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Acute blood pressure elevation and ventricular fibrillation threshold during coronary occlusion and reperfusion in the dog.

The effect of acute elevation of arterial blood pressure on the ventricular fibrillation threshold was examined in 19 closed chest dogs anesthetized with chloralose during 10 minutes of occlusion followed by abrupt reperfusion of the left anterior descending coronary artery. Ventricular fibrillation threshold was determined using two methods of electrical testing: sequential R/T pulsing and the train of stimuli method. Blood pressure was increased with an intravenous injection of the alpha adrenergic stimulator phenylephrine. Acute hypertension significantly diminished the enhanced vulnerability associated with coronary occlusion. After denervation of the carotid sinus and aortic arch baroreceptors, elevation of blood pressure failed to affect vulnerability during occlusion. In both intact and denervated animals, the predisposition to ventricular fibrillation after reperfusion was unchanged by the increase in blood pressure. It is suggested that withdrawal of sympathetic tone mediated by the baroreceptor reflex is the basis for the protection against ventricular fibrillation resulting from elevation of blood pressure. The failure of acute hypertension to alter vulnerability during reperfusion suggests that the predisposition to ventricular fibrillation during reperfusion is due to mechanisms other than those operating during coronary occlusion.

Animals

Qualitative and quantitative changes in the ultrastructure of the dog heart after temporary ischaemia and coronary reperfusion.

A total ischaemia of one area of the myocardium was produced by ligature of a coronary artery in dogs. After 30 min, 1 hr, 2 hrs, and 4 hrs the ligature was loosened and the artery was for 1--2 hrs reperfused up to 4--7 days. At the end of the ischaemia and after reperfusion the ultrastructure of the myocardium was qualitatively and morphometrically investigated. The findings concerned: loss of glycogen (partly glycogen accumulation), mitochondrial swellings and fusions and development of megamitochondria, loss of cristae, rupture of the mitochondrial outer membranes, relaxation or supercontraction of the myofibrils, vesicular and vacuolar changes of the sarcoplasmic reticulum, oedema of the sarcoplasm, rupture of the sarcolemma. No significant differences of the quantitative parameters could be observed during the ischaemia from 30 min to 4 hrs: myofibrils 53.65--59.74%, mitochondria 26.51--33.59%, sarcoplasm 8.22--11.86%, sarcoplasmic reticulum 1.41--2.63%, lipofuscin 0.05--0.87%, lipids 0.01--0.10%. In comparing the data of the single animals we could determine significant differences between some parameters at the ends of the ischaemic phase and of the reperfusion phase, but as far as the findings are concerned both increases and decreases could be observed. The investigations show that the limit of the reversibility of damages in myocardial cells is about 45 min; in special cases a longer survival time may be taken into account. Reperfusion has different, though not always positive, effects.

Animals

Cardiovascular effects of acebutolol following coronary artery occlusion and reperfusion in anaesthetized dog.

1 The effects of 5 mg/kg acebutolol given intravenously were investigated in anaesthetized dogs after (a) ligation of the left anterior descending coronary artery and (b) coronary reperfusion following 60 min of ligation of the anterior descending coronary artery. 2 Coronary artery ligation produced, after 4 to 6 h, persistent multiple ventricular ectopic beats and abnormalities of R and T waves and of the S-T segment. Administration of acebutolol, after the development of persistent ventricular arrhythmias, restored normal sinus rhythm within 5 min of injection. Electrocardiographic abnormalities were also reduced. 3 Coronary artery reperfusion (following 60 min of ligation) resulted in multiple ventricular ectopic beats, ventricular tachycardia and/or ventricular fibrillation. Pretreatment with acebutolol, 15 min before starting reperfusion, markedly reduced the arrhythmias. 4 Acebutolol did not affect peak inspiratory airway pressure. 5 Acebutolol produced significant bradycardia and slight, transient, hypotension. It was without effect on left ventricular systolic pressure, left ventricular end-diastolic pressure, cardiac output or pulmonary arterial pressure. 6 These results suggest beneficial effects of acebutolol in myocardial ischaemia and coronary reperfusion, without any significant risk of cardiodepression or bronchospasm.

