ParksD AGrangerD. N.Contributions of ischemia and reperfusion to mucosal lesion formation. Am J Physiol1986; 250: G749–53.
2.
RomsonJ LHookB GKunkelS LAbrahamsG DSchorkM ALucchesiB. R.Reduction of the extent of ischemic myocardial injury by neutrophil depletion in the dog. Circulation1983; 67: 1016–23.
3.
Fiddian-GreenR. G.Splanchnic ischaemia and multiple organ failure in the critically ill. Ann R Coll Surg Engl1988; 70: 128–34.
4.
NachburB HHorberF.SigristS.Metabolic disorders in acute limb ischemia. In: BerganJ JYaoJ S T eds. Vascular surgical emergencies. Orlando: Grune and Stratton, 1987: 11–24.
5.
ShearmanC PGoslingP.GwynnB RSimmsM. H.Systemic effects associated wtih intermittent claudication: A model to study biochemical aspects of vascular disease. Eur J Vasc Surg1988; 2: 401–404.
6.
TaylorA AShappellS. B.Reactive oxygen species, neutrophil and endothelial adherence molecules, and lipid-derived inflammatory mediators in myocardial ischemia-reflow injury. In: MoslenM TSmithC V eds. Free radical mechanisms of tissue injury. Boca Raton: CRC Press, 1992: 65–141.
7.
BulkleyG. B.The role of oxygen free radicals in human disease processes. Surgery1983; 94: 412–14.
8.
McCordJ. M.The superoxide free radical: Its biochemistry and pathophysiology. Surgery1983; 94: 412–14.
9.
Del MaestroR. F.An approach to free radicals in medicine and biology. Acta Physiol Scand1980; 492 (suppl): 153–68.
10.
McCordJ. M.Free radicals and myocardial ischemia: Overview and outlook. Free Radic Biol Med1988; 4: 9–14.
11.
EngersonT DMcKelveyG.RhyneD BBoggioE BSnyderS JJonesH. P.Conversion of xanthine dehydrogenase to oxidase in ischaemic rat tissue. J Clin Invest1987; 79: 1564–70.
12.
McCordJ. M.Oxygen derived free radicals: A link between reperfusion injury and inflammation. Fed Proc1987; 46: 2402–406.
13.
RatychR EChuknyiskaR SBulkleyG. B.The primary localisation of free radical generation after anoxia/reoxygenation in isolated endothelial cells. Surgery1987; 102: 122–31.
14.
JaraschE-DBruderG.HeidH. W.Significance of xanthine oxidase in capillary endothelial cells. Acta Physiol Scand1986; 548 (suppl): 39–46.
15.
FriedlH PSmithD JTillG OThompsonP DLouisD SWardP. A.Ischemia reperfusion in humans. Am J Pathol1990; 136: 491–95.
16.
PhanS H GGannaD EVaraniJ.RyanU SWardP. A.Xanthine oxidase activity in rat pulmonary artery endothelial cells and its alteration by activated neutrophils. Am J Pathol1989; 134: 1201–10.
VaneJ. R.Prostacyclin in the cardiovascular system in health and disease. In: SchrorK. ed. Prostaglandins and other eicosannnoids in the cardiovascular system. Basel: Karger, 1985: 7–28.
ErnsterL.Biochemistry of re-oxygenation injury. Critical Care Med1988; 16: 947–53.
27.
ElliotS JSchillingW. P.Carmustine augments the effects of tert-butyl-hydroperoxide on calcium signalling in cultured pulmonary artery endothelial cells. J Biol Chem1990; 256: 103–107.
28.
WhortonA RMontgomeryM EKentR. S.Effect of hydrogen peroxide on prostaglandin production and cellular integrity in cultured porcine aortic endothelial cells. J Clin Invest1985; 76: 295–302.
MullaneK MReadN.SalmanJ AMoncadaS.Role of leukocytes in acute MI in anaesthetised dogs: Relationship to myocardial salvage by anti-inflammatory drugs. J Pharmacol1984; 228: 510–22.
35.
KlausnerJ MPatersonI SValeriC RSheproD.HetchmanH. B.Limb ischemia-induced increases in permeability is mediated by leukocytes and leukotrienes. Ann Surg1988; 208: 755–60.
