten-Johansen J (2004)
Postconditioning attenuates myocardial
ischemia-reperfusion injury inhibiting
events in the early minutes of reperfusion.
Cardiovasc Res 62:74–85
Google Scholar
Kirklin JW, Barratt-Boyes BG, Kouchoukos
NT (eds) (2003) Myocardial protection
during operations with cardiopulmonary
bypass. In: Cardiac Surgery,
Churchill Livingstone, New York, pp
131–162
Kloner RA, Shook T, Przyklenk K, Davis
VG, Junio L, Matthews RV et al. (1995)
Previous angina alters in-hospital outcome
in TIMI 4. A clinical correlate to
preconditioning? Circulation 91:37–47
Google Scholar
Kolar F, Ostadal B (2004) Molecular
mechanisms of cardiac protection by
adaptation to chronic hypoxia. Physiol
Res 53:S3–S13
Google Scholar
Kolocassides KG, Galinanes M, Hearse
D (1994) Ischemic preconditioning,
cardioplegia, or both? J Mol Cell Cardiol
26:1411–1414
Google Scholar
Krieg T, Qin Q, Philipp S, Alexeyev MF,
Cohen MV, Downey JM (2004) Acetylcholine
and bradykinin trigger preconditioning
in the heart through a pathway
that includes Akt and NOS. Am J Physiol
287:H2606–H2611
Google Scholar
Laude K, Beauchamp P, Thuillez C,
Richard V (2002) Endothelial effects
of preconditioning. Cardiovasc Res
55:466–473
Google Scholar
Lee TM, Su SF, Tsai CC, Lee YT, Tsai CH
(2000) Cardioprotective effects of 17-beta
estradiol produced by activation of mitochondrial
ATP-sensitive potassium channels
in canine hearts. J Mol Cell Cardiol
32:1147–1158
Google Scholar
Leesar MA, Stoddard MF, Dawn B, Jasti
VG, Masden R, Bolli R (2001) Delayed
preconditioning-mimetic action of nitroglycerin
in patients undergoing coronary
angioplasty. Circulation 103:2935–2941
Google Scholar
Li G, Chen S, Lu E, Li Y (1999) Ischemic
preconditioning improves preservation
with cold blood cardioplegia in valve
replacement patients. Eur J Cardiothorac
Surg 15:653–657
Google Scholar
Li G, Tokuno S, Tähepôld P, Vaage J,
Löwbeer C, Valen G (2001) Preconditioning
protects the severely atherosclerotic
mouse heart. Ann Thorac Surg
71:1296–1303
Google Scholar
Lu EX, Chen SX, Yuan MD, Hu TH, Zhou
HC, Luo WJ, Li GH, Xu LM (1997)
Preconditioning improves myocardial
preservation in patients undergoing open
heart operations. Ann Thorac Surg
64:1320–1324
Google Scholar
Marber MS (2000) Ischemic preconditioning
in isolated cells. Circ Res
86:926–931
Google Scholar
Mehta JL, Saldeen TGP, Rand K (1998)
Interactive role of infection, inflammation
and traditional risk factors in atherosclerosis
and coronary artery disease.
J Am Coll Cardiol 31:1217–1225
Google Scholar
Murphy E (2004) Primary and secondary
signaling pathways in early preconditioning
converge in the mitochondria to produce
cardioprotection. Circ Res 94:7–16
Google Scholar
Murry CE, Jennings RB, Reimer KA
(1986) Preconditioning with ischemia:
a delay in lethal injury in ischemic
myocardium. Circulation 74:1124–1136
Google Scholar
Okamoto F, Allen BS, Buckberg GD,
Bugyi H, Leaf J (1986) Studies of controlled
reperfusion after ischemia. XIV.
Reperfusion conditions: importance of
ensuring gentle versus sudden reperfusion
during relief of coronary occlusion. J
Thorac Cardiovasc Surg 92:613–620
Google Scholar
Oldenburg O, Cohen MV, Downey JM
(2003) Mitochondrial K(ATP) channels
in preconditioning. J Mol Cell Cardiol
35:569–575
Google Scholar
O’Rourke B (2002) Myocardial KATP
channels in preconditioning. Circ Res
87:845–855
Google Scholar
Paparella D, Yau TM, Young E (2002)
Cardiopulmonary bypass induced
inflammation: pathophysiology and
treatment. An update. Eur J Cardiothorac
Surg 21:232–244
Google Scholar
Peng CF, Murphy ML, Colwell K, Straub
KD (1989) Controlled versus hyperemic
flow during reperfusion of jeopardized
ischemic myocardium. Am Heart J
117:515–522
Google Scholar
Perrault LP, Menasche P, Bel A, de
Chaumaray T, Peynet J, Mondy A, Olivero
P, Emanoil-Ravier R, Moalic JM (1996)
Ischemic preconditioning in cardiac surgery:
a word of caution. J Thorac Cardiovasc
Surg 112:1378–1386
Google Scholar
Piper HM, Abdallah Y, Schäfer C (2004)
The .rst minutes of reperfusion: a window
of opportunity for cardioprotection.