Acebutolol

Acute cardiac ischemia and reperfusion: contractility, relaxation, and glycolysis.

The mechanical and metabolic effects of 3 min of complete global ischemia and 25 min of reperfusion were studied in the isolated rat heart. The decrease in contracile function was biphasic; a rapid 50% decline occurred in the first 10 s of ischemia, after which contractile function transiently stabilized and then fell at a slower rate. During reperfusion, recovery of relaxation was impaired relative to recovery of contractile function. A second period of ischemia and reflow produced changes in contractility, relaxation, and lactate production virtually identical to the initial one. In the absence of glycolytic blockade, tissue lactate accumulation developed, no contracture occurred, the pacing threshold did not increase, and reperfusion after 3 min of ischemia resulted in complete recovery of contractile function. Glycolytic blockade with 0.1 mM iodoacetate (IAA) prevented ischemic lactate production, accelerated the fall in contractility, caused irreversible contracture after 30 s of ischemia, an irreversible increase in pacing threshold within 3 min of ischemia, and poor recovery of contractile function with reperfusion. Thus during the first 3 min of severe ischemia, glycolysis exerted a net beneficial effect on myocardial function despite significant tissue lactate accumulation.

Animals

Effects of reperfusion on the regional contraction of ischemic and nonischemic myocardium following partial coronary obstruction.

In 14 dogs the effects on regional tension (Walton-Brodie gauges) and length (mercury-in-silastic) following 50% reduction (52.9 +/- 2.1) in coronary flow for two hours and reperfusion afterwards for one hour were addressed. Within five minutes of partial coronary occlusion, ejection tension in the ischemic zone decreased to 36.3 +/- 7.2% (P less than 0.001) and total tension to 64.4 +/- 5.7% of control (P less than 0.001) while phasic segment length increased to 165.2 +/- 16.3% control. No further significant changes in regional tension or length were observed throughout the two hour period of partial occlusion. Ejection tension remained positive and segment length maintained systolic shortening during the ejection phase throughout the period of occlusion. Following reperfusion, ejection tension in the ischemic zone increased from 35.1 +/- 5.9 to 87.0 +/- 22.0% (P less than 0.05) and total tension increased from 56.6 +/- 5.4 to 70.2 +/- 7.2% (P less than 0.02) while segment length decreased from 149.3 +/- 6.5 to 105.7 +/- 5.7% (P less than 0.001) within five to 15 min of reperfusion. The improvement in both regional tension development and segment length shortening was maintained throughout the one hour period of reperfusion. No significant changes were seen in the nonischemic zone. The present experimental study suggests that partial coronary occlusion producing a 50% reduction in coronary blood flow results in regional contractile changes. These changes are reversible at least twice as long as those following complete occlusion.

Animals

[Reperfusion of the myocardium after acute ischemic lesion].

In a complex experimental study on 52 dogs the myocardium was examined after ischemia and reperfusion of various duration. Morphologic, metabolic, and functional findings proved that a short-term reperfusion after coronary occlusion for more than 2 hours has disadvantageous effects on the regression of ischemic lesions. During the early period (up to 3 days) this is caused by the "no-reflow" phenomenon. Combined qualitative and quantitative findings are required for correct appraisal of the ultrastructural alterations after reperfusion. In acute coronary occlusion, early revascularization after passing the crucial initial phase is advantageous, because the extent of myocardia necrosis is decreased by the prolonged reperfusion, thus leaving a larger myocardiac reserve in case of re-infarction. Clinical conclusions are drawn.

Animals

MLL4 protects cardiomyocytes against ischemia-reperfusion injury through STAT3-mediated mitochondrial function.