36.
SmedleyL ATonnesenM GSandhausR A. Neutrophil mediated injury to endothelial cells: Enhancement by endotoxin and essential role of neutrophil elastase. J Clin Invest1986; 77: 1233–43.
37.
ArforsK-ELundebergC.LindbomL.LundbergK.BeattyP GHarlanJ. M.A monoclonal antibody to the membrane glycoprotein complex CD 18 inhibits polymorphonuclear leukocyte accumulation and plasma leakage in vivo. Blood1987; 69: 338–40.
38.
GoldmanD WGoetzeE. J.Selective transduction of human polymorphonuclear leukocyte function by subsets of receptors for leukotriene B4. J Allergy Clin Immunol1984; 74: 373–77.
39.
ShappellS BSmithC WGasicA CTaylorA AMitchellJ. R.The effect of a specific LTB4 antagonist on human neutrophil function. Fed Proc1989; 3: 595.
BengtsonA.HolmbergP.HeidermanM.The ischaemia leg as a source of complement activation. Br J Surg1987; 74: 697–700.
42.
StimlerN PBachM KBloorC MHugliT. E.Release of leukotrienes from guinea pig lung stimulated by C5a anaphylotoxin. J Immunol1982; 128: 2247–52.
43.
KoitaK.MooreE EMooreF ACarlV SPitmanJ MBanerjeeA.Phospholipase A2 inhibition decouples lung injury from gut ischemia reperfusion. Surgery1992; 112: 173–80.
44.
SingalP KKapurN.DhillonK SBeamishR EDhallaN. S.Role of free radicals in catecholamine-induced cardiomyopathy. Can J Physiol Pharmacol1982; 60: 1390–97.
45.
ErnstE.HammerschmidtD EBaggeU.MatraiA.DormandyJ. A.Leukocytes and the risk of ischemic diseases. JAMA1987; 257: 2318–24.
46.
RossR.The pathogenesis of atherosclerosis. N Engl J Med1986; 314: 488–500.
47.
NashG BJonesJ GMikitaJ.ChristopherB.DormandyJ. A.Effects of preparative procedures and of cell activation on flow of white cells through micropore filters. Br J Haematol1988; 70: 171–76.
48.
OsbornL.Leucocyte adhesion to endothelium in inflammation. Cell1990; 62: 3–6.
49.
HernandezL AGrishamM BTwolugB.ArforsK EGrangerD. N.Role of neutrophils in ischaemia-reperfusion induced microvascular injury. Am J Physiol1987; 253: H699–H703.
50.
FantoneJ CWardP. A.Role of oxygen derived free radicals and metabolites in leucocyte-dependant inflammatory reactions. Am J Pathol1982; 107: 397–418.
51.
GreenT. ed. Peptide regulatory factors. London: Edward Arnold, 1989.
52.
DonnellyS CStrieterR MKunkelS L. Interleukin-8 and development of adult respiratory distress syndrome in at-risk patient groups. Lancet1993; 341: 643–47.
53.
LunecJ.BlakeD RMcClearyS JBrailsfordS.BaconP. A.Self perpetuating mechanisms of immunoglobulin aggregation in rheumatoid inflammation. J Clin Invest1985; 76: 2084–90.
54.
HaberlandM ESmithC. V.Lipid peroxide-dependent modifications of lipoproteins in atherosclerosis. In: MoslenM TSmithC V eds. Free radical mechanisms of tissue injury. CRC Press: Boca Raton, 1992: 45–64.
55.
HudlickaO.EggingtonS.BrownM DDawsonJ. M.Blood flow, performance and capillary ultrastructure in ischaemic rat fast muscles: Effects of chronic electrical stimulation. J Physiol (Lond)1991; 435: 15P.
56.
LewisM JSmithJ. A.Platelets, thrombosis, and the endothelium. In: RubanyiG M ed. Cardiovascular significance of endothelium-derived vasoactive factors. New York: Futura, 1991: 293–306.
57.
CardenD LKorthiusR. J.Role of neutrophilic elastase in postischemic granulocyte extravasation and microvascular dysfunction in skeletal muscle. FASEB J190; 49: A1248.