Cardiovasc Res 61:365–371
Google Scholar
Pouzet B, Lecharny JB, Dehoux M, Paquin
S, Kitakaze M, Mantz J, Menasche P
(2002) Is there a place for preconditioning
during cardiac operations in humans?
Ann Thorac Surg 73:843–848
Google Scholar
Przyklenk K, Darling CE, Dickson EW,
Whittaker P (2003) Cardioprotection
”outside the box”. Basic Res Cardiol
98:149–157
Google Scholar
Sato H, Jordan JE, Zhao ZQ, Sarvothan
SS, Vinten-Johansen J (1997) Gradual
reperfusion reduces infarct size and
endothelial injury but augments neutrophil
accumulation. Ann Thorac Surg
64:1099–1107
Google Scholar
Schulz R, Cohen MV, Behrends M,
Downey JM, Heusch G (2001) Signal
transduction of ischemic preconditioning.
Cardiovasc Res 52:181–198
Google Scholar
Schulz R, Kelm M, Heusch G (2004) Nitric
oxide in myocardial ischemia/reperfusion
injury. Cardiovasc Res 61:402–413
Google Scholar
Shinmura K, Nagai M, Tamaki K, Bolli R
(2004) Gender and aging do not impair
opioid-related preconditioning in rats.
Basic Res Cardiol 99:46–55
Google Scholar
Smith RM, Lecour S, Sack MN (2002)
Innate immunity and cardiac preconditioning:
a putative intrinsic cardioprotective
program. Cardiovasc Res 55:474–482
Google Scholar
Song X, Li G, Vaage J, Valen G (2003)
Effects of sex, gonadectomy, and estrogen
substitution on ischemic preconditioning
and ischemia-reperfusion injury
in mice. Acta Physiol Scand 177:459–466
Google Scholar
Sun HY, Wang NP, Kerendi F, Halkos ME,
Kin H, Guyton RA, Vinten-Johansen J,
Zhao ZQ (2004) Hypoxic postconditioning
reduces cardiomyocyte loss by
inhibiting the generation of reactive oxygen
species and intracellular calsium
overload. Am J Physiol 24:epub ahead of
print
Google Scholar
Szekeres L, Szilvassy Z, Ferdinandy P,
Nagy I, Karcsu S, Csati S (1997) Delayed
cardiac protection against harmful consequences
of stress can be induced in
experimental atherosclerosis in rabbits. J
Mol Cell Cardiol 29:1977–1983
Google Scholar
Szmagal P, Morawski W, Krejca M,
Gburek T, Bochenek A (1998) Evaluation
of perioperative myocardial tissue
damage in ischemically preconditioned
human heart during aorto coronary
bypass surgery. J Cardiovasc Surg
(Torino) 39:791–795
Google Scholar
Takeshima S, Vaage J, Löwbeer C, Valen
G (1999) Does hypothermia or hyperkalemia
influence the preconditioning
response? Acta Physiol Scand 33:79–87
Google Scholar
Tanaka K, Ludwig LM, Kersten JR, Pagel
PS, Warltier DC (2004) Mechanisms of
cardioprotection by volatile anesthetics.
Anesthesiology 100:707–721
Google Scholar
Teoh LK, Grant R, Hulf JA, Pugsley WB,
Yellon DM (2002) The effect of preconditioning
(ischemic and pharmacological)
on myocardial necrosis following coronary
artery bypass graft surgery. Cardiovasc
Res 53:175–180
Google Scholar
Tokuno S, Chen F, Jiang J, Pernow J,
Valen G (2002) Effects of spontaneous or
induced brain infarctions on vessel reactivity:
The role of iNOS. Life Sciences
71:679–692
Google Scholar
Tokuno S, Hinokiyama K, Tokuno K,
Löwbeer C, Valen G (2002) Spontaneous
ischemic events in the heart and brain
precondition the hearts of severely atherosclerotic
mice. Atheroscler Thromb
Vasc Biol 22:995–1001
Google Scholar
Tsang A, Hausenloy DJ, Mocanu MM,
Yellon DM (2004) Postconditioning: A
form of “modified reperfusion” protects
the myocardium by activating the phosphatidylinositol
3-kinase-Akt pathway.