Myocardial ischemia-reperfusion injury (MIRI) is an inevitable pathophysiological response during the revascularization process following myocardial ischemia. Despite its clinical significance, effective targeted therapies for MIRI remain an unmet medical need. Mixed-lineage leukemia 4 (MLL4), a member of the SET family of histone methyltransferases, exhibits particular methyltransferase action toward histone H3 lysine 4 (H3K4). This study establishes a protective role for MLL4 in MIRI pathogenesis. Utilizing cardiomyocyte-specific Mll4 knockout mice and an in vivo ischemia-reperfusion (I/R) model induced by left anterior descending coronary artery ligation, we observed significant upregulation of MLL4 expression in cardiac tissue following I/R. Genetic ablation of Mll4 in cardiomyocytes markedly exacerbated both acute and chronic phases of MIRI. In vitro, Mll4 knockdown in neonatal rat cardiomyocytes (NRCMs) amplified mitochondrial dysfunction and apoptosis under hypoxia/reoxygenation (H/R) conditions. Integrated analysis of Cleavage Under Targets and Tagmentation sequencing (CUT&Tag-seq) and RNA sequencing (RNA-seq) revealed that Mll4 deficiency induces a pronounced reduction in H3K4 monomethylation (H3K4me1) and histone H3 lysine 27 acetylation (H3K27ac) enrichment at the Stat3 genomic locus. Mechanistically, MLL4 functions as a transcriptional activator of Stat3 by depositing H3K4me1 and H3K27ac, thereby facilitating STAT3 transcription. This regulatory cascade ultimately governs STAT3-dependent mitochondrial homeostasis. Collectively, these findings identify MLL4 as a critical epigenetic regulator of MIRI and suggest its therapeutic targeting may offer a promising strategy for mitigating reperfusion injury.

Animals

Development of Electrocardiography Standards for Evaluating Myocardial Infarction and Ischemia-Reperfusion Injury in Mice.

BACKGROUND: Acute and chronic heart failure secondary to myocardial infarction (MI) and cardiac ischemia-reperfusion injury (IRI) are leading causes of death in ischemic heart disease. A mouse model is indispensable for investigating MI and IRI, and the development of reliable mouse MI and IRI models is essential for advancing research in this field. The clear early diagnostic criteria for confirming successful induction of MI and IRI in mice remain lacking. METHODS: Adult C57BL/6J background mice underwent left anterior descending coronary artery ligation to induce acute MI, or ligation followed by reperfusion to induce IRI. The success of the MI and IRI model establishment was confirmed by 2,3,5-triphenyltetrazolium chloride staining and echocardiography. Electrocardiography was used to monitor the electric activity in the mice. CONCLUSIONS: Electrocardiography demonstrated that ST-segment elevation in ECG lead II and corrected QTc interval prolongation at 30 minutes following left anterior descending ligation as 2 key early indicators of successful MI. Echocardiography analysis revealed that the magnitude of ST-segment elevation strongly correlated with the left anterior descending ligation site, where a more proximal ligation produced a greater ST-segment elevation amplitude and more severe ischemia. In IRI models, ST-segment elevation typically resolved and returned to baseline within 20 minutes of reperfusion. This study developed quantifiable early diagnostic criteria for successful MI and IRI induction based on characteristic ECG changes. These quantifiable ECG parameters provide early diagnostic standards that can significantly streamline and optimize modeling procedures.

Animals

Necroptosis in alveolar epithelium orchestrates lung ischemia-reperfusion injury: a multi-omics study.