58.
ErikssonE.ReplogleR LGlagovS.Reperfusion of skeletal muscle after warm ischaemia. Ann Plast Surg1987; 18: 224–29.
59.
PunchJ.ReesR.CashmerB.WilkinsE.SmithD JTillG. O.Xanthine oxidase: Its role in the no-reflow phenomenon. Surgery1992; 111: 169–76.
60.
EnglerR.Consequences of activation and adenosine mediated inhibition of granulocytes during myocardial ischaemia. Fed Proc1987; 46: 2407–12.
61.
PatersonI SKlausnerJ MPugatchR.. Noncardiogenic pulmonary edema after abdominal aortic surgery. Ann Surg1989; 209: 231–36.
62.
SmithF C TGoslingP.SangheraK.GreenM APatersonI SShearmanC. P.Microproteinuria predicts the severity of systemic effects of reperfusion injury following infra-renal aortic aneurysm repair. Ann Vasc Surg1994 (in press).
63.
PatersonI SKlausnerJ MGoldmanG.. Pulmonary edema after aneurysm surgery is modified by mannitol. Ann Surg1989; 210: 796–801.
64.
PatersonI SSmithF C THamerJ DShearmanC. P.Reperfusion plasma contains a neutrophil activator. Ann Vasc Surg1993; 7: 68–75.
ShearmanC PGoslingP.GwynnB RSimmsM. H.Systemic effects associated with intermittent claudication: A model to study biochemical aspects of vascular disease. Eur J Vasc Surg1988; 2: 401–404.
68.
HickeyN CGoslingP.BaarS.ShearmanC PSimmsM. H.Effect of surgery on the systemic inflammatory response to ischaemia. Br J Surg1990; 77: 1121–24.
69.
NeumannF JWaasW.DiehmC.. Activation and decreased deformability of neutrophils after intermittent claudication. Circulation1990; 82: 922–29.
70.
HanssonG KHolmJ.JonassonL.Detection of activated T lymphocytes in the human atherosclerotic plaque. Am J Pathol1989; 135: 169–75.
71.
ParksD ABulkleyG BGrangerD. N.Role of oxygen free radicals in shock, ischemia and organ preservation. Surgery1983; 94: 428–32.
72.
WalkerP MLindsayT FLabbeR.MickleD ARomaschinA. D.Salvage of skeletal muscle with free radical scavengers. J Vasc Surg1987; vmr-5: 68–75.
HochJ RStevensR PKellerM PSilverD.Recovery of neuro-muscular function during reperfusion of the ischemic extremity: Effect of mannitol and superoxide dismutase. Surgery1991; 110: 656–63.
75.
LongJ WLasterJ LStevensR PSilverW PSilverD.Contractile and metabolic function following an ischemic reperfusion injury in skeletal muscle: Influence of oxygen free radical scavengers. Microcirc Endothelium Lymphatics1989; vmr-5: 351–63.
76.
WestlinW.MullaneK. M.Alleviation of myocardial stunning by leukocyte and platelet depletion. Circulation1989; 80: 1828–36.
77.
MullerB.SchmidtkeM.WittW.Action of the stable prostacyclin analogue iloprost on microvascular tone and permeability in the hamster cheek pouch. Prostaglandins Leukotrienes Med1987; 29: 187–98.
78.
De GaetanoG.EvangelistaV.RajtarG.Del MaschioA.CerlettiC.Activated polymorphonuclear leukocytes stimulate platelet function. Thrombos Res1990; XI (suppl): 25–32.
79.
ArnoutM. A.Structure and function of the leukocyte adhesion molecules CD11/CD18. Blood1990; 75: 1037–50.
80.
HaustM. D.Pathogenesis of atherosclerosis current status. In: SchlierfG.MorrlH. eds. Expanding horizons in atherosclerosis research. Berlin: Springer Verlag, 1987: 3–12.
81.
KlingD.HolzschuhT.StrohschneiderT.BetzE.Enhanced endothelial permeability and invasion of leukocytes into the artery wall as initial events in experimental arteriosclerosis. Inter Angiol1987; 6: 21–28.