Circ Res 95:230–232
Google Scholar
Tähepôld P, Elfström P, Eha I, Kals J, Taal
G, Taalonpoika A, Valen G, Vaage J,
Starkopf J (2002) Exposure of rats to
hyperoxia enhances the relaxation of isolated
aortic rings and reduces the infarct
size of isolated hearts. Acta Physiol Scand
175:271–277
Google Scholar
Uchiyama T, Engelman RM, Maulik N,
Das DK (2004) Role of Akt signaling in
mitochondrial survival pathway triggered
by hypoxic preconditioning. Circulation
109:3042–3049
Google Scholar
Vaage J, Jensen U, Ericsson A (2000) Neurologic
injury in cardiac surgery: with
special emphasis on aortic atherosclerosis
as the single most important risk
factor. Scand Cardiovasc J 34:550–57
Google Scholar
Vaage J, Valen G (2003) Preconditioning
in cardiac surgery. Ann Thorac Surg
75:S709–S714
Google Scholar
Valen G (2003) Cellular signalling
mechanisms in adaptation to ischemiainduced
myocardial damage. Ann Med
35:1–8
Google Scholar
Valen G, Hansson GK, Dumitrescu A,
Vaage J (2000) Unstable angina activates
myocardial heat shock protein 72,
endothelial nitric oxide synthase, and
transcription factors NFkB and AP-1.
Cardiovasc Res 47:49–56
Google Scholar
Wang X, Wei M, Kuukasjarvi P, Laurikka
J, Jarvinen O, Rinne T, Honkonen EL,
Tarkka M (2003) Novel pharmacological
preconditioning with diazoxide attenuates
myocardial stunning in coronary
artery bypass grafting. Eur J Cardiothorac
Surg 24:967–973
Google Scholar
Wei M, Kuukasjarvi P, Laurikka J,
Pehkonen E, Kaukinen S, Laine S, Tarkka
MR (2001) Cytokine responses in patients
undergoing coronary artery bypass surgery
after ischemic preconditioning.
Scand Cardiovasc J 35:142–146
Google Scholar
Wu Z-K, Laurikka J, Saraste A, Kyto V,
Pehkonen EJ, Savunen T, Tarkka MR
(2003) Cardiomyocyte apoptosis and
ischemic preconditioning in open heart
operations. Ann Thor Surg 76:528–534
Google Scholar
Wu ZK, Iivainen T, Pehkonen E, Laurikka
J, Tarkka MR (2002) Ischemic preconditioning
suppresses ventricular tachyarrhythmias
after myocardial revascularization.
Circulation 106:3091–3096
Google Scholar
Wu ZK, Iivainen T, Pehkonen E, Laurikka
J, Zhang S, Tarkka MR (2003) Fibrillation
in patients subjected to coronary artery
bypass grafting. J Thorac Cardiovasc Surg
126:1477–1482
Google Scholar
Wu Z-K, Pehkonen E, Laurikka J,
Kaukinen L, Honkonen EL, Kaukinen S,
Laippala P, Tarkka MR (2001) The protective
effects of preconditioning decline
in aged patients undergoing coronary
artery bypass grafting. J Thorac Cardiovasc
Surg 122:972–978
Google Scholar
Wu Z-K, Pehkonen E, Laurikka J,
Kaukinen L, Honkonen EL, Kaukinen S,
Tarkka MR (2000) Protective effect of
unstable angina in coronary artery bypass
surgery. Scand Cardiovasc J 34:486–492
Google Scholar
Wu Z-K, Tarkka M, Eloranta J, Pehkonen
E, Kaukinen L, Honkonen EL, Kaukinen
S, Tarkka MR (2001) Effect of ischemic
preconditioning (IP) on myocardial protection
in CABG patients: can the free
radicals act as a trigger for IP? Chest
119:1061–1068
Google Scholar
Wu Z-K, Tarkka M, Pehkonen E,
Kaukinen L, Honkonen EL, Kaukinen S
(2000) Beneficial effects of ischemic preconditioning
on right ventricular function
after coronary artery bypass grafting.
Ann Thorac Surg 70:1551–1557
Google Scholar
Wu Z-K, Tarkka M, Pehkonen E,
Kaukinen L, Honkonen EL, Kaukinen S
(2000) Ischaemic preconditioning has
beneficial effects on left ventricular
haemodynamic function after a coronary
artery bypass grafting operation. Scand
Cardiovasc J 34:247–253
Google Scholar
Yang X-M, Proctor JB, Cui L, Krieg T,
Downey JM, Cohen MV (2004) Multiple,
brief coronary occlusions during early
reperfusion protect rabbit hearts by targeting
cell signal pathways. J Am Coll
Cardiol 44:1103–1110
Google Scholar
Yellon DM, Alkhulaifi AM, Pugsley WB
(1993) Preconditioning the human myocardium.
Lancet 342:276–277
Google Scholar
Yellon DM, Dana A (2000) The preconditioning
phenomenon. A tool for the
scientist or a clinical reality? Circ Res
87:543–550
Google Scholar
Zeeuw S De, van den Doel MA, Duncker
DJ, Verdouw PD (1999) New insights into
cardioprotection by ischemic preconditioning
and other forms of stress. Ann N
Y Acad Sci 874:178–191
Google Scholar
Zhao ZQ, Corvera JS, Halkos ME, Kerendi
ME, Wang NP, Guyton RA, Vinten-
Johansen J (2003) Inhibition of myocardial
injury by ischemic postconditioning
during reperfusion: comparison with
ischemic preconditioning. Am J Physiol
285:H579–H588
Google Scholar