BACKGROUND: Lung ischemia-reperfusion injury (LIRI) is a leading cause of early morbidity and mortality following lung transplantation and other cardiopulmonary procedures. It is characterized by acute sterile inflammation driven by regulated cell death (RCD). While various RCD modalities, including apoptosis, necroptosis, pyroptosis, and ferroptosis, have been implicated in lung injury, their relative contributions and distinct activation patterns in LIRI remain poorly defined. METHODS: We employed an integrated multi-omics approach combining transcriptomics and proteomics with histological and functional validations in a murine hilar clamping model of LIRI. Key findings were further corroborated using single-cell RNA sequencing (scRNA-seq) data from human lung transplant recipients. The functional role of necroptosis was validated using pharmacological inhibitors (Nec-1, GSK'872) and Mlkl-deficient (Mlkl-/-) mice. RESULTS: LIRI triggered acute, time-dependent lung injury peaking within 24 h of reperfusion. Although transcriptomic profiling suggested broad activation of multiple RCD pathways, proteomic and biochemical analyses revealed a distinct landscape in our experimental setting: markers of apoptosis, pyroptosis, and ferroptosis were either downregulated or showed no significant positive correlation with injury severity and inflammatory peaks. In contrast, the necroptotic pathway emerged as a highly activated modality. Specifically, necroptosis, marked by phosphorylated RIPK1, RIPK3, and MLKL, was localized primarily in alveolar epithelial cells, correlated strongly with cytokine release and histological lung injury, and preceded the inflammatory response. Pharmacological inhibition or genetic ablation of necroptosis significantly attenuated tissue damage and inflammation. This pronounced necroptotic signature appeared distinct from the broad multi-pathway activation observed in lipopolysaccharide (LPS)-induced lung injury. Translational analysis of human scRNA-seq data further confirmed the selective upregulation of necroptosis signatures in alveolar type 2 (AT2) cells following lung transplantation. CONCLUSION: Our multi-omics analysis identifies necroptosis, particularly in alveolar epithelial cells, as a critical driver of sterile inflammation and tissue injury in the early phase of LIRI. Targeting alveolar epithelial necroptosis may represent a precise and promising therapeutic strategy for lung transplantation and ischemia-reperfusion-associated pulmonary disorders.

Animals

Early Reperfusion in Basilar Artery Occlusion Stroke Managed With Tenecteplase Versus Alteplase Before Endovascular Treatment.

BACKGROUND: Timely reperfusion is a critical determinant of favorable outcomes in basilar artery occlusion (BAO) stroke. We aimed to examine whether the choice of thrombolytic agent predicts early reperfusion (ER) in BAO stroke managed with tenecteplase versus alteplase before endovascular treatment. METHODS: This was a retrospective, multicenter US cohort of consecutive patients with BAO from 14 stroke centers treated with tenecteplase or alteplase within 4.5 hours of last known well before endovascular treatment. The primary end point was ER, defined as angiographic ER (expanded Thrombolysis in Cerebral Infarction grade 2b to 3 on the first diagnostic angiogram), or clinical ER, defined as substantial neurological improvement precluding endovascular treatment and a good functional outcome (modified Rankin Scale score 0-3). RESULTS: Among 163 patients with BAO and a median last known well-to-needle time of 135 minutes (interquartile range, 100-193) and last known well-to-puncture time of 228 minutes (interquartile range, 166-307), ER was observed in 27 (16.6%) patients. Rates of ER were comparable between tenecteplase (14/75, 18.7%) and alteplase (13/88, 14.8%; adjusted odds ratio, 1.082 [95% CI, 0.444-2.631]; P=0.862). In addition, rates of angiographic ER and clinical ER subgroups did not differ between thrombolytic agents. Higher Basilar Artery on Computed Tomography Angiography scores and a nonatherothrombotic cause independently predicted ER. In multivariable analysis, a good functional outcome was associated with younger age, lower stroke burden, and shorter last known well-to-puncture time. CONCLUSIONS: In BAO treated within 4.5 hours of last known well, tenecteplase and alteplase produced comparable early reperfusion rates. Achieving ER did not modify the association between thrombolytic agent and good functional outcome, consistent with rapid thrombectomy in patients with no ER.

basilar artery

Description and interpretation of structural changes in canine kidneys after preservation with a hyperosmolar solution and reperfusion.

The effects of hypothermic preservation of canine kidneys for 24 hours by the use of the Sacks solution, and additional autogenous reperfusion were studied by means of submicroscopic morphological methods. While preservation with the Sacks solution was to ensure normal organization of the lipoprotein structures of the basement and cell membranes, in case of additional reperfusion, even of short duration, a substantial or complete loss of anisotropy of the cytomembranes was demonstrable. The present report is the first to be published in the literature on polarization microscopic studies concerned with the effects of kidney preservation and of reperfusion.

Animals

Effect of nitroglycerin on vulnerability to ventricular fibrillation during myocardial ischemia and reperfusion.

The effect of nitroglycerin on vulnerability to ventricular fibrillation was examined in 44 chloralose-anesthetized dogs. In 19 animals ventricular fibrillation threshold was measured before and during a 10 minute period of occlusion of the left anterior descending coronary artery followed by abrupt release of occlusion. Fibrillation threshold was determined using the single stimulus and train of stimuli methods. The influence of nitroglycerin on vulnerability was assessed with and without prevention of the drug's hypotensive effect by intravenous injection of phenylephrine. In the nonischemic myocardium, infusion of nitroglycerin alone or in combination with phenylephrine did not alter the ventricular fibrillation threshold. However, during both coronary occlusion and reperfusion, administration of nitroglycerin alone afforded partial protection against vulnerability to ventricular fibrillation. Nearly complete protection was imparted by combined administration of nitroglycerin and phenylephrine. The incidence of spontaneous ventricular fibrillation during reperfusion was significantly reduced by combined administration of nitroglycerin and phenylephrine. It is concluded that infusion of nitroglycerin decreases susceptibility to ventricular fibrillation during both acute myocardial ischemia and reperfusion and that this beneficial action is substantially enhanced when the drug's hypotensive effect is prevented.

Animals

Pulmonary reperfusion syndrome.

"Reperfusion syndrome" of the lung may play a role in the pulmonary edema and hemorrhage that occur following pulmonary embolectomy, cardiopulmonary bypass, and shock. Bioenergetic, metabolic, and ultrastructural studies of canine lungs indicate that ventilated lung tissue could tolerate 5 hours of pulmonary arterial occlusion with minimal damage. However, a 24-hour interruption of pulmonary arterial blood flow produced a significant decrease in the ratio of adenosine triphosphate to adenosine disphosphate, and glycogen, and an increase in tissue lactate. Reperfusion of these lungs resulted in even more pronounced biochemical and ultrastructural deterioration, as well as gross pulmonary edema and hemorrhage. The lesion appears to be similar to the reperfusion damage that occurs in other organs, such as the kidney, and the skeletal and cardiac muscles.

Adenosine Diphosphate

Time course of changes in ventricular excitability and conduction during myocardial ischemia and reperfusion in the dog: effect of lidocaine.

Strength-interval curves and conduction times were determined in anesthetized dogs during and following myocardial ischemia using a computerized system capable of determining a 5 point strength-interval curve with conduction times within 20 seconds. At the peak incidence of ligation arrhythmias (5 minutes of ischemia), the falling limb of the strength-interval curve was shifted to the left and conduction time was prolonged, while at 15 minutes of ischemia, the strength-interval was shifted upward and conduction times had returned toward control. Lidocaine enhanced the upward shift of the strength-interval curve, contributing to the electrical stability of the myocardium during this phase of ischemia. During the first minute following abrupt reperfusion of the ischemic zone, there was a slight downward shift of the early part of the strength-interval curve, and conduction times tended to be shorter than control. Lidocaine enhanced the electrophysiological alterations following abrupt reperfusion; that is, it reduced excitation thresholds and increased the tendency to superconductivity. Thus, lidocaine enhanced electrical stability during acute ischemia but tended to exaggerate electrophysiologic defects observed during abrupt reperfusion.

Animals

Recovery of the heart after normothermic ischemia. Part II: Myocardial function during postischemic reperfusion.

Contraction and relaxation of the canine myocardium were examined during normothermic ischemia in an isolated heart model. Decrease in the development of tension depends on the duration of ischemia. Deficient functional recovery was observed after ischemic periods extending beyond 30 minutes, in spite of reperfusion periods of over 1 hour. A decrease in compliance was observed during the anoxic period, but a persistent defect of relaxation occurred only after 60 minutes of ischemia. After this period there was also a disturbance in the autoregulative mechanisms of coronary perfusion and an uncoupling of O2-consumption and mechanical efficiency. A prolonged reperfusion period of the heart beating empty allowed ultrastructural recovery of the damaged myocardium. In contrast, functional recovery of the myocardium, as determined by several parameters of contraction and relaxation, did not correlate with ultrastructural recovery and was not improved by prolonged reperfusion.

Animals

Ventricular arrhythmias associated with coronary artery occlusion and reperfusion in the isolated perfused rat heart: a model for assessment of antifibrillatory action of antiarrhythmic agents.

The isolated Langendorff-perfused rat heart, subjected to coronary artery occlusion and reperfusion consistently developed ventricular arrhythmias. The incidence of hearts with ventricular premature extrasystoles, ventricular tachycardia, and fibrillatioon ventricular fibrillation could be abolished in the presence of an extracellular potassium concentration of 12 mmol-litre--1, whereas with 4.5 mmol-litre--1 all hearts developed all the ventricular arrhythmias including fibrillation. This predictable occurrence of ventricular arrhythmias was used to assess the antiarrhythmic effect of lignocaine with particular reference to its effect on the spontaneously occurring reperfusion ventricular fibrillation. Lignocaine decreased the incidence of all ventricular arrhythmias both during ischaemia and on reperfusion in a concentration-related fashion.

Animals

Consequences of myocardial reperfusion following temporary coronary occlusion in pigs; effects on morphologic, biochemical and haemodynamic findings.

The effects of myocardial reperfusion have been examined following a 1 h coronary occlusion and compared to a permanent coronary ligation in pigs. Haemodynamic investigations were carried out throughout the surgical intervention and repeated after 7 days. Cellular injury was estimated by serial serum enzyme determinations (creatin phosphokinase, alpha-hydroxybutyric dehydrogenase, aspartate aminotransferase, lactic dehydrogenase) during the first 5 postoperative days; infarct size was assessed morphometrically by a histochemical staining procedure 1 week after the temporary or permanent coronary occlusion. A linear correlation was found between the logarithmically plotted peak serum activity of AST, HBDH, CPK and the morphometrically determined infarct size. Based upon enzyme and morphometrical studies no significant difference could be detected between the two experimental groups. In the animals subjected to transient coronary occlusion, however, the development of a ventricular aneurysm had been prevented to early and sustained reperfusion. Early re-establishment of coronary circulation appears to accelerate the proliferation of a more resistant granulation tissue into the infarcted area. Cardiac performance was not improved by myocardial reperfusion.

Animals

Initial myocardial adjustments to brief periods of ischemia and reperfusion in the conscious dog.

The changes in left ventricular (LV) dynamics induced by brief periods of ischemia (100 seconds) and subsequent reperfusion were analyzed in conscious dogs. Global LV ischemia, induced by partially occluding the left main coronary artery, reduced LV flow homogeneously and impaired LV function as reflected by decreases in LV stroke "work" (89 +/- 4% M +/- SE), systolic shortening (72 +/- 4%), velocity of shortening (56 +/- 6%), LV systolic pressure (34 +/- 5%), and dP/dt (59 +/- 6%). Regional LV ischemia, induced by occluding either the left circumflex or anterior descending coronary artery completely, reduced flow to the ischemic segment (82 +/- 3%) while decreasing segment work (96 +/- 5%), shortening (82 +/- 3%), and velocity of shortening (70 +/- 5%), with minimal depression of overall LV function. In both groups the extent of shortening was reduced more rapidly and greater (P less than 0.01) than shortening velocity. Moreover, with localized ischemia, segment work was reduced more (P less than 0.01) than shortening. With reperfusion, a transient overshoot in function above preischemic control levels was observed in both groups (global work increased by 60 +/- 12% and regional work by 28 +/- 4% above control). This overshoot was not dependent on adrenergic mechanisms, but was prevented by inhibiting reactive hyperemia. Thus myocardial ischemia induces a dissociation between extent and rate of myocardial shortening. A further dissociation between shortening and work is apparent with regional ischemia. After reperfusion there is a transient overshoot in function which appears to be dependent upon the associated reactive hyperemia.

Animals